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1.
PLoS Biol ; 19(8): e3001383, 2021 08.
Artigo em Inglês | MEDLINE | ID: mdl-34460812

RESUMO

The hippocampal spatial code's relevance for downstream neuronal populations-particularly its major subcortical output the lateral septum (LS)-is still poorly understood. Here, using calcium imaging combined with unbiased analytical methods, we functionally characterized and compared the spatial tuning of LS GABAergic cells to those of dorsal CA3 and CA1 cells. We identified a significant number of LS cells that are modulated by place, speed, acceleration, and direction, as well as conjunctions of these properties, directly comparable to hippocampal CA1 and CA3 spatially modulated cells. Interestingly, Bayesian decoding of position based on LS spatial cells reflected the animal's location as accurately as decoding using the activity of hippocampal pyramidal cells. A portion of LS cells showed stable spatial codes over the course of multiple days, potentially reflecting long-term episodic memory. The distributions of cells exhibiting these properties formed gradients along the anterior-posterior and dorsal-ventral axes of the LS, directly reflecting the topographical organization of hippocampal inputs to the LS. Finally, we show using transsynaptic tracing that LS neurons receiving CA3 and CA1 excitatory input send projections to the hypothalamus and medial septum, regions that are not targeted directly by principal cells of the dorsal hippocampus. Together, our findings demonstrate that the LS accurately and robustly represents spatial, directional as well as self-motion information and is uniquely positioned to relay this information from the hippocampus to its downstream regions, thus occupying a key position within a distributed spatial memory network.


Assuntos
Neurônios GABAérgicos/fisiologia , Septo do Cérebro/citologia , Memória Espacial/fisiologia , Animais , Região CA1 Hipocampal/citologia , Região CA3 Hipocampal/citologia , Feminino , Masculino , Camundongos
2.
Cell Mol Neurobiol ; 41(8): 1787-1799, 2021 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-32860154

RESUMO

Septal innervation of basal forebrain cholinergic neurons to the hippocampus is critical for normal learning and memory and is severely degenerated in Alzheimer's disease. To understand the molecular events underlying physiological cholinergic synaptogenesis and remodeling, as well as pathological loss, we developed an optimized primary septal-hippocampal co-culture system. Hippocampal and septal tissue were harvested from embryonic Sprague-Dawley rat brain and cultured together at varying densities, cell ratios, and in the presence of different growth factors. We identified conditions that produced robust septal-hippocampal synapse formation. We used confocal microscopy with primary antibodies and fluorescent ligands to validate that this system was capable of generating developmentally mature cholinergic synapses. Such synapses were comprised of physiological synaptic partners and mimicked the molecular composition of in vivo counterparts. This co-culture system will facilitate the study of the formation, plasticity, and dysfunction of central mammalian cholinergic synapses.


Assuntos
Neurônios Colinérgicos/metabolismo , Hipocampo/citologia , Hipocampo/metabolismo , Septo do Cérebro/citologia , Septo do Cérebro/metabolismo , Sinapses/metabolismo , Animais , Neurônios Colinérgicos/química , Técnicas de Cocultura , Feminino , Hipocampo/química , Gravidez , Ratos , Ratos Sprague-Dawley , Septo do Cérebro/química , Sinapses/química
3.
J Neurosci ; 39(23): 4527-4549, 2019 06 05.
Artigo em Inglês | MEDLINE | ID: mdl-30926750

RESUMO

The medial septum implements cortical theta oscillations, a 5-12 Hz rhythm associated with locomotion and paradoxical sleep reflecting synchronization of neuronal assemblies such as place cell sequence coding. Highly rhythmic burst-firing parvalbumin-positive GABAergic medial septal neurons are strongly coupled to theta oscillations and target cortical GABAergic interneurons, contributing to coordination within one or several cortical regions. However, a large population of medial septal neurons of unidentified neurotransmitter phenotype and with unknown axonal target areas fire with a low degree of rhythmicity. We investigated whether low-rhythmic-firing neurons (LRNs) innervated similar or different cortical regions to high-rhythmic-firing neurons (HRNs) and assessed their temporal dynamics in awake male mice. The majority of LRNs were GABAergic and parvalbumin-immunonegative, some expressing calbindin; they innervated interneurons mostly in the dentate gyrus (DG) and CA3. Individual LRNs showed several distinct firing patterns during immobility and locomotion, forming a parallel inhibitory stream for the modulation of cortical interneurons. Despite their fluctuating firing rates, the preferred firing phase of LRNs during theta oscillations matched the highest firing probability phase of principal cells in the DG and CA3. In addition, as a population, LRNs were markedly suppressed during hippocampal sharp-wave ripples, had a low burst incidence, and several of them did not fire on all theta cycles. Therefore, CA3 receives GABAergic input from both HRNs and LRNs, but the DG receives mainly LRN input. We propose that distinct GABAergic LRNs contribute to changing the excitability of the DG and CA3 during memory discrimination via transient disinhibition of principal cells.SIGNIFICANCE STATEMENT For the encoding and recall of episodic memories, nerve cells in the cerebral cortex are activated in precisely timed sequences. Rhythmicity facilitates the coordination of neuronal activity and these rhythms are detected as oscillations of different frequencies such as 5-12 Hz theta oscillations. Degradation of these rhythms, such as through neurodegeneration, causes memory deficits. The medial septum, a part of the basal forebrain that innervates the hippocampal formation, contains high- and low-rhythmic-firing neurons (HRNs and LRNs, respectively), which may contribute differentially to cortical neuronal coordination. We discovered that GABAergic LRNs preferentially innervate the dentate gyrus and the CA3 area of the hippocampus, regions important for episodic memory. These neurons act in parallel with the HRNs mostly via transient inhibition of inhibitory neurons.


Assuntos
Região CA3 Hipocampal/fisiologia , Giro Denteado/fisiologia , Neurônios GABAérgicos/fisiologia , Vias Neurais/fisiologia , Septo do Cérebro/citologia , Potenciais de Ação , Animais , Região CA3 Hipocampal/citologia , Calbindinas/análise , Giro Denteado/citologia , Neurônios GABAérgicos/química , Masculino , Memória Episódica , Rememoração Mental/fisiologia , Camundongos , Camundongos Endogâmicos C57BL , Proteínas do Tecido Nervoso/análise , Parvalbuminas/análise , Corrida , Septo do Cérebro/fisiologia , Ritmo Teta/fisiologia , Vigília
4.
J Neurochem ; 136(2): 306-15, 2016 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-26484803

RESUMO

Low-density lipoprotein receptors (LDLRs) mediate the uptake of lipoprotein particles into cells, as studied mainly in peripheral tissues. Here, we show that nerve growth factor (NGF) increases LDLR levels in PC6.3 cells and in cultured septal neurons from embryonic rat brain. Study of the mechanisms showed that NGF enhanced transcription of the LDLR gene, acting mainly via Tropomyosin receptor kinase A receptors. Simvastatin, a cholesterol-lowering drug, also increased the LDLR expression in PC6.3 cells. In addition, pro-NGF and pro-brain-derived neurotrophic factor, acting via the p75 neurotrophin receptor (p75NTR) also increased LDLRs. We further observed that Myosin Regulatory Light Chain-Interacting Protein/Inducible Degrader of the LDLR (Mylip/Idol) was down-regulated by pro-NGF, whereas the other LDLR regulator, proprotein convertase subtilisin kexin 9 (PCSK9) was not significantly changed. On the functional side, NGF and pro-NGF increased lipoprotein uptake by neuronal cells as shown using diacetyl-labeled LDL. The addition of serum-derived lipoprotein particles in conjunction with NGF or simvastatin enhanced neurite outgrowth. Collectively, these results show that NGF and simvastatin are able to stimulate lipoprotein uptake by neurons with a positive effect on neurite outgrowth. Increases in LDLRs and lipoprotein particles in neurons could play a functional role during brain development, in neuroregeneration and after brain injuries. Nerve growth factor (NGF) and pro-NGF induce the expression of low-density lipoprotein receptors (LDLRs) in neuronal cells leading to increased LDLR levels. Pro-NGF also down-regulated myosin regulatory light chain-interacting protein/inducible degrader of the LDLR (Mylip/Idol) that is involved in the degradation of LDLRs. NGF acts mainly via Tropomyosin receptor kinase A (TrkA) receptors, whereas pro-NGF stimulates p75 neurotrophin receptor (p75NTR). Elevated LDLRs upon NGF and pro-NGF treatments enhanced lipoprotein uptake by neurons. Addition of LDL particles further led to the stimulation of neurite outgrowth in PC6.3 cells after NGF or simvastatin treatments, suggesting a stimulatory role of lipoproteins on neuronal differentiation. In contrast, pro-NGF had no effect on neurite outgrowth either in the absence or presence of LDL particles. The precise mechanisms by which increased lipoproteins uptake can affect neurite outgrowth warrant further studies.


Assuntos
Lipoproteínas LDL/metabolismo , Neuritos/fisiologia , Neurônios/citologia , Neurônios/metabolismo , Receptores de LDL/metabolismo , Receptores de Fator de Crescimento Neural/metabolismo , Animais , Anticorpos/farmacologia , Benzoatos/farmacologia , Benzilaminas/farmacologia , Carbazóis/farmacologia , Células Cultivadas , Meios de Cultura Livres de Soro/farmacologia , Embrião de Mamíferos , Inibidores Enzimáticos/farmacologia , Regulação da Expressão Gênica/efeitos dos fármacos , Humanos , Alcaloides Indólicos/farmacologia , Fator de Crescimento Neural/farmacologia , Fatores de Crescimento Neural/farmacologia , Neuritos/efeitos dos fármacos , Neurônios/efeitos dos fármacos , Precursores de Proteínas/farmacologia , Ratos , Ratos Wistar , Receptores de LDL/imunologia , Septo do Cérebro/citologia , Sinvastatina/farmacologia
5.
J Membr Biol ; 249(1-2): 107-18, 2016 04.
Artigo em Inglês | MEDLINE | ID: mdl-26463358

RESUMO

The majority of neurons in lateral septum (LS) are electrically silent at resting membrane potential. Nicotine transiently excites a subset of neurons and occasionally leads to long lasting bursting activity upon longer applications. We have observed simultaneous changes in frequencies and amplitudes of spontaneous action potentials (AP) in the presence of nicotine. During the prolonged exposure, nicotine increased numbers of spikes within a burst. One of the hallmarks of nicotine effects was the occurrences of double spikes (known also as bursting). Alignment of 51 spontaneous spikes, triggered upon continuous application of nicotine, revealed that the slope of after-depolarizing potential gradually increased (1.4 vs. 3 mV/ms) and neuron fired the second AP, termed as double spiking. A transition from a single AP to double spikes increased the amplitude of after-hyperpolarizing potential. The amplitude of the second (premature) AP was smaller compared to the first one, and this correlation persisted in regard to their duration (half-width). A similar bursting activity in the presence of nicotine, to our knowledge, has not been reported previously in the septal structure in general and in LS in particular.


Assuntos
Potenciais de Ação/fisiologia , Difosfato de Adenosina/metabolismo , Neurônios/fisiologia , Nicotina/metabolismo , Potenciais de Ação/efeitos dos fármacos , Animais , Fenômenos Eletrofisiológicos , Nicotina/farmacologia , Técnicas de Patch-Clamp , Ratos , Septo do Cérebro/citologia , Septo do Cérebro/metabolismo
6.
J Neurophysiol ; 113(3): 971-80, 2015 Feb 01.
Artigo em Inglês | MEDLINE | ID: mdl-25392162

RESUMO

The medial septum/diagonal band of Broca (MS/DBB) is crucial for hippocampal theta rhythm generation (4-12 Hz). However, the mechanisms behind theta rhythmogenesis are still under debate. The MS/DBB consists, in its majority, of three neuronal populations that use acetylcholine, GABA, or glutamate as neurotransmitter. While the firing patterns of septal neurons enable the MS/DBB to generate rhythmic output critical for the generation of the hippocampal theta rhythm, the ability to synchronize these action potentials is dependent on the interconnectivity between the three major MS/DBB neuronal populations, yet little is known about intraseptal connections. Here we assessed the connectivity between pairs of MS/DBB neurons with paired patch-clamp recordings. We found that glutamatergic and GABAergic neurons provide intraseptal connections and produce sizable currents in MS/DBB postsynaptic cells. We also analyzed linear and nonlinear relationships between the action potentials fired by pairs of neurons belonging to various MS/DBB neuronal populations. Our results show that while the synchrony index for action potential firing was significantly higher in pairs of GABAergic neurons, coherence of action potential firing in the theta range was similarly low in all pairs analyzed. Recurrence analysis demonstrated that individual action potentials were more recurrent in cholinergic neurons than in other cell types. Implementing sparse connectivity in a computer model of the MS/DBB network reproduced our experimental data. We conclude that the interplay between the intrinsic membrane properties of different MS/DBB neuronal populations and the connectivity among these populations underlie the ability of the MS/DBB network to critically contribute to hippocampal theta rhythmogenesis.


Assuntos
Potenciais de Ação , Neurônios Colinérgicos/fisiologia , Feixe Diagonal de Broca/fisiologia , Neurônios GABAérgicos/fisiologia , Modelos Neurológicos , Septo do Cérebro/fisiologia , Animais , Feixe Diagonal de Broca/citologia , Feminino , Masculino , Camundongos , Septo do Cérebro/citologia , Sinapses/fisiologia , Ritmo Teta
7.
Hippocampus ; 25(4): 511-23, 2015 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-25394554

RESUMO

Structural and functional dissociation between the septal and the temporal part of the dentate gyrus predispose for possible differentiations in the ongoing neurogenesis process of the adult hippocampus. In this study, BrdU-dated subpopulations of the rat septal and temporal dentate gyrus (coexpressing GFAP, DCX, NeuN, calretinin, calbindin, S100, caspase-3 or fractin) were quantified comparatively at 2, 5, 7, 14, 21, and 30 days after BrdU administration in order to examine the successive time-frames of the neurogenesis process, the glial or neuronal commitment of newborn cells and the occurring apoptotic cell death. Newborn neurons' migration from the neurogenic subgranular zone to the inner granular cell layer and expression of glutamate NMDA and AMPA receptors were also studied. BrdU immunocytochemistry revealed comparatively higher numbers of BrdU(+) cells in the septal part, but stereological analysis of newborn and total granule cells showed an identical ratio in the two parts, indicating an equivalent neurogenic ability, and a common topographical pattern along each part's longitudinal and transverse axis. Similarly, both parts exhibited extremely low levels of newborn glial and apoptotic cells. However, despite the initially equal division rate and pattern of the septal and temporal proliferating cells, their later proliferative profile diverged in the two parts. Dynamic differences in the differentiation, migration and maturation process of the two BrdU-incorporating subpopulations of newborn neurons were also detected, along with differences in their survival pattern. Therefore, we propose that various factors, including developmental date birth, local DG microenvironment and distinct functionality of the two parts may be the critical regulators of the ongoing neurogenesis process, leading the septal part to a continuous, rapid, and less-disciplined genesis rate, whereas the quiescent temporal microenvironment preserves a quite steady, less-demanding neurogenesis process.


Assuntos
Giro Denteado/citologia , Proteínas do Tecido Nervoso/metabolismo , Neurogênese/fisiologia , Neurônios/fisiologia , Septo do Cérebro/citologia , Análise de Variância , Animais , Bromodesoxiuridina/metabolismo , Contagem de Células , Diferenciação Celular/fisiologia , Movimento Celular/fisiologia , Giro Denteado/fisiologia , Proteína Duplacortina , Masculino , Ratos , Ratos Wistar , Septo do Cérebro/fisiologia
8.
Eur J Neurosci ; 39(6): 957-974, 2014 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-24329896

RESUMO

Memory for odour information may result from temporal coupling between the olfactory and hippocampal systems. Respiration defines the frequency of olfactory perception, but how the respiratory rate affects hippocampal oscillations remains poorly understood. The afferent connectivity of the medial septum/diagonal band of Broca complex (MS/DB) proposes this region as a crossroads between respiratory and limbic pathways. Here we investigate if the firing rates of septal neurons integrate respiratory rate signals. We demonstrate that approximately 50% of MS/DB neurons are temporally correlated with sniffing frequency. Moreover, a group of slow-spiking septal neurons are phase-locked to the sniffing cycle. We show that inter-burst intervals of MS/DB theta cells relate to the sniff rate. Intranasal odour infusion evokes sniff phase preference for the activity of fast-spiking MS/DB neurons. Concurrently, the infusion augments the correlation between sniffing and limbic theta oscillations. During periods of sniffing-theta correlation, CA1 place cells fired preferentially during the inhalation phase, suggesting the theta cycle as a coherent time frame for central olfactory processing. Furthermore, injection of the GABAergic agonist muscimol into medial septum induces a parallel decrease of sniffing and theta frequencies. Our findings provide experimental evidence that MS/DB does not merely generate theta rhythm, but actively integrates sensorimotor stimuli that reflect sniffing rate. Such integration may provide temporal oscillatory synchronisation of MS/DB-innervated limbic structures with the sniffing cycle.


Assuntos
Região CA1 Hipocampal/fisiologia , Percepção Olfatória , Taxa Respiratória , Septo do Cérebro/fisiologia , Olfato , Ritmo Teta , Animais , Região CA1 Hipocampal/citologia , Muscimol/farmacologia , Neurônios/efeitos dos fármacos , Neurônios/fisiologia , Ratos , Septo do Cérebro/citologia
9.
Anesthesiology ; 120(2): 392-402, 2014 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-23969562

RESUMO

BACKGROUND: Cholinergic drugs are known to modulate the response of general anesthesia. However, the sensitivity of isoflurane or other volatile anesthetics after selective lesion of septal cholinergic neurons that project to the hippocampus is not known. METHODS: Male Long Evans rats had 192 immunoglobulin G-saporin infused into the medial septum (n = 10), in order to selectively lesion cholinergic neurons, whereas control, sham-lesioned rats were infused with saline (n = 12). Two weeks after septal infusion, the hypnotic properties of isoflurane and ketamine were measured using a behavioral endpoint of loss of righting reflex (LORR). Septal lesion was assessed by counting choline acetyltransferase-immunoreactive cells and parvalbumin-immunoreactive cells. RESULTS: Rats with 192 immunoglobulin G-saporin lesion, as compared with control rats with sham lesion, showed a 85% decrease in choline acetyltransferase-immunoreactive, but not parvalbumin-immunoreactive, neurons in the medial septal area. Lesioned as compared with control rats showed increased isoflurane sensitivity, characterized by a leftward shift of the graph plotting cumulative LORR percent with isoflurane dose. However, lesioned and control rats were not different in their LORR sensitivity to ketamine. When administered with 1.375% isoflurane, LORR induction time was shorter, whereas emergence time was longer, in lesioned as compared with control rats. Hippocampal 62-100 Hz gamma power in the electroencephalogram decreased with isoflurane dose, with a decrease that was greater in lesioned (n = 5) than control rats (n = 5). CONCLUSIONS: These findings suggest a role of the septal cholinergic neurons in modulating the sensitivity to isoflurane anesthesia, which affects both induction and emergence. The sensitivity of hippocampal gamma power to isoflurane appears to indicate anesthesia (LORR) sensitivity.


Assuntos
Anestesia por Inalação , Anestésicos Inalatórios , Isoflurano , Neurônios/efeitos dos fármacos , Sistema Nervoso Parassimpático/efeitos dos fármacos , Septo do Cérebro/fisiologia , Animais , Anticorpos Monoclonais , Relação Dose-Resposta a Droga , Eletrodos Implantados , Eletroencefalografia/efeitos dos fármacos , Antagonistas de Aminoácidos Excitatórios/farmacologia , Hipocampo/efeitos dos fármacos , Ketamina/farmacologia , Masculino , Sistema Nervoso Parassimpático/citologia , Ratos , Ratos Long-Evans , Proteínas Inativadoras de Ribossomos Tipo 1 , Saporinas , Septo do Cérebro/citologia
10.
J Neurosci ; 32(22): 7701-10, 2012 May 30.
Artigo em Inglês | MEDLINE | ID: mdl-22649248

RESUMO

Neurotrophins have been implicated in regulating neuronal differentiation, promoting neuronal survival, and modulating synaptic efficacy and plasticity. The prevailing view is that, depending on the target and mode of action, most neurotrophins can be trafficked and released either anterogradely or retrogradely in an activity-dependent manner. However, the prototypic neurotrophin, nerve growth factor (NGF), is not thought to be anterogradely delivered. Here we provide the neuroanatomical substrate for an anterograde hippocamposeptal transport of NGF by demonstrating its presence in mouse hippocampal GABAergic neurons and in their hippocamposeptal axons that ramify densely and abut neurons in the medial septum/diagonal band of Broca (MS/DB). We also demonstrate an activity-dependent increase in septal NGF levels that is dependent on the pattern of intrahippocampal stimulation. In addition, we show that acute exposure to NGF, via activation of TrkA, attenuates GABA(A) receptor-mediated inhibitory synaptic currents and reduces sensitivity to exogenously applied GABA. These acute actions of NGF display cell type and functional selectivity insofar as (1) they were found in cholinergic, but not GABAergic, MS/DB neurons, and (2) glutamate-mediated excitatory synaptic activity as well as AMPA-activated current responses were unaffected. Our results advocate a novel anterograde, TrkA-mediated NGF signaling in the CNS.


Assuntos
Neurônios GABAérgicos/fisiologia , Hipocampo/citologia , Hipocampo/metabolismo , Fator de Crescimento Neural/metabolismo , Sinapses/fisiologia , Análise de Variância , Animais , Animais Recém-Nascidos , Biofísica , Colina O-Acetiltransferase/genética , Estimulação Elétrica , Ensaio de Imunoadsorção Enzimática , Fármacos Atuantes sobre Aminoácidos Excitatórios/farmacologia , Lateralidade Funcional , GABAérgicos/farmacologia , Neurônios GABAérgicos/citologia , Neurônios GABAérgicos/efeitos dos fármacos , Glutamato Descarboxilase/genética , Proteínas de Fluorescência Verde/genética , Proteínas de Fluorescência Verde/metabolismo , Técnicas In Vitro , Potenciais da Membrana/efeitos dos fármacos , Potenciais da Membrana/genética , Camundongos , Camundongos Transgênicos , Fator de Crescimento Neural/farmacologia , Inibição Neural/efeitos dos fármacos , Vias Neurais/fisiologia , Técnicas de Patch-Clamp , Núcleos Septais/citologia , Septo do Cérebro/citologia
11.
PLoS Biol ; 8(7): e1000440, 2010 Jul 27.
Artigo em Inglês | MEDLINE | ID: mdl-20668538

RESUMO

Patterning of the cortical neuroepithelium occurs at early stages of embryonic development in response to secreted molecules from signaling centers. These signals have been shown to establish the graded expression of transcription factors in progenitors within the ventricular zone and to control the size and positioning of cortical areas. Cajal-Retzius (CR) cells are among the earliest generated cortical neurons and migrate from the borders of the developing pallium to cover the cortical primordium by E11.5. We show that molecularly distinct CR subtypes distribute in specific combinations in pallial territories at the time of cortical regionalization. By means of genetic ablation experiments in mice, we report that loss of septum Dbx1-derived CR cells in the rostromedial pallium between E10.5 and E11.5 results in the redistribution of CR subtypes. This leads to changes in the expression of transcription factors within the neuroepithelium and in the proliferation properties of medial and dorsal cortical progenitors. Early regionalization defects correlate with shifts in the positioning of cortical areas at postnatal stages in the absence of alterations of gene expression at signaling centers. We show that septum-derived CR neurons express a highly specific repertoire of signaling factors. Our results strongly suggest that these cells, migrating over long distances and positioned in the postmitotic compartment, signal to ventricular zone progenitors and, thus, function as modulators of early cortical patterning.


Assuntos
Padronização Corporal , Córtex Cerebral/citologia , Córtex Cerebral/embriologia , Proteínas de Homeodomínio/metabolismo , Células Neuroepiteliais/citologia , Células Neuroepiteliais/metabolismo , Animais , Padronização Corporal/genética , Proliferação de Células , Córtex Cerebral/metabolismo , Citometria de Fluxo , Perfilação da Expressão Gênica , Regulação da Expressão Gênica no Desenvolvimento , Proteínas de Homeodomínio/genética , Camundongos , Neurogênese , RNA Mensageiro/genética , RNA Mensageiro/metabolismo , Septo do Cérebro/citologia , Septo do Cérebro/embriologia , Septo do Cérebro/metabolismo , Proteínas Wnt/metabolismo
12.
J Neurosci ; 31(42): 14989-97, 2011 Oct 19.
Artigo em Inglês | MEDLINE | ID: mdl-22016532

RESUMO

Cholinergic neurons are endowed with a high-affinity choline uptake system for efficient synthesis of acetylcholine at the presynaptic terminals. The high-affinity choline transporter CHT1 is responsible for choline uptake, the rate-limiting step in acetylcholine synthesis. However, endogenous physiological factors that affect CHT1 expression or function and consequently regulate the acetylcholine synthesis rate are essentially unknown. Here we demonstrate that extracellular substrate decreases the cell-surface expression of CHT1 in rat brain synaptosomes, primary cultures from the basal forebrain, and mammalian cell lines transfected with CHT1. Extracellular choline rapidly decreases cell-surface CHT1 expression by accelerating its internalization, a process that is mediated by a dynamin-dependent endocytosis pathway in HEK293 cells. Specific inhibitor hemicholinium-3 decreases the constitutive internalization rate and thereby increases cell-surface CHT1 expression. We also demonstrate that the constitutive internalization of CHT1 depends on extracellular pH in cultured cells. Our results collectively suggest that the internalization of CHT1 is induced by extracellular substrate, providing a novel feedback mechanism for the regulation of acetylcholine synthesis at the cholinergic presynaptic terminals.


Assuntos
Neurônios/metabolismo , Simportadores/metabolismo , Animais , Animais Recém-Nascidos , Biotinilação/métodos , Células Cultivadas , Colina/metabolismo , Colina/farmacologia , Relação Dose-Resposta a Droga , Embrião de Mamíferos , Feminino , Hemicolínio 3/farmacocinética , Humanos , Concentração de Íons de Hidrogênio , Ligantes , Neurônios/efeitos dos fármacos , Cloreto de Potássio/farmacologia , Ligação Proteica/efeitos dos fármacos , Ligação Proteica/genética , Transporte Proteico/efeitos dos fármacos , Transporte Proteico/genética , RNA Interferente Pequeno/farmacologia , Ratos , Septo do Cérebro/citologia , Simportadores/genética , Sinaptossomos/efeitos dos fármacos , Sinaptossomos/metabolismo , Transfecção , Trítio/metabolismo , Trítio/farmacocinética
13.
J Comput Neurosci ; 32(3): 465-77, 2012 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-21938438

RESUMO

Alzheimer's disease (AD) progression is usually associated with memory deficits and cognitive decline. A hallmark of AD is the accumulation of beta-amyloid (Aß) peptide, which is known to affect the hippocampal pyramidal neurons in the early stage of AD. Previous studies have shown that Aß can block A-type K(+) currents in the hippocampal pyramidal neurons and enhance the neuronal excitability. However, the mechanisms underlying such changes and the effects of the hyper-excited pyramidal neurons on the hippocampo-septal network dynamics are still to be investigated. In this paper, Aß-blocked A-type current is simulated, and the resulting neuronal and network dynamical changes are evaluated in terms of the theta band power. The simulation results demonstrate an initial slight but significant theta band power increase as the A-type current starts to decrease. However, the theta band power eventually decreases as the A-type current is further decreased. Our analysis demonstrates that Aß blocked A-type currents can increase the pyramidal neuronal excitability by preventing the emergence of a steady state. The increased theta band power is due to more pyramidal neurons recruited into spiking mode during the peak of pyramidal theta oscillations. However, the decreased theta band power is caused by the spiking phase relationship between different neuronal populations, which is critical for theta oscillation, is violated by the hyper-excited pyramidal neurons. Our findings could provide potential implications on some AD symptoms, such as memory deficits and AD caused epilepsy.


Assuntos
Peptídeos beta-Amiloides/farmacologia , Região CA1 Hipocampal/citologia , Potenciais da Membrana/efeitos dos fármacos , Modelos Neurológicos , Neurônios/efeitos dos fármacos , Dinâmica não Linear , Canais de Potássio/fisiologia , Septo do Cérebro/citologia , Região CA1 Hipocampal/fisiologia , Simulação por Computador , Humanos , Rede Nervosa/fisiologia , Redes Neurais de Computação , Vias Neurais/fisiologia , Neurônios/fisiologia , Canais de Potássio/efeitos dos fármacos , Septo do Cérebro/fisiologia
14.
Neurochem Res ; 37(1): 143-52, 2012 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-21909955

RESUMO

Alzheimer's disease (AD) is characterized by the depositions of amyloid-ß (Aß) proteins, resulting in a reduction of choline acetyltransferase (ChAT) activity of AD brain in the early stages of the disease. Several growth factors, including brain-derived neurotrophic factor (BDNF), insulin-like growth factor (IGF)-1 and glial cell-derived neurotrophic factor (GDNF) are known to protect neuronal cell death in several neurodegenerative both in vitro and in vivo models. In this study, septal neurons were prepared from septal nucleus of embryonic (day 16-17) rat brain and treated with monomeric, oligomeric or fibrillar Aß(1-42) peptide. Oligomeric Aß(1-42), (10 µM) was the most potent at sublethal dose. Septal neuron cultures treated with BDNF, IGF-1 or GDNF or co-cultured with genetically modified human neural progenitor cells (hNPCs) secreting these neurotrophic factors (but not allowing contact between the two cell types), were protected from oligomeric Aß(1-42) peptide-induced cell death, and these trophic factors enhanced cholinergic functions by increasing ChAT expression level. These results indicate the potential of employing transplanted hNPCs for treatment of AD.


Assuntos
Peptídeos beta-Amiloides/toxicidade , Fator Neurotrófico Derivado do Encéfalo/metabolismo , Fator Neurotrófico Derivado de Linhagem de Célula Glial/metabolismo , Fator de Crescimento Insulin-Like I/metabolismo , Neurônios/metabolismo , Fragmentos de Peptídeos/toxicidade , Septo do Cérebro/efeitos dos fármacos , Células-Tronco/metabolismo , Animais , Células Cultivadas , Colina O-Acetiltransferase/metabolismo , Técnicas de Cocultura , Feminino , Humanos , Gravidez , Ratos , Ratos Transgênicos , Ratos Wistar , Septo do Cérebro/citologia
15.
J Neurosci ; 30(36): 12050-62, 2010 Sep 08.
Artigo em Inglês | MEDLINE | ID: mdl-20826668

RESUMO

Cortical interneurons originate from subpallial precursors and migrate into the cortex during development. Using genetic lineage tracing in transgenic mice we examine the contribution of two germinal zones, the septum and the lateral ganglionic eminence/caudal ganglionic eminence (LGE/CGE) to interneurons of the cortex. We find that the septal neuroepithelium does not generate interneurons for the neocortex. There is, however, clear migration of cells from the LGE/CGE to the cortex. Comparison of the dynamics of cortical colonization by the two major cohorts of interneurons originating in the medial ganglionic eminence (MGE) and the LGE/CGE has shown differences in the timing of migration and initial route of entry into the cortex. LGE/CGE-derived interneurons enter the cortex later than the MGE-derived ones. They invade the cortex through the subventricular/intermediate zone route and only later disperse within the cortical plate and the marginal zone. During the first postnatal week MGE interneurons move extensively to acquire their laminar position within the cortical plate whereas LGE/CGE-derived cells remain largely within the upper layers of the cortex. The two populations intermingle in the adult cortex but have distinct neurochemical properties and different overall distributions. LGE/CGE-derived interneurons account for one third of the total GABAergic interneuron population in the adult cortex.


Assuntos
Gânglios da Base/citologia , Movimento Celular/fisiologia , Córtex Cerebral , Interneurônios/fisiologia , Septo do Cérebro/citologia , Ácido gama-Aminobutírico/metabolismo , Animais , Animais Recém-Nascidos , Movimento Celular/genética , Córtex Cerebral/citologia , Córtex Cerebral/embriologia , Córtex Cerebral/metabolismo , Embrião de Mamíferos , Regulação da Expressão Gênica no Desenvolvimento/genética , Regulação da Expressão Gênica no Desenvolvimento/fisiologia , Proteínas de Fluorescência Verde/genética , Proteínas de Homeodomínio/genética , Proteínas de Homeodomínio/metabolismo , Proteínas com Homeodomínio LIM , Proteínas Luminescentes/genética , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Transgênicos , Proteínas do Tecido Nervoso/genética , Proteínas do Tecido Nervoso/metabolismo , Proteínas Nucleares/genética , Proteínas/genética , RNA não Traduzido , Fator Nuclear 1 de Tireoide , Fatores de Transcrição/genética , Fatores de Transcrição/metabolismo
16.
J Neurosci ; 30(24): 8221-8, 2010 Jun 16.
Artigo em Inglês | MEDLINE | ID: mdl-20554873

RESUMO

Acetylcholine (ACh) synthesis and release from basal forebrain cholinergic neurons (BFCN) innervating the cerebral cortex and hippocampus are essential processes for normal learning, memory and attention. Bone morphogenetic protein (BMP) 9 is a cholinergic differentiation factor in the developing septum that increases ACh synthesis and choline acetyltransferase (Chat) gene expression both in vivo and in vitro. We investigated the possible induction of cholinergic trophic factors by BMP9 in murine septal cells. Nerve growth factor (NGF) protein expression and secretion into the medium was increased in cultured embryonic septal cells treated with BMP9, and partially mediated BMP9-induced acetylcholine production and Chat gene expression. BMP9-induced Ngf gene expression was detected in postmitotic cells, required new protein synthesis and was blocked by BMP type I receptor inhibition. Cholinergic neurons were isolated by fluorescence-activated cell sorting based on either transgenic expression of green fluorescent protein driven by the Chat promoter or NGF receptor (p75) immunostaining. Although both noncholinergic and cholinergic neurons in untreated cultures expressed similar low levels of Ngf, increased Ngf gene expression was restricted to Chat-positive neurons in BMP9-treated cultures. Likewise, similar levels of Ngf mRNA were detected in p75-negative and p75-positive septal cells, yet only p75-positive BFCN increased their Ngf gene expression when treated with BMP9, and only these cells expressed the Alk1 BMP receptor. The data suggest an autocrine/paracrine role for NGF in the development and/or maintenance of BFCN and imply that the stimulation of NGF production and release contributes to the cholinergic-supportive properties of BMP9.


Assuntos
Acetilcolina/metabolismo , Fator 2 de Diferenciação de Crescimento/farmacologia , Fatores de Crescimento Neural/metabolismo , Neurônios/efeitos dos fármacos , Septo do Cérebro/citologia , Septo do Cérebro/embriologia , Fatores Etários , Análise de Variância , Animais , Células Cultivadas , Colina O-Acetiltransferase/genética , Relação Dose-Resposta a Droga , Embrião de Mamíferos , Ensaio de Imunoadsorção Enzimática/métodos , Feminino , Citometria de Fluxo/métodos , Regulação da Expressão Gênica no Desenvolvimento/efeitos dos fármacos , Regulação da Expressão Gênica no Desenvolvimento/genética , Proteínas de Fluorescência Verde/genética , Camundongos , Camundongos Transgênicos , Fatores de Crescimento Neural/genética , Gravidez , RNA Mensageiro/metabolismo , Receptor de Fator de Crescimento Neural/metabolismo
17.
Hippocampus ; 21(8): 835-46, 2011 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-20865731

RESUMO

The medial septum and diagonal band (MSDB) are important in spatial learning and memory. On the basis of the excitotoxic damage of GABAergic MSDB neurons, we have recently suggested a role for these neurons in controlling proactive interference. Our study sought to test this hypothesis in different behavioral procedures using a new GABAergic immunotoxin. GABA-transporter-saporin (GAT1-SAP) was administered into the MSDB of male Sprague-Dawley rats. Following surgery, rats were trained in a reference memory water maze procedure for 5 days, followed by a working memory (delayed match to position) water maze procedure. Other rats were trained in a lever-press avoidance procedure after intraseptal GAT1-SAP or sham surgery. Intraseptal GAT1-SAP extensively damaged GABAergic neurons while sparing most cholinergic MSDB neurons. Rats treated with GAT1-SAP were not impaired in acquiring a spatial reference memory, learning the location of the escape platform as rapidly as sham rats. In contrast, GAT1-SAP rats were slower than sham rats to learn the platform location in a delayed match to position procedure, in which the platform location was changed every day. Moreover, GAT1-SAP rats returned to previous platform locations more often than sham rats. In the active avoidance procedure, intraseptal GAT1-SAP impaired extinction but not acquisition of the avoidance response. Using a different neurotoxin and behavioral procedures than previous studies, the results of this study paint a similar picture that GABAergic MSDB neurons are important for controlling proactive interference.


Assuntos
Feixe Diagonal de Broca/fisiologia , Neurônios GABAérgicos , Memória de Curto Prazo/fisiologia , Septo do Cérebro/fisiologia , Animais , Colina O-Acetiltransferase/imunologia , Feixe Diagonal de Broca/citologia , Modelos Animais de Doenças , Proteínas da Membrana Plasmática de Transporte de GABA/administração & dosagem , Neurônios GABAérgicos/efeitos dos fármacos , Neurônios GABAérgicos/fisiologia , Hipocampo/metabolismo , Hipocampo/fisiologia , Imunotoxinas/administração & dosagem , Masculino , Aprendizagem em Labirinto/efeitos dos fármacos , Aprendizagem em Labirinto/fisiologia , Transtornos da Memória/induzido quimicamente , Memória de Curto Prazo/efeitos dos fármacos , Inibição Proativa , Ratos , Ratos Sprague-Dawley , Proteínas Inativadoras de Ribossomos Tipo 1/administração & dosagem , Saporinas , Septo do Cérebro/citologia , Percepção Espacial/fisiologia , Ácido gama-Aminobutírico/fisiologia
18.
Sci Rep ; 11(1): 2117, 2021 01 22.
Artigo em Inglês | MEDLINE | ID: mdl-33483520

RESUMO

Parvalbumin-containing projection neurons of the medial-septum-diagonal band of Broca ([Formula: see text]) are essential for hippocampal rhythms and learning operations yet are poorly understood at cellular and synaptic levels. We combined electrophysiological, optogenetic, and modeling approaches to investigate [Formula: see text] neuronal properties. [Formula: see text] neurons had intrinsic membrane properties distinct from acetylcholine- and somatostatin-containing MS-DBB subtypes. Viral expression of the fast-kinetic channelrhodopsin ChETA-YFP elicited action potentials to brief (1-2 ms) 470 nm light pulses. To investigate [Formula: see text] transmission, light pulses at 5-50 Hz frequencies generated trains of inhibitory postsynaptic currents (IPSCs) in CA1 stratum oriens interneurons. Using a similar approach, optogenetic activation of local hippocampal PV ([Formula: see text]) neurons generated trains of [Formula: see text]-mediated IPSCs in CA1 pyramidal neurons. Both synapse types exhibited short-term depression (STD) of IPSCs. However, relative to [Formula: see text] synapses, [Formula: see text] synapses possessed lower initial release probability, transiently resisted STD at gamma (20-50 Hz) frequencies, and recovered more rapidly from synaptic depression. Experimentally-constrained mathematical synapse models explored mechanistic differences. Relative to the [Formula: see text] model, the [Formula: see text] model exhibited higher sensitivity to calcium accumulation, permitting a faster rate of calcium-dependent recovery from STD. In conclusion, resistance of [Formula: see text] synapses to STD during short gamma bursts enables robust long-range GABAergic transmission from MS-DBB to hippocampus.


Assuntos
Hipocampo/fisiologia , Neurônios/fisiologia , Parvalbuminas/metabolismo , Septo do Cérebro/fisiologia , Sinapses/fisiologia , Transmissão Sináptica/fisiologia , Algoritmos , Animais , Cálcio/metabolismo , Hipocampo/citologia , Potenciais da Membrana/fisiologia , Camundongos Transgênicos , Modelos Neurológicos , Neurônios/citologia , Neurônios/metabolismo , Optogenética/métodos , Técnicas de Patch-Clamp , Septo do Cérebro/citologia
19.
Nat Commun ; 12(1): 2811, 2021 05 14.
Artigo em Inglês | MEDLINE | ID: mdl-33990558

RESUMO

The supramammillary region (SuM) is a posterior hypothalamic structure, known to regulate hippocampal theta oscillations and arousal. However, recent studies reported that the stimulation of SuM neurons with neuroactive chemicals, including substances of abuse, is reinforcing. We conducted experiments to elucidate how SuM neurons mediate such effects. Using optogenetics, we found that the excitation of SuM glutamatergic (GLU) neurons was reinforcing in mice; this effect was relayed by their projections to septal GLU neurons. SuM neurons were active during exploration and approach behavior and diminished activity during sucrose consumption. Consistently, inhibition of SuM neurons disrupted approach responses, but not sucrose consumption. Such functions are similar to those of mesolimbic dopamine neurons. Indeed, the stimulation of SuM-to-septum GLU neurons and septum-to-ventral tegmental area (VTA) GLU neurons activated mesolimbic dopamine neurons. We propose that the supramammillo-septo-VTA pathway regulates arousal that reinforces and energizes behavioral interaction with the environment.


Assuntos
Neurônios Dopaminérgicos/fisiologia , Hipotálamo Posterior/citologia , Hipotálamo Posterior/fisiologia , Animais , Comportamento Animal/efeitos dos fármacos , Comportamento Animal/fisiologia , Comportamento Consumatório/efeitos dos fármacos , Comportamento Consumatório/fisiologia , Dopamina/fisiologia , Feminino , Ácido Glutâmico/fisiologia , Imageamento por Ressonância Magnética , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Transgênicos , Modelos Neurológicos , Vias Neurais/citologia , Vias Neurais/fisiologia , Optogenética , Ratos , Ratos Wistar , Reforço Psicológico , Septo do Cérebro/citologia , Septo do Cérebro/efeitos dos fármacos , Septo do Cérebro/fisiologia , Área Tegmentar Ventral/citologia , Área Tegmentar Ventral/fisiologia , Ácido alfa-Amino-3-hidroxi-5-metil-4-isoxazol Propiônico/administração & dosagem
20.
J Neurosci ; 29(13): 4089-95, 2009 Apr 01.
Artigo em Inglês | MEDLINE | ID: mdl-19339604

RESUMO

Barrel-related circuits in the somatosensory cortex of rodents process vibrissal information conveyed through the lemniscal pathway. Yet, the origin of vibrissal input to interbarrrel regions (septa) remains an unsettled issue. A recurring proposal that never received conclusive experimental support is that septa-related circuits process paralemniscal inputs conveyed through the posterior group of the thalamus. Here we show that the receptive field of septal cells is independent of paralemniscal inputs, and that septal cells derive their receptive field input from neurons in the dorsal part of the thalamic barreloids. This result provides the missing piece of evidence for a separate pathway of vibrissal information that projects to septal columns of the barrel cortex.


Assuntos
Potenciais de Ação/fisiologia , Neurônios/fisiologia , Septo do Cérebro/citologia , Córtex Somatossensorial/anatomia & histologia , Vibrissas/inervação , Animais , Vias Eferentes/fisiologia , Masculino , Estimulação Física/métodos , Ratos , Ratos Sprague-Dawley , Tálamo/fisiologia
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