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1.
J Comp Neurol ; 532(7): e25646, 2024 Jul.
Article de Anglais | MEDLINE | ID: mdl-38961604

RÉSUMÉ

Classical studies of the avian diencephalon hardly mention the habenulo-interpeduncular tract (a.k.a. retroflex tract), although both the habenula (HB) (its origin) and the interpeduncular nuclear complex (its target) are present. Retroflex tract fibers were described at early embryonic stages but seem absent in the adult in routine stains. However, this tract is a salient diencephalic landmark in all other vertebrate lineages. It typically emerges out of the caudal HB, courses dorsoventrally across thalamic alar and basal plates just in front of the thalamo-pretectal boundary, and then sharply bends 90° caudalwards at paramedian basal plate levels (this is the "retroflexion"), to approach longitudinally via paramedian pretectum and midbrain the rostralmost hindbrain, specifically the prepontine median interpeduncular complex across isthmus and rhombomere 1. We systematize this habenulo-interpeduncular course into four parts named subhabenular, retrothalamic, tegmental, and interpeduncular. We reexamined the chicken habenulo-interpeduncular fibers at stages HH30 and HH35 (6.5- and 9-day incubation) by mapping them specifically with immunoreaction for BEN protein, a well-known marker. We found that only a small fraction of the stained retroflex tract fibers approaches the basal plate by coursing along the standard dorsoventral pathway in front of the thalamo-pretectal boundary. Many other habenular fibers instead diverge into atypical dispersed courses across the thalamic cell mass (implying alteration of the first subhabenular part of the standard course) before reaching the basal plate; this dispersion explains their invisibility. A significant number of such transthalamic habenular fibers cross orthogonally the zona limitans (ZLI) (the rostral thalamic boundary) and invade the caudal alar prethalamus. Here, they immediately descend dorsoventrally, just rostrally to the ZLI, until reaching the prethalamic basal plate, where they bend (retroflex) caudalwards, entering the thalamic basal paramedian area. These atypical fibers gradually fasciculate with the other groups of habenular efferent fibers in their final longitudinal approach to the hindbrain interpeduncular complex. We conclude that the poor visibility of this tract in birds is due to its dispersion into a diversity of atypical alternative routes, though all components eventually reach the interpeduncular complex. This case merits further analysis of the diverse permissive versus nonpermissive guidance mechanisms called into action, which partially correlate distinctly with successive diencephalic, mesencephalic, and hindbrain neuromeric fields and their boundaries.


Sujet(s)
Habénula , Noyau interpédonculaire , Animaux , Habénula/physiologie , Embryon de poulet , Noyau interpédonculaire/physiologie , Voies nerveuses/physiologie
2.
Cell Rep ; 43(3): 113956, 2024 Mar 26.
Article de Anglais | MEDLINE | ID: mdl-38489267

RÉSUMÉ

Drugs of abuse can persistently change the reward circuit in ways that contribute to relapse behavior, partly via mechanisms that regulate chromatin structure and function. Nuclear orphan receptor subfamily4 groupA member2 (NR4A2, also known as NURR1) is an important effector of histone deacetylase 3 (HDAC3)-dependent mechanisms in persistent memory processes and is highly expressed in the medial habenula (MHb), a region that regulates nicotine-associated behaviors. Here, expressing the Nr4a2 dominant negative (Nurr2c) in the MHb blocks reinstatement of cocaine seeking in mice. We use single-nucleus transcriptomics to characterize the molecular cascade following Nr4a2 manipulation, revealing changes in transcriptional networks related to addiction, neuroplasticity, and GABAergic and glutamatergic signaling. The network controlled by NR4A2 is characterized using a transcription factor regulatory network inference algorithm. These results identify the MHb as a pivotal regulator of relapse behavior and demonstrate the importance of NR4A2 as a key mechanism driving the MHb component of relapse.


Sujet(s)
Cocaïne , Habénula , Souris , Animaux , Habénula/physiologie , Cocaïne/pharmacologie , Mémoire , Régulation de l'expression des gènes , Récidive
3.
Proc Natl Acad Sci U S A ; 121(8): e2301449121, 2024 Feb 20.
Article de Anglais | MEDLINE | ID: mdl-38346189

RÉSUMÉ

GABAB receptor (GBR) activation inhibits neurotransmitter release in axon terminals in the brain, except in medial habenula (MHb) terminals, which show robust potentiation. However, mechanisms underlying this enigmatic potentiation remain elusive. Here, we report that GBR activation on MHb terminals induces an activity-dependent transition from a facilitating, tonic to a depressing, phasic neurotransmitter release mode. This transition is accompanied by a 4.1-fold increase in readily releasable vesicle pool (RRP) size and a 3.5-fold increase of docked synaptic vesicles (SVs) at the presynaptic active zone (AZ). Strikingly, the depressing phasic release exhibits looser coupling distance than the tonic release. Furthermore, the tonic and phasic release are selectively affected by deletion of synaptoporin (SPO) and Ca2+-dependent activator protein for secretion 2 (CAPS2), respectively. SPO modulates augmentation, the short-term plasticity associated with tonic release, and CAPS2 retains the increased RRP for initial responses in phasic response trains. The cytosolic protein CAPS2 showed a SV-associated distribution similar to the vesicular transmembrane protein SPO, and they were colocalized in the same terminals. We developed the "Flash and Freeze-fracture" method, and revealed the release of SPO-associated vesicles in both tonic and phasic modes and activity-dependent recruitment of CAPS2 to the AZ during phasic release, which lasted several minutes. Overall, these results indicate that GBR activation translocates CAPS2 to the AZ along with the fusion of CAPS2-associated SVs, contributing to persistency of the RRP increase. Thus, we identified structural and molecular mechanisms underlying tonic and phasic neurotransmitter release and their transition by GBR activation in MHb terminals.


Sujet(s)
Habénula , Récepteurs GABA-B , Animaux , Récepteurs GABA-B/génétique , Récepteurs GABA-B/métabolisme , Habénula/métabolisme , Astacoidea/métabolisme , Terminaisons présynaptiques/métabolisme , Caféine , Agents neuromédiateurs/métabolisme , Acide gamma-amino-butyrique/métabolisme
4.
eNeuro ; 11(2)2024 Feb.
Article de Anglais | MEDLINE | ID: mdl-38233142

RÉSUMÉ

The medial habenula (MHb) has been identified as the limiting factor for nicotine intake and facilitating nicotine withdrawal. However, few studies have assessed MHb neuronal excitability in response to nicotine, and, currently, a gap in knowledge is present for finding behavioral correlates to neuronal excitability in the region. Moreover, no study to date has evaluated sex or nicotine dosage as factors of excitability in the MHb. Here, we utilized an e-vape self-administration (EVSA) model to determine differences between sexes with different nicotine dosages ± menthol. Following this paradigm, we employed patch-clamp electrophysiology to assess key metrics of MHb neuronal excitability in relation to behavioral endpoints. We observed female mice self-administered significantly more than males, regardless of dosage. We also observed a direct correlation between self-administration behavior and MHb excitability with low-dose nicotine + menthol in males. Conversely, a high dose of nicotine ± menthol yields an inverse correlation between excitability and self-administration behavior in males only. In addition, intrinsic excitability in the ventral tegmental area (VTA) does not track with the amount of nicotine self-administered. Rather, they correlate to the active/inactive discrimination of mice. Using fast-scan cyclic voltammetry, we also observed that dopamine release dynamics are linked to reinforcement-related behavior in males and motivation-related behaviors in females. These results point to a sex-specific difference in the activity of the MHb and VTA leading to distinct differences in self-administration behavior. His could lend evidence to clinical observations of smoking and nicotine-use behavior differing between males and females.


Sujet(s)
Habénula , Récepteurs nicotiniques , Mâle , Femelle , Souris , Animaux , Nicotine/pharmacologie , Menthol/pharmacologie , Récepteurs nicotiniques/métabolisme , Aire tegmentale ventrale/métabolisme , Habénula/métabolisme
5.
Chin J Physiol ; 66(5): 326-334, 2023.
Article de Anglais | MEDLINE | ID: mdl-37929343

RÉSUMÉ

Post-traumatic stress disorder (PTSD) is a serious psychiatric disorder, and there is an association between it and the development of cardiovascular disease. The aim of this study was to explore whether there is a glutamatergic pathway connecting the medial habenula (MHb) with the rostral ventrolateral medulla (RVLM) that is involved in the regulation of cardiovascular function in a rat model of PTSD. Vesicular glutamate transporter 2 (VGLUT2)-positive neurons in the MHb region were retrogradely labeled with FluoroGold (FG) by the double-labeling technique of VGLUT2 immunofluorescence and FG retrograde tracing. Rats belonging to the PTSD model group were microinjected with artificial cerebrospinal fluid (ACSF) or kynurenic acid (KYN; a nonselective glutamate receptor blocker) into their RVLM. Subsequently, with electrical stimulation of MHb, the discharge frequency of the RVLM neurons, heart rate, and blood pressure were found to be significantly increased after microinjection of ACSF using an in vivo multichannel synchronous recording technology; however, this effect was inhibited by injection of KYN. The expression of N-methyl-D-aspartic acid (NMDA) and α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptor subunits was significantly increased in RVLM of PTSD model rats analyzed by the Western blotting technique. These findings suggest that there may be a glutamatergic pathway connection between MHb and RVLM and that this pathway may be involved in the regulation of cardiovascular function in the PTSD model rats, by acting on NMDA and AMPA receptors in the RVLM.


Sujet(s)
Habénula , Troubles de stress post-traumatique , Humains , Rats , Animaux , Troubles de stress post-traumatique/métabolisme , N-Méthyl-aspartate/métabolisme , N-Méthyl-aspartate/pharmacologie , Habénula/métabolisme , Moelle allongée/métabolisme , Pression sanguine , Acide glutamique/métabolisme , Acide glutamique/pharmacologie
6.
Neuroscience ; 529: 172-182, 2023 Oct 01.
Article de Anglais | MEDLINE | ID: mdl-37572877

RÉSUMÉ

While the functional and behavioral role of the medial habenula (MHb) is still emerging, recent data indicate an involvement of this nuclei in regulating mood, aversion, and addiction. Unique to the MHb is a large cluster of cholinergic neurons that project to the interpeduncular nucleus and densely express acetylcholine receptors (AChRs) suggesting that the activity of these cholinergic neurons may be regulated by ACh itself. Whether endogenous ACh from within the habenula regulates cholinergic neuron activity has not been demonstrated. Supporting a role for ACh in modulating MHb activity, acetylcholinesterase inhibitors increased the firing rate of MHb cholinergic neurons in mouse habenula slices, an effect blocked by AChR antagonists and mediated by ACh which was detected via expressing fluorescent ACh sensors in MHb in vivo. To test if cholinergic afferents innervate MHb cholinergic neurons, we used anterograde and retrograde viral tracing to identify cholinergic inputs. Surprisingly, tracing experiments failed to detect cholinergic inputs into the MHb, including from the septum, suggesting that MHb cholinergic neurons may release ACh within the MHb to drive cholinergic activity. To test this hypothesis, we expressed channelrhodopsin in a portion of MHb cholinergic neurons while recording from non-opsin-expressing neurons. Light pulses progressively increased activity of MHb cholinergic neurons indicating feed-forward activation driven by MHb ACh release. These data indicate MHb cholinergic neurons may utilize a unique feed-forward mechanism to synchronize and increase activity by releasing local ACh.


Sujet(s)
Acétylcholine , Habénula , Souris , Animaux , Acétylcholine/pharmacologie , Habénula/physiologie , Acetylcholinesterase , Neurones cholinergiques/physiologie , Agents cholinergiques/pharmacologie
7.
Int J Mol Sci ; 24(13)2023 Jun 27.
Article de Anglais | MEDLINE | ID: mdl-37445871

RÉSUMÉ

Understanding the mechanisms responsible for anxiety disorders is a major challenge. Avoidance behavior is an essential feature of anxiety disorders. The two-way avoidance test is a preclinical model with two distinct subpopulations-the good and poor performers-based on the number of avoidance responses presented during testing. It is believed that the habenula subnuclei could be important for the elaboration of avoidance response with a distinct pattern of activation and neuroinflammation. The present study aimed to shed light on the habenula subnuclei signature in avoidance behavior, evaluating the pattern of neuronal activation using FOS expression and astrocyte density using GFAP immunoreactivity, and comparing control, good and poor performers. Our results showed that good performers had a decrease in FOS immunoreactivity (IR) in the superior part of the medial division of habenula (MHbS) and an increase in the marginal part of the lateral subdivision of lateral habenula (LHbLMg). Poor performers showed an increase in FOS in the basal part of the lateral subdivision of lateral habenula (LHbLB). Considering the astroglial immunoreactivity, the poor performers showed an increase in GFAP-IR in the inferior portion of the medial complex (MHbl), while the good performers showed a decrease in the oval part of the lateral part of the lateral complex (LHbLO) in comparison with the other groups. Taken together, our data suggest that specific subdivisions of the MHb and LHb have different activation patterns and astroglial immunoreactivity in good and poor performers. This study could contribute to understanding the neurobiological mechanisms responsible for anxiety disorders.


Sujet(s)
Habénula , Humains , Habénula/métabolisme , Maladies neuro-inflammatoires , Neurones/métabolisme
8.
Elife ; 122023 May 30.
Article de Anglais | MEDLINE | ID: mdl-37249215

RÉSUMÉ

Nicotine intake is likely to result from a balance between the rewarding and aversive properties of the drug, yet the individual differences in neural activity that control aversion to nicotine and their adaptation during the addiction process remain largely unknown. Using a two-bottle choice experiment, we observed considerable heterogeneity in nicotine-drinking profiles in isogenic adult male mice, with about half of the mice persisting in nicotine consumption even at high concentrations, whereas the other half stopped consuming. We found that nicotine intake was negatively correlated with nicotine-evoked currents in the interpeduncular nucleus (IPN), and that prolonged exposure to nicotine, by weakening this response, decreased aversion to the drug, and hence boosted consumption. Lastly, using knock-out mice and local gene re-expression, we identified ß4-containing nicotinic acetylcholine receptors of IPN neurons as molecular and cellular correlates of nicotine aversion. Collectively, our results identify the IPN as a substrate for individual variabilities and adaptations in nicotine consumption.


Sujet(s)
Habénula , Noyau interpédonculaire , Récepteurs nicotiniques , Souris , Mâle , Animaux , Nicotine/pharmacologie , Noyau interpédonculaire/métabolisme , Récepteurs nicotiniques/génétique , Récepteurs nicotiniques/métabolisme , Souris knockout , Neurones/métabolisme , Habénula/métabolisme
9.
J Headache Pain ; 24(1): 61, 2023 May 25.
Article de Anglais | MEDLINE | ID: mdl-37231359

RÉSUMÉ

BACKGROUND: Migraine is a highly disabling health burden with multiple symptoms; however, it remains undertreated because of an inadequate understanding of its neural mechanisms. Neuropeptide Y (NPY) has been demonstrated to be involved in the modulation of pain and emotion, and may play a role in migraine pathophysiology. Changes in NPY levels have been found in patients with migraine, but whether and how these changes contribute to migraine is unknown. Therefore, the purpose of this study was to investigate the role of NPY in migraine-like phenotypes. METHODS: Here, we used intraperitoneal injection of glyceryl trinitrate (GTN, 10 mg/kg) as a migraine mouse model, which was verified by light-aversive test, von Frey test, and elevated plus maze test. We then performed whole-brain imaging with NPY-GFP mice to explore the critical regions where NPY was changed by GTN treatment. Next, we microinjected NPY into the medial habenula (MHb), and further infused Y1 or Y2 receptor agonists into the MHb, respectively, to detect the effects of NPY in GTN-induced migraine-like behaviors. RESULTS: GTN effectively triggered allodynia, photophobia, and anxiety-like behaviors in mice. After that, we found a decreased level of GFP+ cells in the MHb of GTN-treated mice. Microinjection of NPY attenuated GTN-induced allodynia and anxiety without affecting photophobia. Furthermore, we found that activation of Y1-but not Y2-receptors attenuated GTN-induced allodynia and anxiety. CONCLUSIONS: Taken together, our data support that the NPY signaling in the MHb produces analgesic and anxiolytic effects through the Y1 receptor. These findings may provide new insights into novel therapeutic targets for the treatment of migraine.


Sujet(s)
Habénula , Migraines , Souris , Animaux , Neuropeptide Y/pharmacologie , Récepteur neuropeptide Y/métabolisme , Habénula/métabolisme , Hyperalgésie/traitement médicamenteux , Photophobie , Migraines/traitement médicamenteux
10.
Dev Dyn ; 251(11): 1834-1847, 2022 11.
Article de Anglais | MEDLINE | ID: mdl-35727300

RÉSUMÉ

BACKGROUND: The fasciculus retroflexus is the prominent efferent pathway from the habenular complex. Medial habenular axons form a core packet whereas lateral habenular axons course in a surrounding shell. Both groups of fibers share the same initial pathway but differ in the final segment of the tract, supposedly regulated by surface molecules. The gene Amigo2 codes for a membrane adhesion molecule with an immunoglobulin-like domain 2 and is selectively expressed in the medial habenula. We present it as a candidate for controlling the fasciculation behavior of medial habenula axons. RESULTS: First, we studied the development of the habenular efferents in an Amigo2 lack of function mouse model. The fasciculus retroflexus showed a variable defasciculation phenotype. Gain of function experiments allowed us to generate a more condensed tract and rescued the Amigo2 knock-out phenotype. Changes in Amigo2 function did not alter the course of habenular fibers. CONCLUSION: We have demonstrated that Amigo2 plays a subtle role in the fasciculation of the fasciculus retroflexus.


Sujet(s)
Fasciculation , Habénula , Souris , Animaux , Mésencéphale , Axones , Protéines membranaires , Protéines de tissu nerveux/génétique
11.
Cell Rep ; 39(9): 110882, 2022 05 31.
Article de Anglais | MEDLINE | ID: mdl-35649349

RÉSUMÉ

Generalization of visual aversion is a critical function of the brain that supports survival, but the underlying neurobiological mechanisms are unclear. We establish a rapid generalization procedure for inducing visual aversion by dynamic stripe images. By using fiber photometry, apoptosis, chemogenetic and optogenetic techniques, and behavioral tests, we find that decreased cholinergic neurons' activity in the medial septum (MS) leads to generalization loss of visual aversion. Strikingly, we identify a projection from MS cholinergic neurons to the medial habenula (MHb) and find that inhibition of the MS→MHb cholinergic circuit disrupts aversion-generalization formation while its continuous activation disrupts subsequent extinction. Further studies show that MS→MHb cholinergic projections modulate the generalization of visual aversion possibly via M1 muscarinic acetylcholine receptors (mAChRs) of downstream neurons coreleasing glutamate and acetylcholine. These findings reveal that the MS→MHb cholinergic circuit is a critical node in aversion-generalization formation and extinction and potentially provides insight into the pathogenesis of affective disorders.


Sujet(s)
Habénula , Affect , Agents cholinergiques , Neurones cholinergiques/physiologie , Acide glutamique , Habénula/physiologie
12.
Behav Brain Res ; 426: 113841, 2022 05 24.
Article de Anglais | MEDLINE | ID: mdl-35292331

RÉSUMÉ

The medial habenula (mHb), a subregion of the habenula, is involved in diverse brain functions, such as nicotine addiction, anxiety, and anhedonia. We recently reported that TMEM16A deficiency, a calcium-activated chloride channel, decreased the activity of mHb cholinergic neurons. Since downregulated activity in cholinergic neurons of the mHb is involved in anhedonia-like behavior, we here investigated whether conditional deletion of TMEM16A in mHb cholinergic neurons also displays anhedonia-like behavior. The conditional deletion of TMEM16A in the mHb cholinergic neurons of mice (TMEM16A cKO mice) was generated by crossing ChaT-Cre (+) with floxed TMEM16A f/f mice. TMEM16A cKO mice displayed significantly reduced social interaction, sucrose preference, female urine sniffing, and increased marble burying. These behavioral data suggest the potential role of TMEM16A in anhedonic-like behavior in mice. Taken together, the presented data suggest that TMEM16A-mediated mHb activity might be a therapeutic target for anhedonia-related symptoms.


Sujet(s)
Habénula , Anhédonie , Animaux , Anxiété , Neurones cholinergiques , Femelle , Habénula/physiologie , Souris , Souris de lignée C57BL
13.
eNeuro ; 9(1)2022.
Article de Anglais | MEDLINE | ID: mdl-34876472

RÉSUMÉ

Cholinergic projections from the medial habenula (MHb) to the interpeduncular nucleus (IPN) have been studied for their complex contributions to nicotine addiction and have been implicated in nicotine reinforcement, aversion, and withdrawal. While it has been established that MHb cholinergic projections corelease glutamate, no direct evidence has demonstrated a role for this glutamate projection in nicotine consumption. In the present study, a novel floxed Slc17a7 [vesicular glutamate transporter 1 (VGLUT1)] mouse was generated and used to create conditional knock-out (cKO) mice that lack VGLUT1 in MHb cholinergic neurons. Loss of Slc17a7 expression in ventral MHb cholinergic neurons was validated using fluorescent in situ hybridization, and immunohistochemistry was used to demonstrate a corresponding reduction of VGLUT1 protein in cholinergic terminals in the IPN. We also used optogenetics-assisted electrophysiology to evoke EPSCs in IPN and observed a reduction of glutamatergic currents in the cKO, supporting the functional disruption of VGLUT1 in MHb to IPN synapses. cKO mice exhibited no gross phenotypic abnormalities and displayed normal thigmotaxis and locomotor behavior in the open-field assay. When trained to lever press for food, there was no difference between control and cKO. However, when tested in a nicotine self-administration procedure, we found that the loss of VGLUT1-mediated glutamate corelease led to increased responding for nicotine. These findings indicate that glutamate corelease from ventral MHb cholinergic neurons opposes nicotine self-administration, and provide additional support for targeting this synapse to develop potential treatments for nicotine addiction.


Sujet(s)
Habénula , Noyau interpédonculaire , Animaux , Hybridation fluorescente in situ , Souris , Nicotine , Agonistes nicotiniques
14.
Mol Cell Biochem ; 477(1): 167-180, 2022 Jan.
Article de Anglais | MEDLINE | ID: mdl-34633611

RÉSUMÉ

Nectins are immunoglobulin-like cell adhesion molecules constituting a family with four members, nectin-1, nectin-2, nectin-3, and nectin-4. In the brain, nectin-2 as well as nectin-1 and nectin-3 are expressed whereas nectin-4 is hardly expressed. In the nervous system, physiological functions of nectin-1 and nectin-3, such as synapse formation, mossy fiber trajectory regulation, interneurite affinity, contextual fear memory formation, and stress-related mental disorders, have been revealed. Nectin-2 is ubiquitously expressed in non-neuronal tissues and various nectin-2 functions in non-nervous systems have been extensively investigated, but nectin-2 functions in the brain have not been revealed until recently. Recent findings have revealed that nectin-2 is expressed in the specific areas of the brain and plays important roles, such as homeostasis of astrocytes and neurons and the formation of synapses. Moreover, a single nucleotide polymorphism in the human NECTIN2 gene is associated with Alzheimer's disease. We here summarize recent progress in our understanding of nectin-2 functions in the brain.


Sujet(s)
Maladie d'Alzheimer/métabolisme , Encéphale/métabolisme , Nectines/métabolisme , Neurones/métabolisme , Polymorphisme de nucléotide simple , Maladie d'Alzheimer/génétique , Animaux , Humains , Nectines/génétique
15.
Behav Brain Res ; 416: 113574, 2022 01 07.
Article de Anglais | MEDLINE | ID: mdl-34499942

RÉSUMÉ

The habenula is an epithalamic structure through which descending connections go from the telencephalon to the brainstem, putting it in a key location to provide feedback control over the ascending projections from the brainstem to the telencephalon. The medial habenula has a high concentration of nicotinic receptors. We assessed the role of medial habenular nicotinic receptors for nicotine self-administration (SA) in female young adult Sprague-Dawley rats. The rats had bilateral chronic infusion cannulae placed into the medial habenula nucleus. Each cannula was connected to a slow delivery osmotic minipump to chronically infuse mecamylamine (100 µg/side/day) or vehicle for four consecutive weeks. The rats were tested for nicotine SA for the first two weeks of mecamylamine infusion. Then, they had one week of enforced abstinence, during which they had no access to the nicotine SA. Finally, they had one week of resumed nicotine SA access. There was a significantly differential mecamylamine effects in animals with lower and higher pretreatment baseline nicotine SA. Rats with lower baseline nicotine SA levels showed a nearly significant mecamylamine-induced reduction in SA while those with higher baseline levels of SA showed a significant mecamylamine-induced increase in nicotine SA. This study determined that medial habenular nicotinic receptors are important for nicotine reinforcement. Baseline level of performance makes a crucial difference for the involvement of habenular mechanisms in nicotine reinforcement with nicotinic activation being important for maintaining nicotine self-administration for those with lower levels of baseline self-administration and the opposite effect with subjects with higher levels of baseline self-administration.


Sujet(s)
Habénula/effets des médicaments et des substances chimiques , Mécamylamine/pharmacologie , Nicotine/pharmacologie , Récepteurs nicotiniques/métabolisme , Autoadministration , Animaux , Femelle , Habénula/physiologie , Perfusions intraventriculaires , Nicotine/administration et posologie , Rats , Rat Sprague-Dawley ,
16.
Elife ; 102021 04 29.
Article de Anglais | MEDLINE | ID: mdl-33913808

RÉSUMÉ

The synaptic connection from medial habenula (MHb) to interpeduncular nucleus (IPN) is critical for emotion-related behaviors and uniquely expresses R-type Ca2+ channels (Cav2.3) and auxiliary GABAB receptor (GBR) subunits, the K+-channel tetramerization domain-containing proteins (KCTDs). Activation of GBRs facilitates or inhibits transmitter release from MHb terminals depending on the IPN subnucleus, but the role of KCTDs is unknown. We therefore examined the localization and function of Cav2.3, GBRs, and KCTDs in this pathway in mice. We show in heterologous cells that KCTD8 and KCTD12b directly bind to Cav2.3 and that KCTD8 potentiates Cav2.3 currents in the absence of GBRs. In the rostral IPN, KCTD8, KCTD12b, and Cav2.3 co-localize at the presynaptic active zone. Genetic deletion indicated a bidirectional modulation of Cav2.3-mediated release by these KCTDs with a compensatory increase of KCTD8 in the active zone in KCTD12b-deficient mice. The interaction of Cav2.3 with KCTDs therefore scales synaptic strength independent of GBR activation.


Sujet(s)
Canaux calciques de type R/métabolisme , Transporteurs de cations/métabolisme , Habénula/métabolisme , Terminaisons présynaptiques/métabolisme , Récepteurs GABA/métabolisme , Animaux , Canaux calciques de type R/génétique , Transporteurs de cations/génétique , Humains , Protéines et peptides de signalisation intracellulaire , Mâle , Souris , Souris de lignée BALB C , Souris de lignée C57BL , Récepteurs GABA/génétique , Récepteurs GABA-B/génétique , Récepteurs GABA-B/métabolisme , Synapses/génétique , Synapses/métabolisme
17.
Neurobiol Dis ; 150: 105244, 2021 03.
Article de Anglais | MEDLINE | ID: mdl-33385516

RÉSUMÉ

There is a growing body of evidence demonstrating the significant involvement of the sigma-1 chaperone protein in the modulation of seizures. Several sigma-1 receptor (Sig1R) ligands have been demonstrated to regulate the seizure threshold in acute and chronic seizure models. However, the mechanism by which Sig1R modulates the excitatory and inhibitory pathways in the brain has not been elucidated. The aim of this study was to compare the susceptibility to seizures of wild type (WT) and Sig1R knockout (Sig1R-/-) mice in intravenous pentylenetetrazol (PTZ) and (+)-bicuculline (BIC) infusion-induced acute seizure and Sig1R antagonist NE-100-induced seizure models. To determine possible molecular mechanisms, we used quantitative PCR, Western blotting and immunohistochemistry to assess the possible involvement of several seizure-related genes and proteins. Peripheral tissue contractile response of WT and Sig1R-/- mice was studied in an isolated vasa deferentia model. The most important finding was the significantly decreased expression of the R2 subunit of the GABA-B receptor in the hippocampus and habenula of Sig1R-/- mice. Our results demonstrated that Sig1R-/- mice have decreased thresholds for PTZ- and BIC-induced tonic seizures. In the NE-100-induced seizure model, Sig1R-/- animals demonstrated lower seizure scores, shorter durations and increased latency times of seizures compared to WT mice. Sig1R-independent activities of NE-100 included downregulation of the gene expression of iNOS and GABA-A γ2 and inhibition of KCl-induced depolarization in both WT and Sig1R-/- animals. In conclusion, the results of this study indicate that the lack of Sig1R resulted in decreased expression of the R2 subunit of the GABA-B receptor and increased susceptibility to seizures. Our results confirm that Sig1R is a significant molecular target for seizure modulation and warrants further investigation for the development of novel anti-seizure drugs.


Sujet(s)
Convulsivants/toxicité , Habénula/métabolisme , Hippocampe/métabolisme , Récepteurs GABA-B/génétique , Récepteur sigma/génétique , Crises épileptiques/génétique , Animaux , Anisoles/toxicité , Bicuculline/toxicité , Expression des gènes/effets des médicaments et des substances chimiques , Expression des gènes/génétique , Prédisposition génétique à une maladie , Habénula/effets des médicaments et des substances chimiques , Hippocampe/effets des médicaments et des substances chimiques , Souris , Souris knockout , Nitric oxide synthase type II/effets des médicaments et des substances chimiques , Nitric oxide synthase type II/génétique , Pentétrazol/toxicité , Propylamines/toxicité , Récepteurs GABA-A/effets des médicaments et des substances chimiques , Récepteurs GABA-A/génétique , Récepteurs GABA-B/métabolisme , Crises épileptiques/induit chimiquement ,
18.
J Comp Neurol ; 529(2): 450-477, 2021 02.
Article de Anglais | MEDLINE | ID: mdl-32452538

RÉSUMÉ

The medial habenula (MHb) receives afferents from the triangular septum and the medial septal complex, projects efferents to the interpeduncular nucleus (IPN) in the midbrain to regulate dopamine and serotonin levels, and is implicated in stress, depression, memory, and nicotine withdrawal syndrome. We previously showed that the cell adhesion molecule nectin-2α is localized at the boundary between adjacent somata of clustered cholinergic neurons and regulates the voltage-gated A-type K+ channel Kv4.2 localization at membrane specializations in the MHb. This adhesion apparatus, named nectin-2α spots, is not associated with the nectin-binding protein afadin or any classic cadherins and their binding proteins p120-catenin and ß-catenin. We showed here that nectin-2α was additionally localized at cholinergic neuron dendrites in synaptic regions of the MHb. The genetic ablation of nectin-2 reduced the number of synapses in the MHb without affecting their morphology. Nectin-2α was associated with afadin, cadherin-8, p120-catenin, ß-catenin, and αN-catenin, forming puncta adherentia junctions (PAJs). Nectin-2α was observed in the IPN, but not in the triangular septum or the medial septal complex. The genetic ablation of nectin-2 did not affect synapse formation in the IPN. These results indicate that nectin-2α forms two types of adhesion apparatus in the MHb, namely nectin-2α spots at neighboring somata and PAJs at neighboring dendrites, and that dendritic PAJs regulate synapse formation in the MHb.


Sujet(s)
Neurones cholinergiques/composition chimique , Dendrites/composition chimique , Habénula/composition chimique , Nectines/analyse , Synapses/composition chimique , Séquence d'acides aminés , Animaux , Animaux nouveau-nés , Neurones cholinergiques/métabolisme , Dendrites/génétique , Dendrites/métabolisme , Habénula/métabolisme , Mâle , Souris , Souris de lignée C57BL , Souris knockout , Nectines/déficit , Nectines/génétique , Synapses/génétique , Synapses/métabolisme
19.
Biochem Biophys Res Commun ; 530(1): 130-135, 2020 09 10.
Article de Anglais | MEDLINE | ID: mdl-32828274

RÉSUMÉ

Neurons in the central nervous system display a great diversity of synaptic architecture. While much of our knowledge on the excitatory synapse morphology derives from the prototypical asymmetric synapses, little has been studied about the atypical crest-type synapse that exists in the restricted brain regions. Here, we used focused ion beam scanning electron microscopy (FIB/SEM) to image a neuropil volume of interpeduncular nucleus (IPN) and manually reconstructed several dendrites to obtain an insight about the topography and quantitative features of crest synapses. Three-dimensional reconstruction showed numerous U-shaped structures protruding from the IPN dendrites. On either faces of the U-shaped structure, a pair of crest synapses are aligned in parallel such that there exists a positive correlation between the postsynaptic density (PSD) area of synapses that participate in pair formation. Interestingly, mitochondria are excluded from the site of crest synapses. Several presynaptic axons run through the hollow, cylindrical space of the U-shape grooves such that the plasma membrane of the axon and the dendrite are organized in a tight opposition without any intervening glial membrane. Unlike the peculiar dendritic morphology, IPN neurons possess typical somatic morphology with an oval, centrally located nucleus. In conclusion, our data reveals a hitherto unknown unique topographical feature of crest synapses in the IPN.


Sujet(s)
Noyau interpédonculaire/ultrastructure , Synapses/ultrastructure , Animaux , Axones/ultrastructure , Dendrites/ultrastructure , Souris de lignée C57BL , Microscopie électronique à balayage
20.
J Biol Chem ; 295(31): 10822-10830, 2020 07 31.
Article de Anglais | MEDLINE | ID: mdl-32576659

RÉSUMÉ

The interplay between G protein-coupled receptors (GPCRs) is critical for controlling neuronal activity that shapes neuromodulatory outcomes. Recent evidence indicates that the orphan receptor GPR139 influences opioid modulation of key brain circuits by opposing the actions of the µ-opioid receptor (MOR). However, the function of GPR139 and its signaling mechanisms are poorly understood. In this study, we report that GPR139 activates multiple heterotrimeric G proteins, including members of the Gq/11 and Gi/o families. Using a panel of reporter assays in reconstituted HEK293T/17 cells, we found that GPR139 functions via the Gq/11 pathway and thereby distinctly regulates cellular effector systems, including stimulation of cAMP production and inhibition of G protein inward rectifying potassium (GIRK) channels. Electrophysiological recordings from medial habenular neurons revealed that GPR139 signaling via Gq/11 is necessary and sufficient for counteracting MOR-mediated inhibition of neuronal firing. These results uncover a mechanistic interplay between GPCRs involved in controlling opioidergic neuromodulation in the brain.


Sujet(s)
Encéphale/métabolisme , Sous-unités alpha Gq-G11 des protéines G/métabolisme , Sous-unités alpha des protéines G/métabolisme , Protéines de tissu nerveux/métabolisme , Neurones/métabolisme , Récepteurs couplés aux protéines G/métabolisme , Récepteur mu/métabolisme , Systèmes de seconds messagers , Animaux , Encéphale/cytologie , AMP cyclique/génétique , AMP cyclique/métabolisme , Sous-unités alpha des protéines G/génétique , Sous-unités alpha Gq-G11 des protéines G/génétique , Cellules HEK293 , Humains , Souris , Protéines de tissu nerveux/génétique , Neurones/cytologie , Récepteurs couplés aux protéines G/génétique , Récepteur mu/génétique
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