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Cell-Intrinsic Control of Interneuron Migration Drives Cortical Morphogenesis

Interneurons navigate along multiple tangential paths to settle into appropriate cortical layers. They undergo a saltatory migration paced by intermittent nuclear jumps whose regulation relies on interplay between extracellular cues and genetic-encoded information. It remains unclear how cycles of p...

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Autores principales: Silva, Carla G., Peyre, Elise, Adhikari, Mohit H., Tielens, Sylvia, Tanco, Sebastian, Van Damme, Petra, Magno, Lorenza, Krusy, Nathalie, Agirman, Gulistan, Magiera, Maria M., Kessaris, Nicoletta, Malgrange, Brigitte, Andrieux, Annie, Janke, Carsten, Nguyen, Laurent
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5847171/
https://www.ncbi.nlm.nih.gov/pubmed/29474907
http://dx.doi.org/10.1016/j.cell.2018.01.031
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author Silva, Carla G.
Peyre, Elise
Adhikari, Mohit H.
Tielens, Sylvia
Tanco, Sebastian
Van Damme, Petra
Magno, Lorenza
Krusy, Nathalie
Agirman, Gulistan
Magiera, Maria M.
Kessaris, Nicoletta
Malgrange, Brigitte
Andrieux, Annie
Janke, Carsten
Nguyen, Laurent
author_facet Silva, Carla G.
Peyre, Elise
Adhikari, Mohit H.
Tielens, Sylvia
Tanco, Sebastian
Van Damme, Petra
Magno, Lorenza
Krusy, Nathalie
Agirman, Gulistan
Magiera, Maria M.
Kessaris, Nicoletta
Malgrange, Brigitte
Andrieux, Annie
Janke, Carsten
Nguyen, Laurent
author_sort Silva, Carla G.
collection PubMed
description Interneurons navigate along multiple tangential paths to settle into appropriate cortical layers. They undergo a saltatory migration paced by intermittent nuclear jumps whose regulation relies on interplay between extracellular cues and genetic-encoded information. It remains unclear how cycles of pause and movement are coordinated at the molecular level. Post-translational modification of proteins contributes to cell migration regulation. The present study uncovers that carboxypeptidase 1, which promotes post-translational protein deglutamylation, controls the pausing of migrating cortical interneurons. Moreover, we demonstrate that pausing during migration attenuates movement simultaneity at the population level, thereby controlling the flow of interneurons invading the cortex. Interfering with the regulation of pausing not only affects the size of the cortical interneuron cohort but also impairs the generation of age-matched projection neurons of the upper layers.
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spelling pubmed-58471712018-03-13 Cell-Intrinsic Control of Interneuron Migration Drives Cortical Morphogenesis Silva, Carla G. Peyre, Elise Adhikari, Mohit H. Tielens, Sylvia Tanco, Sebastian Van Damme, Petra Magno, Lorenza Krusy, Nathalie Agirman, Gulistan Magiera, Maria M. Kessaris, Nicoletta Malgrange, Brigitte Andrieux, Annie Janke, Carsten Nguyen, Laurent Cell Article Interneurons navigate along multiple tangential paths to settle into appropriate cortical layers. They undergo a saltatory migration paced by intermittent nuclear jumps whose regulation relies on interplay between extracellular cues and genetic-encoded information. It remains unclear how cycles of pause and movement are coordinated at the molecular level. Post-translational modification of proteins contributes to cell migration regulation. The present study uncovers that carboxypeptidase 1, which promotes post-translational protein deglutamylation, controls the pausing of migrating cortical interneurons. Moreover, we demonstrate that pausing during migration attenuates movement simultaneity at the population level, thereby controlling the flow of interneurons invading the cortex. Interfering with the regulation of pausing not only affects the size of the cortical interneuron cohort but also impairs the generation of age-matched projection neurons of the upper layers. Cell Press 2018-02-22 /pmc/articles/PMC5847171/ /pubmed/29474907 http://dx.doi.org/10.1016/j.cell.2018.01.031 Text en © 2018 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Silva, Carla G.
Peyre, Elise
Adhikari, Mohit H.
Tielens, Sylvia
Tanco, Sebastian
Van Damme, Petra
Magno, Lorenza
Krusy, Nathalie
Agirman, Gulistan
Magiera, Maria M.
Kessaris, Nicoletta
Malgrange, Brigitte
Andrieux, Annie
Janke, Carsten
Nguyen, Laurent
Cell-Intrinsic Control of Interneuron Migration Drives Cortical Morphogenesis
title Cell-Intrinsic Control of Interneuron Migration Drives Cortical Morphogenesis
title_full Cell-Intrinsic Control of Interneuron Migration Drives Cortical Morphogenesis
title_fullStr Cell-Intrinsic Control of Interneuron Migration Drives Cortical Morphogenesis
title_full_unstemmed Cell-Intrinsic Control of Interneuron Migration Drives Cortical Morphogenesis
title_short Cell-Intrinsic Control of Interneuron Migration Drives Cortical Morphogenesis
title_sort cell-intrinsic control of interneuron migration drives cortical morphogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5847171/
https://www.ncbi.nlm.nih.gov/pubmed/29474907
http://dx.doi.org/10.1016/j.cell.2018.01.031
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