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Endothelial cell-derived GABA signaling modulates neuronal migration and postnatal behavior

The cerebral cortex is essential for integration and processing of information that is required for most behaviors. The exquisitely precise laminar organization of the cerebral cortex arises during embryonic development when neurons migrate successively from ventricular zones to coalesce into specif...

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Autores principales: Li, Suyan, Kumar T, Peeyush, Joshee, Sampada, Kirschstein, Timo, Subburaju, Sivan, Khalili, Jahan S, Kloepper, Jonas, Du, Chuang, Elkhal, Abdallah, Szabó, Gábor, Jain, Rakesh K, Köhling, Rüdiger, Vasudevan, Anju
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5799810/
https://www.ncbi.nlm.nih.gov/pubmed/29086765
http://dx.doi.org/10.1038/cr.2017.135
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author Li, Suyan
Kumar T, Peeyush
Joshee, Sampada
Kirschstein, Timo
Subburaju, Sivan
Khalili, Jahan S
Kloepper, Jonas
Du, Chuang
Elkhal, Abdallah
Szabó, Gábor
Jain, Rakesh K
Köhling, Rüdiger
Vasudevan, Anju
author_facet Li, Suyan
Kumar T, Peeyush
Joshee, Sampada
Kirschstein, Timo
Subburaju, Sivan
Khalili, Jahan S
Kloepper, Jonas
Du, Chuang
Elkhal, Abdallah
Szabó, Gábor
Jain, Rakesh K
Köhling, Rüdiger
Vasudevan, Anju
author_sort Li, Suyan
collection PubMed
description The cerebral cortex is essential for integration and processing of information that is required for most behaviors. The exquisitely precise laminar organization of the cerebral cortex arises during embryonic development when neurons migrate successively from ventricular zones to coalesce into specific cortical layers. While radial glia act as guide rails for projection neuron migration, pre-formed vascular networks provide support and guidance cues for GABAergic interneuron migration. This study provides novel conceptual and mechanistic insights into this paradigm of vascular-neuronal interactions, revealing new mechanisms of GABA and its receptor-mediated signaling via embryonic forebrain endothelial cells. With the use of two new endothelial cell specific conditional mouse models of the GABA pathway (Gabrb3(ΔTie2-Cre) and Vgat(ΔTie2-Cre)), we show that partial or complete loss of GABA release from endothelial cells during embryogenesis results in vascular defects and impairs long-distance migration and positioning of cortical interneurons. The downstream effects of perturbed endothelial cell-derived GABA signaling are critical, leading to lasting changes to cortical circuits and persistent behavioral deficits. Furthermore, we illustrate new mechanisms of activation of GABA signaling in forebrain endothelial cells that promotes their migration, angiogenesis and acquisition of blood-brain barrier properties. Our findings uncover and elucidate a novel endothelial GABA signaling pathway in the CNS that is distinct from the classical neuronal GABA signaling pathway and shed new light on the etiology and pathophysiology of neuropsychiatric diseases, such as autism spectrum disorders, epilepsy, anxiety, depression and schizophrenia.
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spelling pubmed-57998102018-02-08 Endothelial cell-derived GABA signaling modulates neuronal migration and postnatal behavior Li, Suyan Kumar T, Peeyush Joshee, Sampada Kirschstein, Timo Subburaju, Sivan Khalili, Jahan S Kloepper, Jonas Du, Chuang Elkhal, Abdallah Szabó, Gábor Jain, Rakesh K Köhling, Rüdiger Vasudevan, Anju Cell Res Original Article The cerebral cortex is essential for integration and processing of information that is required for most behaviors. The exquisitely precise laminar organization of the cerebral cortex arises during embryonic development when neurons migrate successively from ventricular zones to coalesce into specific cortical layers. While radial glia act as guide rails for projection neuron migration, pre-formed vascular networks provide support and guidance cues for GABAergic interneuron migration. This study provides novel conceptual and mechanistic insights into this paradigm of vascular-neuronal interactions, revealing new mechanisms of GABA and its receptor-mediated signaling via embryonic forebrain endothelial cells. With the use of two new endothelial cell specific conditional mouse models of the GABA pathway (Gabrb3(ΔTie2-Cre) and Vgat(ΔTie2-Cre)), we show that partial or complete loss of GABA release from endothelial cells during embryogenesis results in vascular defects and impairs long-distance migration and positioning of cortical interneurons. The downstream effects of perturbed endothelial cell-derived GABA signaling are critical, leading to lasting changes to cortical circuits and persistent behavioral deficits. Furthermore, we illustrate new mechanisms of activation of GABA signaling in forebrain endothelial cells that promotes their migration, angiogenesis and acquisition of blood-brain barrier properties. Our findings uncover and elucidate a novel endothelial GABA signaling pathway in the CNS that is distinct from the classical neuronal GABA signaling pathway and shed new light on the etiology and pathophysiology of neuropsychiatric diseases, such as autism spectrum disorders, epilepsy, anxiety, depression and schizophrenia. Nature Publishing Group 2018-02 2017-10-31 /pmc/articles/PMC5799810/ /pubmed/29086765 http://dx.doi.org/10.1038/cr.2017.135 Text en Copyright © 2017 The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 Unported License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Original Article
Li, Suyan
Kumar T, Peeyush
Joshee, Sampada
Kirschstein, Timo
Subburaju, Sivan
Khalili, Jahan S
Kloepper, Jonas
Du, Chuang
Elkhal, Abdallah
Szabó, Gábor
Jain, Rakesh K
Köhling, Rüdiger
Vasudevan, Anju
Endothelial cell-derived GABA signaling modulates neuronal migration and postnatal behavior
title Endothelial cell-derived GABA signaling modulates neuronal migration and postnatal behavior
title_full Endothelial cell-derived GABA signaling modulates neuronal migration and postnatal behavior
title_fullStr Endothelial cell-derived GABA signaling modulates neuronal migration and postnatal behavior
title_full_unstemmed Endothelial cell-derived GABA signaling modulates neuronal migration and postnatal behavior
title_short Endothelial cell-derived GABA signaling modulates neuronal migration and postnatal behavior
title_sort endothelial cell-derived gaba signaling modulates neuronal migration and postnatal behavior
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5799810/
https://www.ncbi.nlm.nih.gov/pubmed/29086765
http://dx.doi.org/10.1038/cr.2017.135
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