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The Ciliogenic Transcription Factor RFX3 Regulates Early Midline Distribution of Guidepost Neurons Required for Corpus Callosum Development

The corpus callosum (CC) is the major commissure that bridges the cerebral hemispheres. Agenesis of the CC is associated with human ciliopathies, but the origin of this default is unclear. Regulatory Factor X3 (RFX3) is a transcription factor involved in the control of ciliogenesis, and Rfx3–deficie...

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Autores principales: Benadiba, Carine, Magnani, Dario, Niquille, Mathieu, Morlé, Laurette, Valloton, Delphine, Nawabi, Homaira, Ait-Lounis, Aouatef, Otsmane, Belkacem, Reith, Walter, Theil, Thomas, Hornung, Jean-Pierre, Lebrand, Cécile, Durand, Bénédicte
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3315471/
https://www.ncbi.nlm.nih.gov/pubmed/22479201
http://dx.doi.org/10.1371/journal.pgen.1002606
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author Benadiba, Carine
Magnani, Dario
Niquille, Mathieu
Morlé, Laurette
Valloton, Delphine
Nawabi, Homaira
Ait-Lounis, Aouatef
Otsmane, Belkacem
Reith, Walter
Theil, Thomas
Hornung, Jean-Pierre
Lebrand, Cécile
Durand, Bénédicte
author_facet Benadiba, Carine
Magnani, Dario
Niquille, Mathieu
Morlé, Laurette
Valloton, Delphine
Nawabi, Homaira
Ait-Lounis, Aouatef
Otsmane, Belkacem
Reith, Walter
Theil, Thomas
Hornung, Jean-Pierre
Lebrand, Cécile
Durand, Bénédicte
author_sort Benadiba, Carine
collection PubMed
description The corpus callosum (CC) is the major commissure that bridges the cerebral hemispheres. Agenesis of the CC is associated with human ciliopathies, but the origin of this default is unclear. Regulatory Factor X3 (RFX3) is a transcription factor involved in the control of ciliogenesis, and Rfx3–deficient mice show several hallmarks of ciliopathies including left–right asymmetry defects and hydrocephalus. Here we show that Rfx3–deficient mice suffer from CC agenesis associated with a marked disorganisation of guidepost neurons required for axon pathfinding across the midline. Using transplantation assays, we demonstrate that abnormalities of the mutant midline region are primarily responsible for the CC malformation. Conditional genetic inactivation shows that RFX3 is not required in guidepost cells for proper CC formation, but is required before E12.5 for proper patterning of the cortical septal boundary and hence accurate distribution of guidepost neurons at later stages. We observe focused but consistent ectopic expression of Fibroblast growth factor 8 (Fgf8) at the rostro commissural plate associated with a reduced ratio of GLIoma-associated oncogene family zinc finger 3 (GLI3) repressor to activator forms. We demonstrate on brain explant cultures that ectopic FGF8 reproduces the guidepost neuronal defects observed in Rfx3 mutants. This study unravels a crucial role of RFX3 during early brain development by indirectly regulating GLI3 activity, which leads to FGF8 upregulation and ultimately to disturbed distribution of guidepost neurons required for CC morphogenesis. Hence, the RFX3 mutant mouse model brings novel understandings of the mechanisms that underlie CC agenesis in ciliopathies.
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spelling pubmed-33154712012-04-04 The Ciliogenic Transcription Factor RFX3 Regulates Early Midline Distribution of Guidepost Neurons Required for Corpus Callosum Development Benadiba, Carine Magnani, Dario Niquille, Mathieu Morlé, Laurette Valloton, Delphine Nawabi, Homaira Ait-Lounis, Aouatef Otsmane, Belkacem Reith, Walter Theil, Thomas Hornung, Jean-Pierre Lebrand, Cécile Durand, Bénédicte PLoS Genet Research Article The corpus callosum (CC) is the major commissure that bridges the cerebral hemispheres. Agenesis of the CC is associated with human ciliopathies, but the origin of this default is unclear. Regulatory Factor X3 (RFX3) is a transcription factor involved in the control of ciliogenesis, and Rfx3–deficient mice show several hallmarks of ciliopathies including left–right asymmetry defects and hydrocephalus. Here we show that Rfx3–deficient mice suffer from CC agenesis associated with a marked disorganisation of guidepost neurons required for axon pathfinding across the midline. Using transplantation assays, we demonstrate that abnormalities of the mutant midline region are primarily responsible for the CC malformation. Conditional genetic inactivation shows that RFX3 is not required in guidepost cells for proper CC formation, but is required before E12.5 for proper patterning of the cortical septal boundary and hence accurate distribution of guidepost neurons at later stages. We observe focused but consistent ectopic expression of Fibroblast growth factor 8 (Fgf8) at the rostro commissural plate associated with a reduced ratio of GLIoma-associated oncogene family zinc finger 3 (GLI3) repressor to activator forms. We demonstrate on brain explant cultures that ectopic FGF8 reproduces the guidepost neuronal defects observed in Rfx3 mutants. This study unravels a crucial role of RFX3 during early brain development by indirectly regulating GLI3 activity, which leads to FGF8 upregulation and ultimately to disturbed distribution of guidepost neurons required for CC morphogenesis. Hence, the RFX3 mutant mouse model brings novel understandings of the mechanisms that underlie CC agenesis in ciliopathies. Public Library of Science 2012-03-29 /pmc/articles/PMC3315471/ /pubmed/22479201 http://dx.doi.org/10.1371/journal.pgen.1002606 Text en Benadiba et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Benadiba, Carine
Magnani, Dario
Niquille, Mathieu
Morlé, Laurette
Valloton, Delphine
Nawabi, Homaira
Ait-Lounis, Aouatef
Otsmane, Belkacem
Reith, Walter
Theil, Thomas
Hornung, Jean-Pierre
Lebrand, Cécile
Durand, Bénédicte
The Ciliogenic Transcription Factor RFX3 Regulates Early Midline Distribution of Guidepost Neurons Required for Corpus Callosum Development
title The Ciliogenic Transcription Factor RFX3 Regulates Early Midline Distribution of Guidepost Neurons Required for Corpus Callosum Development
title_full The Ciliogenic Transcription Factor RFX3 Regulates Early Midline Distribution of Guidepost Neurons Required for Corpus Callosum Development
title_fullStr The Ciliogenic Transcription Factor RFX3 Regulates Early Midline Distribution of Guidepost Neurons Required for Corpus Callosum Development
title_full_unstemmed The Ciliogenic Transcription Factor RFX3 Regulates Early Midline Distribution of Guidepost Neurons Required for Corpus Callosum Development
title_short The Ciliogenic Transcription Factor RFX3 Regulates Early Midline Distribution of Guidepost Neurons Required for Corpus Callosum Development
title_sort ciliogenic transcription factor rfx3 regulates early midline distribution of guidepost neurons required for corpus callosum development
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3315471/
https://www.ncbi.nlm.nih.gov/pubmed/22479201
http://dx.doi.org/10.1371/journal.pgen.1002606
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