Cargando…

A Newly Described Bovine Type 2 Scurs Syndrome Segregates with a Frame-Shift Mutation in TWIST1

The developmental pathways involved in horn development are complex and still poorly understood. Here we report the description of a new dominant inherited syndrome in the bovine Charolais breed that we have named type 2 scurs. Clinical examination revealed that, despite a strong phenotypic variabil...

Descripción completa

Detalles Bibliográficos
Autores principales: Capitan, Aurélien, Grohs, Cécile, Weiss, Bernard, Rossignol, Marie-Noëlle, Reversé, Patrick, Eggen, André
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3141036/
https://www.ncbi.nlm.nih.gov/pubmed/21814570
http://dx.doi.org/10.1371/journal.pone.0022242
_version_ 1782208617839067136
author Capitan, Aurélien
Grohs, Cécile
Weiss, Bernard
Rossignol, Marie-Noëlle
Reversé, Patrick
Eggen, André
author_facet Capitan, Aurélien
Grohs, Cécile
Weiss, Bernard
Rossignol, Marie-Noëlle
Reversé, Patrick
Eggen, André
author_sort Capitan, Aurélien
collection PubMed
description The developmental pathways involved in horn development are complex and still poorly understood. Here we report the description of a new dominant inherited syndrome in the bovine Charolais breed that we have named type 2 scurs. Clinical examination revealed that, despite a strong phenotypic variability, all affected individuals show both horn abnormalities similar to classical scurs phenotype and skull interfrontal suture synostosis. Based on a genome-wide linkage analysis using Illumina BovineSNP50 BeadChip genotyping data from 57 half-sib and full-sib progeny, this locus was mapped to a 1.7 Mb interval on bovine chromosome 4. Within this region, the TWIST1 gene encoding a transcription factor was considered as a strong candidate gene since its haploinsufficiency is responsible for the human Saethre-Chotzen syndrome, characterized by skull coronal suture synostosis. Sequencing of the TWIST1 gene identified a c.148_157dup (p.A56RfsX87) frame-shift mutation predicted to completely inactivate this gene. Genotyping 17 scurred and 20 horned founders of our pedigree as well as 48 unrelated horned controls revealed a perfect association between this mutation and the type 2 scurs phenotype. Subsequent genotyping of 32 individuals born from heterozygous parents showed that homozygous mutated progeny are completely absent, which is consistent with the embryonic lethality reported in Drosophila and mouse suffering from TWIST1 complete insufficiency. Finally, data from previous studies on model species and a fine description of type 2 scurs symptoms allowed us to propose different mechanisms to explain the features of this syndrome. In conclusion, this first report on the identification of a potential causal mutation affecting horn development in cattle offers a unique opportunity to better understand horn ontogenesis.
format Online
Article
Text
id pubmed-3141036
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-31410362011-08-03 A Newly Described Bovine Type 2 Scurs Syndrome Segregates with a Frame-Shift Mutation in TWIST1 Capitan, Aurélien Grohs, Cécile Weiss, Bernard Rossignol, Marie-Noëlle Reversé, Patrick Eggen, André PLoS One Research Article The developmental pathways involved in horn development are complex and still poorly understood. Here we report the description of a new dominant inherited syndrome in the bovine Charolais breed that we have named type 2 scurs. Clinical examination revealed that, despite a strong phenotypic variability, all affected individuals show both horn abnormalities similar to classical scurs phenotype and skull interfrontal suture synostosis. Based on a genome-wide linkage analysis using Illumina BovineSNP50 BeadChip genotyping data from 57 half-sib and full-sib progeny, this locus was mapped to a 1.7 Mb interval on bovine chromosome 4. Within this region, the TWIST1 gene encoding a transcription factor was considered as a strong candidate gene since its haploinsufficiency is responsible for the human Saethre-Chotzen syndrome, characterized by skull coronal suture synostosis. Sequencing of the TWIST1 gene identified a c.148_157dup (p.A56RfsX87) frame-shift mutation predicted to completely inactivate this gene. Genotyping 17 scurred and 20 horned founders of our pedigree as well as 48 unrelated horned controls revealed a perfect association between this mutation and the type 2 scurs phenotype. Subsequent genotyping of 32 individuals born from heterozygous parents showed that homozygous mutated progeny are completely absent, which is consistent with the embryonic lethality reported in Drosophila and mouse suffering from TWIST1 complete insufficiency. Finally, data from previous studies on model species and a fine description of type 2 scurs symptoms allowed us to propose different mechanisms to explain the features of this syndrome. In conclusion, this first report on the identification of a potential causal mutation affecting horn development in cattle offers a unique opportunity to better understand horn ontogenesis. Public Library of Science 2011-07-21 /pmc/articles/PMC3141036/ /pubmed/21814570 http://dx.doi.org/10.1371/journal.pone.0022242 Text en Capitan 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
Capitan, Aurélien
Grohs, Cécile
Weiss, Bernard
Rossignol, Marie-Noëlle
Reversé, Patrick
Eggen, André
A Newly Described Bovine Type 2 Scurs Syndrome Segregates with a Frame-Shift Mutation in TWIST1
title A Newly Described Bovine Type 2 Scurs Syndrome Segregates with a Frame-Shift Mutation in TWIST1
title_full A Newly Described Bovine Type 2 Scurs Syndrome Segregates with a Frame-Shift Mutation in TWIST1
title_fullStr A Newly Described Bovine Type 2 Scurs Syndrome Segregates with a Frame-Shift Mutation in TWIST1
title_full_unstemmed A Newly Described Bovine Type 2 Scurs Syndrome Segregates with a Frame-Shift Mutation in TWIST1
title_short A Newly Described Bovine Type 2 Scurs Syndrome Segregates with a Frame-Shift Mutation in TWIST1
title_sort newly described bovine type 2 scurs syndrome segregates with a frame-shift mutation in twist1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3141036/
https://www.ncbi.nlm.nih.gov/pubmed/21814570
http://dx.doi.org/10.1371/journal.pone.0022242
work_keys_str_mv AT capitanaurelien anewlydescribedbovinetype2scurssyndromesegregateswithaframeshiftmutationintwist1
AT grohscecile anewlydescribedbovinetype2scurssyndromesegregateswithaframeshiftmutationintwist1
AT weissbernard anewlydescribedbovinetype2scurssyndromesegregateswithaframeshiftmutationintwist1
AT rossignolmarienoelle anewlydescribedbovinetype2scurssyndromesegregateswithaframeshiftmutationintwist1
AT reversepatrick anewlydescribedbovinetype2scurssyndromesegregateswithaframeshiftmutationintwist1
AT eggenandre anewlydescribedbovinetype2scurssyndromesegregateswithaframeshiftmutationintwist1
AT capitanaurelien newlydescribedbovinetype2scurssyndromesegregateswithaframeshiftmutationintwist1
AT grohscecile newlydescribedbovinetype2scurssyndromesegregateswithaframeshiftmutationintwist1
AT weissbernard newlydescribedbovinetype2scurssyndromesegregateswithaframeshiftmutationintwist1
AT rossignolmarienoelle newlydescribedbovinetype2scurssyndromesegregateswithaframeshiftmutationintwist1
AT reversepatrick newlydescribedbovinetype2scurssyndromesegregateswithaframeshiftmutationintwist1
AT eggenandre newlydescribedbovinetype2scurssyndromesegregateswithaframeshiftmutationintwist1