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1.
Front Cell Neurosci ; 17: 1170170, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-37377778

RESUMO

Neurogenesis persists in the mammalian subventricular zone after birth, producing various populations of olfactory bulb (OB) interneurons, including GABAergic and mixed dopaminergic/GABAergic (DA) neurons for the glomerular layer. While olfactory sensory activity is a major factor controlling the integration of new neurons, its impact on specific subtypes is not well understood. In this study we used genetic labeling of defined neuron subsets, in combination with reversible unilateral sensory deprivation and longitudinal in vivo imaging, to examine the behavior of postnatally born glomerular neurons. We find that a small fraction of GABAergic and of DA neurons die after 4 weeks of sensory deprivation while surviving DA-neurons exhibit a substantial decrease in tyrosine hydroxylase (TH) expression levels. Importantly, after reopening of the naris, cell death is arrested and TH levels go back to normal levels, indicating a specific adaptation to the level of sensory activity. We conclude that sensory deprivation induces adjustments in the population of glomerular neurons, involving both, cell death and adaptation of neurotransmitter use in specific neuron types. Our study highlights the dynamic nature of glomerular neurons in response to sensory deprivation and provide valuable insights into the plasticity and adaptability of the olfactory system.

3.
Mol Psychiatry ; 26(11): 6125-6148, 2021 11.
Artigo em Inglês | MEDLINE | ID: mdl-34188164

RESUMO

While the transcription factor NEUROD2 has recently been associated with epilepsy, its precise role during nervous system development remains unclear. Using a multi-scale approach, we set out to understand how Neurod2 deletion affects the development of the cerebral cortex in mice. In Neurod2 KO embryos, cortical projection neurons over-migrated, thereby altering the final size and position of layers. In juvenile and adults, spine density and turnover were dysregulated in apical but not basal compartments in layer 5 neurons. Patch-clamp recordings in layer 5 neurons of juvenile mice revealed increased intrinsic excitability. Bulk RNA sequencing showed dysregulated expression of many genes associated with neuronal excitability and synaptic function, whose human orthologs were strongly associated with autism spectrum disorders (ASD). At the behavior level, Neurod2 KO mice displayed social interaction deficits, stereotypies, hyperactivity, and occasionally spontaneous seizures. Mice heterozygous for Neurod2 had similar defects, indicating that Neurod2 is haploinsufficient. Finally, specific deletion of Neurod2 in forebrain excitatory neurons recapitulated cellular and behavioral phenotypes found in constitutive KO mice, revealing the region-specific contribution of dysfunctional Neurod2 in symptoms. Informed by these neurobehavioral features in mouse mutants, we identified eleven patients from eight families with a neurodevelopmental disorder including intellectual disability and ASD associated with NEUROD2 pathogenic mutations. Our findings demonstrate crucial roles for Neurod2 in neocortical development, whose alterations can cause neurodevelopmental disorders including intellectual disability and ASD.


Assuntos
Transtorno Autístico , Neuropeptídeos , Animais , Transtorno Autístico/metabolismo , Fatores de Transcrição Hélice-Alça-Hélice Básicos/genética , Fatores de Transcrição Hélice-Alça-Hélice Básicos/metabolismo , Córtex Cerebral/metabolismo , Humanos , Camundongos , Neurônios/metabolismo , Neuropeptídeos/metabolismo , Prosencéfalo/metabolismo , Fatores de Transcrição/metabolismo
4.
J Neurosci ; 41(12): 2630-2644, 2021 03 24.
Artigo em Inglês | MEDLINE | ID: mdl-33536198

RESUMO

Neuronal activity has been identified as a key regulator of neuronal network development, but the impact of activity on migration and terminal positioning of interneuron subtypes is poorly understood. The absence of early subpopulation markers and the presence of intermingled migratory and postmigratory neurons make the developing cerebral cortex a difficult model to answer these questions. Postnatal neurogenesis in the subventricular zone (SVZ) offers a more accessible and compartmentalized model. Neural stem cells regionalized along the border of the lateral ventricle produce two main subtypes of neural progenitors, granule cells and periglomerular neurons that migrate tangentially in the rostral migratory stream (RMS) before migrating radially in the olfactory bulb (OB) layers. Here, we used targeted postnatal electroporation to compare the migration of these two populations in male and female mice. We do not observe any obvious differences regarding the mode of tangential or radial migration between these two subtypes. However, we find a striking increase of intrinsic calcium activity in granule cell precursors (GC-Ps) when they switch from tangential to radial migration. By decreasing neuronal excitability in GC-Ps, we find that neuronal activity has little effect on migration but is required for normal positioning and survival of GC-Ps in the OB layers. Strikingly, decreasing activity of periglomerular neuron precursors (PGN-Ps) did not impact their positioning or survival. Altogether these findings suggest that neuronal excitability plays a subtype specific role during the late stage of migration of postnatally born OB interneurons.SIGNIFICANCE STATEMENT While neuronal activity is a critical factor regulating different aspects of neurogenesis, it has been challenging to study its role during the migration of different neuronal subpopulations. Here, we use postnatal targeted electroporation to label and manipulate the two main olfactory bulb (OB) interneuron subpopulations during their migration: granule cell and periglomerular neuron precursors (PGN-Ps). We find a very striking increase of calcium activity only in granule cell precursors (GC-Ps) when they switch from tangential to radial migration. Interestingly, blocking activity in GC-Ps affected mainly their positioning and survival while PGN-Ps were not affected. These results suggest that neuronal activity is required specifically for the recruitment of GC-Ps in the OB layers.


Assuntos
Movimento Celular/fisiologia , Interneurônios/fisiologia , Neurogênese/fisiologia , Neurônios/fisiologia , Bulbo Olfatório/citologia , Bulbo Olfatório/fisiologia , Animais , Animais Recém-Nascidos , Feminino , Masculino , Camundongos , Camundongos Transgênicos , Imagem Molecular/métodos , Técnicas de Cultura de Órgãos
5.
Stem Cell Reports ; 15(4): 836-844, 2020 10 13.
Artigo em Inglês | MEDLINE | ID: mdl-32976763

RESUMO

Neural stem cell populations generate a wide spectrum of neuronal and glial cell types in a highly ordered fashion. MicroRNAs are essential regulators of this process. T-UCstem1 is a long non-coding RNA containing an ultraconserved element, and in vitro analyses in pluripotent stem cells provided evidence that it regulates the balance between proliferation and differentiation. Here we investigate the in vivo function of T-UCstem1. We show that T-UCstem1 is expressed in the forebrain neurogenic lineage that generates interneurons for the postnatal olfactory bulb. Gain of function in neural stem cells increased progenitor proliferation at the expense of neuron production, whereas knockdown had the opposite effect. This regulatory function is mediated by its interaction with miR-9-3p and miR-9-5p. Based thereon, we propose a mechanistic model for the role of T-UCstem1 in the dynamic regulation of neural progenitor proliferation during neurogenesis.


Assuntos
MicroRNAs/metabolismo , Células-Tronco Neurais/citologia , Células-Tronco Neurais/metabolismo , Neurogênese/genética , Bulbo Olfatório/citologia , RNA Longo não Codificante/metabolismo , Animais , Animais Recém-Nascidos , Contagem de Células , Proliferação de Células/genética , Camundongos , MicroRNAs/genética , Neurônios/citologia , Neurônios/metabolismo , RNA Longo não Codificante/genética
6.
Elife ; 92020 08 07.
Artigo em Inglês | MEDLINE | ID: mdl-32762844

RESUMO

Different subtypes of interneurons, destined for the olfactory bulb, are continuously generated by neural stem cells located in the ventricular and subventricular zones along the lateral forebrain ventricles of mice. Neuronal identity in the olfactory bulb depends on the existence of defined microdomains of pre-determined neural stem cells along the ventricle walls. The molecular mechanisms underlying positional identity of these neural stem cells are poorly understood. Here, we show that the transcription factor Vax1 controls the production of two specific neuronal subtypes. First, it is directly necessary to generate Calbindin expressing interneurons from ventro-lateral progenitors. Second, it represses the generation of dopaminergic neurons by dorsolateral progenitors through inhibition of Pax6 expression. We present data indicating that this repression occurs, at least in part, via activation of microRNA miR-7.


Assuntos
Regulação da Expressão Gênica , Proteínas de Homeodomínio/metabolismo , Células-Tronco Neurais/fisiologia , Neurogênese , Neuropeptídeos/metabolismo , Bulbo Olfatório/fisiologia , Fator de Transcrição PAX6/metabolismo , Animais , Calbindinas/genética , Diferenciação Celular , Feminino , Proteínas de Homeodomínio/genética , Masculino , Camundongos , MicroRNAs/genética , MicroRNAs/metabolismo , Células-Tronco Neurais/classificação , Neuropeptídeos/genética , Fator de Transcrição PAX6/genética
7.
Elife ; 82019 07 11.
Artigo em Inglês | MEDLINE | ID: mdl-31294694

RESUMO

Adult neurogenesis in the olfactory bulb (OB) is considered as a competition in which neurons scramble during a critical selection period for integration and survival. Moreover, newborn neurons are thought to replace pre-existing ones that die. Despite indirect evidence supporting this model, systematic in vivo observations are still scarce. We used two-photon in vivo imaging to study neuronal integration and survival. We show that loss of new neurons in the OB after arrival at terminal positions occurs only at low levels. Moreover, long-term observations showed that no substantial cell death occurred at later stages. Neuronal death was induced by standard doses of thymidine analogs, but disappeared when low doses were used. Finally, we demonstrate that the OB grows throughout life. This shows that neuronal selection during OB-neurogenesis does not occur after neurons reached stable positions. Moreover, this suggests that OB neurogenesis does not represent neuronal turnover but lifelong neuronal addition.


Assuntos
Neurogênese , Neurônios/fisiologia , Bulbo Olfatório/crescimento & desenvolvimento , Animais , Morte Celular , Camundongos , Modelos Neurológicos
8.
J Comp Neurol ; 527(7): 1245-1260, 2019 05 01.
Artigo em Inglês | MEDLINE | ID: mdl-30592042

RESUMO

During postnatal olfactory bulb (OB) neurogenesis, predetermined stem cells residing in the ventricular-subventricular zone continuously generate progenitors that migrate in the rostral migratory stream and integrate into the OB. Although the vast majority of these postnatally generated interneurons are inhibitory, a sub-fraction represents glutamatergic neurons that integrate into the superficial glomerular layer. In the present work, we demonstrate that the bHLH transcription factor NeuroD6 is specifically and transitorily expressed in the dorsal neurogenic lineage that generates glutamatergic juxtaglomerular cells (JGCs) for the OB. Using lineage tracing combined with whole brain clearing, we provide new insight into timing of generation, morphology, and connectivity of glutamatergic JGCs. Specifically, we show that all glutamatergic JGCs send complex axons with varying projection patterns into different layers of the OB. Moreover, we find that, contrary to GABAergic OB interneurons, glutamatergic JGCs survive under sensory deprivation, indicating that inhibitory and excitatory populations are differentially susceptible to environmental stimulation.


Assuntos
Fatores de Transcrição Hélice-Alça-Hélice Básicos/biossíntese , Ácido Glutâmico/análise , Proteínas do Tecido Nervoso/biossíntese , Bulbo Olfatório/citologia , Privação Sensorial/fisiologia , Células Receptoras Sensoriais/fisiologia , Olfato/fisiologia , Animais , Animais Recém-Nascidos , Fatores de Transcrição Hélice-Alça-Hélice Básicos/análise , Fatores de Transcrição Hélice-Alça-Hélice Básicos/genética , Linhagem da Célula , Sobrevivência Celular , Feminino , Técnicas de Introdução de Genes , Genes Reporter , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Obstrução Nasal , Proteínas do Tecido Nervoso/análise , Proteínas do Tecido Nervoso/genética , Receptores Odorantes/ultraestrutura , Células Receptoras Sensoriais/química
9.
J Exp Neurosci ; 12: 1179069518755670, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29511358

RESUMO

In the perinatal and adult forebrain, regionalized neural stem cells lining the ventricular walls produce different types of olfactory bulb interneurons. Although these postnatal stem cells are lineage related to their embryonic counterparts that produce, for example, cortical, septal, and striatal neurons, their output at the level of neuronal phenotype changes dramatically. Tiveron et al. investigated the molecular determinants underlying stem cell regionalization and the gene expression changes inducing the shift from embryonic to adult neuron production. High-resolution gene expression analyses of different lineages revealed that the zinc finger proteins, Zic1 and Zic2, are postnatally induced in the dorsal olfactory bulb neuron lineage. Functional studies demonstrated that these factors confer a GABAergic and calretinin-positive phenotype to neural stem cells while repressing dopaminergic fate. Based on these findings, we discuss the molecular mechanisms that allow acquisition of new traits during the transition from embryonic to adult neurogenesis. We focus on the involvement of epigenetic marks and emphasize why the identification of master transcription factors, that instruct the fate of postnatally generated neurons, can help in deciphering the mechanisms driving fate transition from embryonic to adult neuron production.

10.
J Neurosci ; 37(44): 10611-10623, 2017 11 01.
Artigo em Inglês | MEDLINE | ID: mdl-28972122

RESUMO

In the postnatal forebrain regionalized neural stem cells along the ventricular walls produce olfactory bulb (OB) interneurons with varying neurotransmitter phenotypes and positions. To understand the molecular basis of this region-specific variability we analyzed gene expression in the postnatal dorsal and lateral lineages in mice of both sexes from stem cells to neurons. We show that both lineages maintain transcription factor signatures of their embryonic site of origin, the pallium and subpallium. However, additional factors, including Zic1 and Zic2, are postnatally expressed in the dorsal stem cell compartment and maintained in the lineage that generates calretinin-positive GABAergic neurons for the OB. Functionally, we show that Zic1 and Zic2 induce the generation of calretinin-positive neurons while suppressing dopaminergic fate in the postnatal dorsal lineage. We investigated the evolutionary conservation of the dopaminergic repressor function of Zic proteins and show that it is already present in C. elegansSIGNIFICANCE STATEMENT The vertebrate brain generates thousands of different neuron types. In this work we investigate the molecular mechanisms underlying this variability. Using a genomics approach we identify the transcription factor signatures of defined neural stem cells and neuron populations. Based thereon we show that two related transcription factors, Zic1 and Zic2, are essential to control the balance between two defined neuron types in the postnatal brain. We show that this mechanism is conserved in evolutionary very distant species.


Assuntos
Neurônios Dopaminérgicos/metabolismo , Prosencéfalo/metabolismo , Fatores de Transcrição/biossíntese , Animais , Animais Recém-Nascidos , Caenorhabditis elegans , Feminino , Masculino , Camundongos , Prosencéfalo/citologia , Prosencéfalo/crescimento & desenvolvimento , Especificidade da Espécie
11.
Development ; 144(21): 3968-3977, 2017 11 01.
Artigo em Inglês | MEDLINE | ID: mdl-28982684

RESUMO

In vivo brain electroporation of DNA expression vectors is a widely used method for lineage and gene function studies in the developing and postnatal brain. However, transfection efficiency of DNA is limited and adult brain tissue is refractory to electroporation. Here, we present a systematic study of mRNA as a vector for acute genetic manipulation in the developing and adult brain. We demonstrate that mRNA electroporation is far more efficient than DNA electroporation, and leads to faster and more homogeneous protein expression in vivo Importantly, mRNA electroporation allows the manipulation of neural stem cells and postmitotic neurons in the adult brain using minimally invasive procedures. Finally, we show that this approach can be efficiently used for functional studies, as exemplified by transient overexpression of the neurogenic factor Myt1l and by stably inactivating Dicer nuclease in vivo in adult born olfactory bulb interneurons and in fully integrated cortical projection neurons.


Assuntos
Diferenciação Celular , Eletroporação/métodos , Células-Tronco Neurais/metabolismo , Neurônios/metabolismo , Transfecção/métodos , Animais , Animais Recém-Nascidos , Compartimento Celular , Diferenciação Celular/genética , Feminino , Regulação da Expressão Gênica , Proteínas de Fluorescência Verde/metabolismo , Integrases/metabolismo , Masculino , Camundongos , Células-Tronco Neurais/citologia , Neurônios/citologia , RNA Mensageiro/genética , RNA Mensageiro/metabolismo , Recombinação Genética , Fatores de Tempo , Transgenes
12.
Stem Cell Reports ; 9(4): 1207-1220, 2017 10 10.
Artigo em Inglês | MEDLINE | ID: mdl-28943253

RESUMO

Human pluripotent stem cell (hPSC)-derived mesencephalic dopaminergic (mesDA) neurons can relieve motor deficits in animal models of Parkinson's disease (PD). Clinical translation of differentiation protocols requires standardization of production procedures, and surface-marker-based cell sorting is considered instrumental for reproducible generation of defined cell products. Here, we demonstrate that integrin-associated protein (IAP) is a cell surface marker suitable for enrichment of hPSC-derived mesDA progenitor cells. Immunomagnetically sorted IAP+ mesDA progenitors showed increased expression of ventral midbrain floor plate markers, lacked expression of pluripotency markers, and differentiated into mature dopaminergic (DA) neurons in vitro. Intrastriatal transplantation of IAP+ cells sorted at day 16 of differentiation in a rat model of PD resulted in functional recovery. Grafts from sorted IAP+ mesDA progenitors were more homogeneous in size and DA neuron density. Thus, we suggest IAP-based sorting for reproducible prospective enrichment of mesDA progenitor cells in clinical cell replacement strategies.


Assuntos
Antígeno CD47/metabolismo , Dopamina/metabolismo , Células-Tronco Neurais/citologia , Células-Tronco Neurais/metabolismo , Células-Tronco Pluripotentes/citologia , Transplante de Células-Tronco , Animais , Biomarcadores , Diferenciação Celular , Sobrevivência Celular , Terapia Baseada em Transplante de Células e Tecidos , Neurônios Dopaminérgicos/citologia , Neurônios Dopaminérgicos/metabolismo , Feminino , Citometria de Fluxo , Perfilação da Expressão Gênica , Sobrevivência de Enxerto , Humanos , Separação Imunomagnética , Imunofenotipagem , Mesencéfalo/metabolismo , Ratos , Regeneração
13.
Neurogenesis (Austin) ; 4(1): e1304790, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-28516108

RESUMO

The molecular and cellular basis of adult neurogenesis has attracted considerable attention for fundamental and clinical applications because neural stem cells and newborn neurons may, one day, be harnessed to replace neurons and allow cognitive improvement in the diseased brain. In rodents, neural progenitors are located in the dentate gyrus and the sub/periventricular zone. In the dentate gyrus the generation of newborn neurons is associated with plasticity, including regulation of memory. The role of subventricular zone neural precursors that migrate to the olfactory bulb is less characterized. Identifying factors that impact neural stem cell proliferation, migration and differentiation is therefore sine qua non before we can harness their potential. Here, we expand upon our recent results showing that CAR, the coxsackievirus and adenovirus receptor, is among the developing list of key players when it comes to the complex process of integrating newborn neurons into existing circuits in the mature brain.

14.
Glia ; 65(6): 990-1004, 2017 06.
Artigo em Inglês | MEDLINE | ID: mdl-28317180

RESUMO

Astrocytes are the most abundant cell type of the central nervous system and cover a broad range of functionalities. We report here the generation of a novel monoclonal antibody, anti-astrocyte cell surface antigen-2 (Anti-ACSA-2). Flow cytometry, immunohistochemistry and immunocytochemistry revealed that Anti-ACSA-2 reacted specifically with a not yet identified glycosylated surface molecule of murine astrocytes at all developmental stages. It did not show any labeling of non-astroglial cells such as neurons, oligodendrocytes, NG2+ cells, microglia, endothelial cells, leukocytes, or erythrocytes. Co-labeling studies of GLAST and ACSA-2 showed largely overlapping expression. However, there were also notable differences in protein expression levels and frequencies of single-positive subpopulations of cells in some regions of the CNS such as cerebellum, most prominently at early postnatal stages. In the neurogenic niches, the dentate gyrus of the hippocampus and the subventricular zone (SVZ), again a general overlap with slight differences in expression levels were observed. ACSA-2 was unlike GLAST not sensitive to papain-based tissue dissociation and allowed for a highly effective, acute, specific, and prospective purification of viable astrocytes based on a new rapid sorting procedure using Anti-ACSA-2 directly coupled to superparamagnetic MicroBeads. In conclusion, ACSA-2 appears to be a new surface marker for astrocytes, radial glia, neural stem cells and bipotent glial progenitor cells which opens up the possibility of further dissecting the characteristics of astroglial subpopulations and lineages.


Assuntos
Anticorpos Monoclonais/imunologia , Antígenos de Superfície/análise , Antígenos de Superfície/imunologia , Astrócitos/citologia , Astrócitos/imunologia , Separação Imunomagnética/métodos , Animais , Animais Recém-Nascidos , Especificidade de Anticorpos , Antígenos de Superfície/metabolismo , Encéfalo/citologia , Encéfalo/crescimento & desenvolvimento , Células Cultivadas , Células Endoteliais/citologia , Células Endoteliais/imunologia , Eritrócitos/citologia , Eritrócitos/metabolismo , Transportador 1 de Aminoácido Excitatório/análise , Leucócitos/citologia , Leucócitos/imunologia , Camundongos Endogâmicos BALB C , Camundongos Endogâmicos C57BL , Camundongos Transgênicos , Microglia/citologia , Microglia/imunologia , Células-Tronco Neurais/imunologia , Neurônios/citologia , Neurônios/metabolismo , Oligodendroglia/citologia , Oligodendroglia/imunologia , Ratos Wistar
15.
Neurosci Res ; 120: 28-35, 2017 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-28193531

RESUMO

The cytoplasmic domain of the neural cell adhesion molecule NCAM contains several putative serine/threonine phosphorylation sites whose functions are largely unknown. Human NCAM140 (NCAM140) possesses a potential MAP kinase phosphorylation site at threonine (T) 803. The aim of this study was to analyze a possible phosphorylation of NCAM140 by MAP kinases and to identify the functional role of T803. We found that NCAM140 is phosphorylated by the MAP kinase ERK2 in vitro. Exchange of T803 to aspartic acid (D) which mimics constitutive phosphorylation at the respective position resulted in increased endocytosis compared to NCAM140 in neuroblastoma cells and primary neurons. Consistently, NCAM140 endocytosis was inhibited by the MEK inhibitor U0126 in contrast to NCAM140-T803D or NCAM140-T803A endocytosis supporting a role of a potential ERK2 mediated phosphorylation at this site in endocytosis. Furthermore, cells expressing NCAM140-T803D developed significantly shorter neurites than NCAM140 expressing cells indicating that a potential phosphorylation of NCAM by ERK2 also regulates NCAM-dependent neurite outgrowth.


Assuntos
Moléculas de Adesão Celular Neuronais/metabolismo , Endocitose , Proteína Quinase 1 Ativada por Mitógeno/metabolismo , Crescimento Neuronal , Células Cultivadas , Humanos , Sistema de Sinalização das MAP Quinases , Mutação , Fosforilação
16.
Neuron ; 93(4): 777-791.e3, 2017 Feb 22.
Artigo em Inglês | MEDLINE | ID: mdl-28231465

RESUMO

The developmental mechanisms regulating the number of adult neural stem cells (aNSCs) are largely unknown. Here we show that the cleavage plane orientation in murine embryonic radial glia cells (RGCs) regulates the number of aNSCs in the lateral ganglionic eminence (LGE). Randomizing spindle orientation in RGCs by overexpression of Insc or a dominant-negative form of Lgn (dnLgn) reduces the frequency of self-renewing asymmetric divisions while favoring symmetric divisions generating two SNPs. Importantly, these changes during embryonic development result in reduced seeding of aNSCs. Interestingly, no effects on aNSC numbers were observed when Insc was overexpressed in postnatal RGCs or aNSCs. These data suggest a new mechanism for controlling aNSC numbers and show that the role of spindle orientation during brain development is highly time and region dependent.


Assuntos
Células-Tronco Adultas/citologia , Diferenciação Celular/fisiologia , Divisão Celular/fisiologia , Polaridade Celular/fisiologia , Proliferação de Células/fisiologia , Células-Tronco Neurais/citologia , Animais , Ciclo Celular/fisiologia , Camundongos Transgênicos , Fuso Acromático
18.
Sci Rep ; 6: 35729, 2016 10 21.
Artigo em Inglês | MEDLINE | ID: mdl-27767083

RESUMO

During neurogenesis, generation, migration and integration of the correct numbers of each neuron sub-type depends on complex molecular interactions in space and time. MicroRNAs represent a key control level allowing the flexibility and stability needed for this process. Insight into the role of this regulatory pathway in the brain is still limited. We performed a sequential experimental approach using postnatal olfactory bulb neurogenesis in mice, starting from global expression analyses to the investigation of functional interactions between defined microRNAs and their targets. Deep sequencing of small RNAs extracted from defined compartments of the postnatal neurogenic system demonstrated that the miR-200 family is specifically induced during late neuronal differentiation stages. Using in vivo strategies we interfered with the entire miR-200 family in loss- and gain-of-function settings, showing a role of miR-200 in neuronal maturation. This function is mediated by targeting the transcription factor Zeb2. Interestingly, so far functional interaction between miR-200 and Zeb2 has been exclusively reported in cancer or cultured stem cells. Our data demonstrate that this regulatory interaction is also active during normal neurogenesis.


Assuntos
MicroRNAs/genética , MicroRNAs/metabolismo , Neurogênese/genética , Neurogênese/fisiologia , Prosencéfalo/crescimento & desenvolvimento , Prosencéfalo/metabolismo , Homeobox 2 de Ligação a E-box com Dedos de Zinco/antagonistas & inibidores , Homeobox 2 de Ligação a E-box com Dedos de Zinco/genética , Animais , Diferenciação Celular/genética , Diferenciação Celular/fisiologia , Regulação da Expressão Gênica no Desenvolvimento , Técnicas de Silenciamento de Genes , Sequenciamento de Nucleotídeos em Larga Escala , Camundongos , Camundongos Transgênicos , MicroRNAs/antagonistas & inibidores , Neurônios/citologia , Neurônios/metabolismo , Bulbo Olfatório/crescimento & desenvolvimento , Bulbo Olfatório/metabolismo , Análise de Sequência de RNA , Homeobox 2 de Ligação a E-box com Dedos de Zinco/metabolismo
19.
PLoS One ; 11(6): e0157052, 2016.
Artigo em Inglês | MEDLINE | ID: mdl-27272053

RESUMO

LAMP5 is member of the LAMP family of membrane proteins. In contrast to the canonical members of this protein family, LAMP1 and LAMP2, which show widespread expression in many tissues, LAMP 5 is brain specific in mice. In C. elegans, the LAMP5 ortholog UNC-46 has been suggested to act a trafficking chaperone, essential for the correct targeting of the nematode vesicular GABA-transporter UNC-47. We show here that in the mouse brain LAMP5 is expressed in subpopulations of GABAergic forebrain neurons in the striato-nigral system and the olfactory bulb. The protein was present at synaptic terminals, overlapping with the mammalian vesicular GABA-transporter VGAT. In LAMP5-deficient mice localization of the transporter was unaffected arguing against a conserved role in VGAT trafficking. Electrophysiological analyses in mutants showed alterations in short term synaptic plasticity suggesting that LAMP5 is involved in controlling the dynamics of evoked GABAergic transmission. At the behavioral level, LAMP5 mutant mice showed decreased anxiety and deficits in olfactory discrimination. Altogether, this work implicates LAMP5 function in GABAergic neurotransmission in defined neuronal subpopulations.


Assuntos
Neurônios GABAérgicos/metabolismo , Proteínas de Membrana Lisossomal/genética , Proteínas de Membrana Lisossomal/metabolismo , Terminações Pré-Sinápticas/metabolismo , Proteínas Vesiculares de Transporte de Aminoácidos Inibidores/metabolismo , Animais , Corpo Estriado/metabolismo , Masculino , Camundongos , Bulbo Olfatório/metabolismo , Substância Negra/metabolismo , Transmissão Sináptica
20.
Proc Natl Acad Sci U S A ; 111(30): E3129-38, 2014 Jul 29.
Artigo em Inglês | MEDLINE | ID: mdl-25024228

RESUMO

In the nervous system, cilia dysfunction perturbs the circulation of the cerebrospinal fluid, thus affecting neurogenesis and brain homeostasis. A role for planar cell polarity (PCP) signaling in the orientation of cilia (rotational polarity) and ciliogenesis is established. However, whether and how PCP regulates cilia positioning in the apical domain (translational polarity) in radial progenitors and ependymal cells remain unclear. By analysis of a large panel of mutant mice, we show that two PCP signals are operating in ciliated cells. The first signal, controlled by cadherin, EGF-like, laminin G-like, seven-pass, G-type receptor (Celsr) 2, Celsr3, Frizzled3 (Fzd3) and Van Gogh like2 (Vangl2) organizes multicilia in individual cells (single-cell polarity), whereas the second signal, governed by Celsr1, Fzd3, and Vangl2, coordinates polarity between cells in both radial progenitors and ependymal cells (tissue polarity). Loss of either of these signals is associated with specific defects in the cytoskeleton. Our data reveal unreported functions of PCP and provide an integrated view of planar polarization of the brain ciliated cells.


Assuntos
Polaridade Celular/fisiologia , Citoesqueleto/metabolismo , Epêndima/metabolismo , Proteínas do Tecido Nervoso/metabolismo , Neurogênese/fisiologia , Transdução de Sinais/fisiologia , Animais , Cílios/genética , Cílios/metabolismo , Citoesqueleto/genética , Epêndima/citologia , Camundongos , Camundongos Knockout , Proteínas do Tecido Nervoso/genética
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