Cargando…
Male-Biased Aganglionic Megacolon in the TashT Mouse Line Due to Perturbation of Silencer Elements in a Large Gene Desert of Chromosome 10
Neural crest cells (NCC) are a transient migratory cell population that generates diverse cell types such as neurons and glia of the enteric nervous system (ENS). Via an insertional mutation screen for loci affecting NCC development in mice, we identified one line—named TashT—that displays a partial...
Autores principales: | , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2015
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4364714/ https://www.ncbi.nlm.nih.gov/pubmed/25786024 http://dx.doi.org/10.1371/journal.pgen.1005093 |
_version_ | 1782362113305477120 |
---|---|
author | Bergeron, Karl-F. Cardinal, Tatiana Touré, Aboubacrine M. Béland, Mélanie Raiwet, Diana L. Silversides, David W. Pilon, Nicolas |
author_facet | Bergeron, Karl-F. Cardinal, Tatiana Touré, Aboubacrine M. Béland, Mélanie Raiwet, Diana L. Silversides, David W. Pilon, Nicolas |
author_sort | Bergeron, Karl-F. |
collection | PubMed |
description | Neural crest cells (NCC) are a transient migratory cell population that generates diverse cell types such as neurons and glia of the enteric nervous system (ENS). Via an insertional mutation screen for loci affecting NCC development in mice, we identified one line—named TashT—that displays a partially penetrant aganglionic megacolon phenotype in a strong male-biased manner. Interestingly, this phenotype is highly reminiscent of human Hirschsprung’s disease, a neurocristopathy with a still unexplained male sex bias. In contrast to the megacolon phenotype, colonic aganglionosis is almost fully penetrant in homozygous TashT animals. The sex bias in megacolon expressivity can be explained by the fact that the male ENS ends, on average, around a “tipping point” of minimal colonic ganglionosis while the female ENS ends, on average, just beyond it. Detailed analysis of embryonic intestines revealed that aganglionosis in homozygous TashT animals is due to slower migration of enteric NCC. The TashT insertional mutation is localized in a gene desert containing multiple highly conserved elements that exhibit repressive activity in reporter assays. RNAseq analyses and 3C assays revealed that the TashT insertion results, at least in part, in NCC-specific relief of repression of the uncharacterized gene Fam162b; an outcome independently confirmed via transient transgenesis. The transcriptional signature of enteric NCC from homozygous TashT embryos is also characterized by the deregulation of genes encoding members of the most important signaling pathways for ENS formation—Gdnf/Ret and Edn3/Ednrb—and, intriguingly, the downregulation of specific subsets of X-linked genes. In conclusion, this study not only allowed the identification of Fam162b coding and regulatory sequences as novel candidate loci for Hirschsprung’s disease but also provides important new insights into its male sex bias. |
format | Online Article Text |
id | pubmed-4364714 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-43647142015-03-23 Male-Biased Aganglionic Megacolon in the TashT Mouse Line Due to Perturbation of Silencer Elements in a Large Gene Desert of Chromosome 10 Bergeron, Karl-F. Cardinal, Tatiana Touré, Aboubacrine M. Béland, Mélanie Raiwet, Diana L. Silversides, David W. Pilon, Nicolas PLoS Genet Research Article Neural crest cells (NCC) are a transient migratory cell population that generates diverse cell types such as neurons and glia of the enteric nervous system (ENS). Via an insertional mutation screen for loci affecting NCC development in mice, we identified one line—named TashT—that displays a partially penetrant aganglionic megacolon phenotype in a strong male-biased manner. Interestingly, this phenotype is highly reminiscent of human Hirschsprung’s disease, a neurocristopathy with a still unexplained male sex bias. In contrast to the megacolon phenotype, colonic aganglionosis is almost fully penetrant in homozygous TashT animals. The sex bias in megacolon expressivity can be explained by the fact that the male ENS ends, on average, around a “tipping point” of minimal colonic ganglionosis while the female ENS ends, on average, just beyond it. Detailed analysis of embryonic intestines revealed that aganglionosis in homozygous TashT animals is due to slower migration of enteric NCC. The TashT insertional mutation is localized in a gene desert containing multiple highly conserved elements that exhibit repressive activity in reporter assays. RNAseq analyses and 3C assays revealed that the TashT insertion results, at least in part, in NCC-specific relief of repression of the uncharacterized gene Fam162b; an outcome independently confirmed via transient transgenesis. The transcriptional signature of enteric NCC from homozygous TashT embryos is also characterized by the deregulation of genes encoding members of the most important signaling pathways for ENS formation—Gdnf/Ret and Edn3/Ednrb—and, intriguingly, the downregulation of specific subsets of X-linked genes. In conclusion, this study not only allowed the identification of Fam162b coding and regulatory sequences as novel candidate loci for Hirschsprung’s disease but also provides important new insights into its male sex bias. Public Library of Science 2015-03-18 /pmc/articles/PMC4364714/ /pubmed/25786024 http://dx.doi.org/10.1371/journal.pgen.1005093 Text en © 2015 Bergeron 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 Bergeron, Karl-F. Cardinal, Tatiana Touré, Aboubacrine M. Béland, Mélanie Raiwet, Diana L. Silversides, David W. Pilon, Nicolas Male-Biased Aganglionic Megacolon in the TashT Mouse Line Due to Perturbation of Silencer Elements in a Large Gene Desert of Chromosome 10 |
title | Male-Biased Aganglionic Megacolon in the TashT Mouse Line Due to Perturbation of Silencer Elements in a Large Gene Desert of Chromosome 10 |
title_full | Male-Biased Aganglionic Megacolon in the TashT Mouse Line Due to Perturbation of Silencer Elements in a Large Gene Desert of Chromosome 10 |
title_fullStr | Male-Biased Aganglionic Megacolon in the TashT Mouse Line Due to Perturbation of Silencer Elements in a Large Gene Desert of Chromosome 10 |
title_full_unstemmed | Male-Biased Aganglionic Megacolon in the TashT Mouse Line Due to Perturbation of Silencer Elements in a Large Gene Desert of Chromosome 10 |
title_short | Male-Biased Aganglionic Megacolon in the TashT Mouse Line Due to Perturbation of Silencer Elements in a Large Gene Desert of Chromosome 10 |
title_sort | male-biased aganglionic megacolon in the tasht mouse line due to perturbation of silencer elements in a large gene desert of chromosome 10 |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4364714/ https://www.ncbi.nlm.nih.gov/pubmed/25786024 http://dx.doi.org/10.1371/journal.pgen.1005093 |
work_keys_str_mv | AT bergeronkarlf malebiasedaganglionicmegacoloninthetashtmouselineduetoperturbationofsilencerelementsinalargegenedesertofchromosome10 AT cardinaltatiana malebiasedaganglionicmegacoloninthetashtmouselineduetoperturbationofsilencerelementsinalargegenedesertofchromosome10 AT toureaboubacrinem malebiasedaganglionicmegacoloninthetashtmouselineduetoperturbationofsilencerelementsinalargegenedesertofchromosome10 AT belandmelanie malebiasedaganglionicmegacoloninthetashtmouselineduetoperturbationofsilencerelementsinalargegenedesertofchromosome10 AT raiwetdianal malebiasedaganglionicmegacoloninthetashtmouselineduetoperturbationofsilencerelementsinalargegenedesertofchromosome10 AT silversidesdavidw malebiasedaganglionicmegacoloninthetashtmouselineduetoperturbationofsilencerelementsinalargegenedesertofchromosome10 AT pilonnicolas malebiasedaganglionicmegacoloninthetashtmouselineduetoperturbationofsilencerelementsinalargegenedesertofchromosome10 |