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High‐throughput morphometric and transcriptomic profiling uncovers composition of naïve and sensory‐deprived cortical cholinergic VIP/CHAT neurons

Cortical neuronal networks control cognitive output, but their composition and modulation remain elusive. Here, we studied the morphological and transcriptional diversity of cortical cholinergic VIP/ChAT interneurons (VChIs), a sparse population with a largely unknown function. We focused on VChIs f...

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Autores principales: Yayon, Nadav, Amsalem, Oren, Zorbaz, Tamara, Yakov, Or, Dubnov, Serafima, Winek, Katarzyna, Dudai, Amir, Adam, Gil, Schmidtner, Anna K, Tessier‐Lavigne, Marc, Renier, Nicolas, Habib, Naomi, Segev, Idan, London, Michael, Soreq, Hermona
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9811618/
https://www.ncbi.nlm.nih.gov/pubmed/36377476
http://dx.doi.org/10.15252/embj.2021110565
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author Yayon, Nadav
Amsalem, Oren
Zorbaz, Tamara
Yakov, Or
Dubnov, Serafima
Winek, Katarzyna
Dudai, Amir
Adam, Gil
Schmidtner, Anna K
Tessier‐Lavigne, Marc
Renier, Nicolas
Habib, Naomi
Segev, Idan
London, Michael
Soreq, Hermona
author_facet Yayon, Nadav
Amsalem, Oren
Zorbaz, Tamara
Yakov, Or
Dubnov, Serafima
Winek, Katarzyna
Dudai, Amir
Adam, Gil
Schmidtner, Anna K
Tessier‐Lavigne, Marc
Renier, Nicolas
Habib, Naomi
Segev, Idan
London, Michael
Soreq, Hermona
author_sort Yayon, Nadav
collection PubMed
description Cortical neuronal networks control cognitive output, but their composition and modulation remain elusive. Here, we studied the morphological and transcriptional diversity of cortical cholinergic VIP/ChAT interneurons (VChIs), a sparse population with a largely unknown function. We focused on VChIs from the whole barrel cortex and developed a high‐throughput automated reconstruction framework, termed PopRec, to characterize hundreds of VChIs from each mouse in an unbiased manner, while preserving 3D cortical coordinates in multiple cleared mouse brains, accumulating thousands of cells. We identified two fundamentally distinct morphological types of VChIs, bipolar and multipolar that differ in their cortical distribution and general morphological features. Following mild unilateral whisker deprivation on postnatal day seven, we found after three weeks both ipsi‐ and contralateral dendritic arborization differences and modified cortical depth and distribution patterns in the barrel fields alone. To seek the transcriptomic drivers, we developed NuNeX, a method for isolating nuclei from fixed tissues, to explore sorted VChIs. This highlighted differentially expressed neuronal structural transcripts, altered exitatory innervation pathways and established Elmo1 as a key regulator of morphology following deprivation.
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spelling pubmed-98116182023-01-11 High‐throughput morphometric and transcriptomic profiling uncovers composition of naïve and sensory‐deprived cortical cholinergic VIP/CHAT neurons Yayon, Nadav Amsalem, Oren Zorbaz, Tamara Yakov, Or Dubnov, Serafima Winek, Katarzyna Dudai, Amir Adam, Gil Schmidtner, Anna K Tessier‐Lavigne, Marc Renier, Nicolas Habib, Naomi Segev, Idan London, Michael Soreq, Hermona EMBO J Articles Cortical neuronal networks control cognitive output, but their composition and modulation remain elusive. Here, we studied the morphological and transcriptional diversity of cortical cholinergic VIP/ChAT interneurons (VChIs), a sparse population with a largely unknown function. We focused on VChIs from the whole barrel cortex and developed a high‐throughput automated reconstruction framework, termed PopRec, to characterize hundreds of VChIs from each mouse in an unbiased manner, while preserving 3D cortical coordinates in multiple cleared mouse brains, accumulating thousands of cells. We identified two fundamentally distinct morphological types of VChIs, bipolar and multipolar that differ in their cortical distribution and general morphological features. Following mild unilateral whisker deprivation on postnatal day seven, we found after three weeks both ipsi‐ and contralateral dendritic arborization differences and modified cortical depth and distribution patterns in the barrel fields alone. To seek the transcriptomic drivers, we developed NuNeX, a method for isolating nuclei from fixed tissues, to explore sorted VChIs. This highlighted differentially expressed neuronal structural transcripts, altered exitatory innervation pathways and established Elmo1 as a key regulator of morphology following deprivation. John Wiley and Sons Inc. 2022-11-15 /pmc/articles/PMC9811618/ /pubmed/36377476 http://dx.doi.org/10.15252/embj.2021110565 Text en © 2022 The Authors. Published under the terms of the CC BY NC ND 4.0 license. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Articles
Yayon, Nadav
Amsalem, Oren
Zorbaz, Tamara
Yakov, Or
Dubnov, Serafima
Winek, Katarzyna
Dudai, Amir
Adam, Gil
Schmidtner, Anna K
Tessier‐Lavigne, Marc
Renier, Nicolas
Habib, Naomi
Segev, Idan
London, Michael
Soreq, Hermona
High‐throughput morphometric and transcriptomic profiling uncovers composition of naïve and sensory‐deprived cortical cholinergic VIP/CHAT neurons
title High‐throughput morphometric and transcriptomic profiling uncovers composition of naïve and sensory‐deprived cortical cholinergic VIP/CHAT neurons
title_full High‐throughput morphometric and transcriptomic profiling uncovers composition of naïve and sensory‐deprived cortical cholinergic VIP/CHAT neurons
title_fullStr High‐throughput morphometric and transcriptomic profiling uncovers composition of naïve and sensory‐deprived cortical cholinergic VIP/CHAT neurons
title_full_unstemmed High‐throughput morphometric and transcriptomic profiling uncovers composition of naïve and sensory‐deprived cortical cholinergic VIP/CHAT neurons
title_short High‐throughput morphometric and transcriptomic profiling uncovers composition of naïve and sensory‐deprived cortical cholinergic VIP/CHAT neurons
title_sort high‐throughput morphometric and transcriptomic profiling uncovers composition of naïve and sensory‐deprived cortical cholinergic vip/chat neurons
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9811618/
https://www.ncbi.nlm.nih.gov/pubmed/36377476
http://dx.doi.org/10.15252/embj.2021110565
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