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Next generation sequencing of chromosomal rearrangements in patients with split-hand/split-foot malformation provides evidence for DYNC1I1 exonic enhancers of DLX5/6 expression in humans

OBJECTIVE: Split-hand/foot malformation type 1 is an autosomal dominant condition with reduced penetrance and variable expression. We report three individuals from two families with split-hand/split-foot malformation (SHFM) in whom next generation sequencing was performed to investigate the cause of...

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Autores principales: Lango Allen, Hana, Caswell, Richard, Xie, Weijia, Xu, Xiao, Wragg, Christopher, Turnpenny, Peter D, Turner, Claire L S, Weedon, Michael N, Ellard, Sian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BMJ Publishing Group 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3963551/
https://www.ncbi.nlm.nih.gov/pubmed/24459211
http://dx.doi.org/10.1136/jmedgenet-2013-102142
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author Lango Allen, Hana
Caswell, Richard
Xie, Weijia
Xu, Xiao
Wragg, Christopher
Turnpenny, Peter D
Turner, Claire L S
Weedon, Michael N
Ellard, Sian
author_facet Lango Allen, Hana
Caswell, Richard
Xie, Weijia
Xu, Xiao
Wragg, Christopher
Turnpenny, Peter D
Turner, Claire L S
Weedon, Michael N
Ellard, Sian
author_sort Lango Allen, Hana
collection PubMed
description OBJECTIVE: Split-hand/foot malformation type 1 is an autosomal dominant condition with reduced penetrance and variable expression. We report three individuals from two families with split-hand/split-foot malformation (SHFM) in whom next generation sequencing was performed to investigate the cause of their phenotype. METHODS AND RESULTS: The first proband has a de novo balanced translocation t(2;7)(p25.1;q22) identified by karyotyping. Whole genome sequencing showed that the chromosome 7 breakpoint is situated within the SHFM1 locus on chromosome 7q21.3. This separates the DYNC1I1 exons recently identified as limb enhancers in mouse studies from their target genes, DLX5 and DLX6. In the second family, X-linked recessive inheritance was suspected and exome sequencing was performed to search for a mutation in the affected proband and his uncle. No coding mutation was found within the SHFM2 locus at Xq26 or elsewhere in the exome, but a 106 kb deletion within the SHFM1 locus was detected through copy number analysis. Genome sequencing of the deletion breakpoints showed that the DLX5 and DLX6 genes are disomic but the putative DYNC1I1 exon 15 and 17 enhancers are deleted. CONCLUSIONS: Exome sequencing identified a 106 kb deletion that narrows the SHFM1 critical region from 0.9 to 0.1 Mb and confirms a key role of DYNC1I1 exonic enhancers in normal limb formation in humans.
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spelling pubmed-39635512014-03-27 Next generation sequencing of chromosomal rearrangements in patients with split-hand/split-foot malformation provides evidence for DYNC1I1 exonic enhancers of DLX5/6 expression in humans Lango Allen, Hana Caswell, Richard Xie, Weijia Xu, Xiao Wragg, Christopher Turnpenny, Peter D Turner, Claire L S Weedon, Michael N Ellard, Sian J Med Genet Chromosomal Rearrangements OBJECTIVE: Split-hand/foot malformation type 1 is an autosomal dominant condition with reduced penetrance and variable expression. We report three individuals from two families with split-hand/split-foot malformation (SHFM) in whom next generation sequencing was performed to investigate the cause of their phenotype. METHODS AND RESULTS: The first proband has a de novo balanced translocation t(2;7)(p25.1;q22) identified by karyotyping. Whole genome sequencing showed that the chromosome 7 breakpoint is situated within the SHFM1 locus on chromosome 7q21.3. This separates the DYNC1I1 exons recently identified as limb enhancers in mouse studies from their target genes, DLX5 and DLX6. In the second family, X-linked recessive inheritance was suspected and exome sequencing was performed to search for a mutation in the affected proband and his uncle. No coding mutation was found within the SHFM2 locus at Xq26 or elsewhere in the exome, but a 106 kb deletion within the SHFM1 locus was detected through copy number analysis. Genome sequencing of the deletion breakpoints showed that the DLX5 and DLX6 genes are disomic but the putative DYNC1I1 exon 15 and 17 enhancers are deleted. CONCLUSIONS: Exome sequencing identified a 106 kb deletion that narrows the SHFM1 critical region from 0.9 to 0.1 Mb and confirms a key role of DYNC1I1 exonic enhancers in normal limb formation in humans. BMJ Publishing Group 2014-04 2014-01-23 /pmc/articles/PMC3963551/ /pubmed/24459211 http://dx.doi.org/10.1136/jmedgenet-2013-102142 Text en Published by the BMJ Publishing Group Limited. For permission to use (where not already granted under a licence) please go to http://group.bmj.com/group/rights-licensing/permissions This is an Open Access article distributed in accordance with the terms of the Creative Commons Attribution (CC BY 3.0) license, which permits others to distribute, remix, adapt and build upon this work, for commercial use, provided the original work is properly cited. See: http://creativecommons.org/licenses/by/3.0/
spellingShingle Chromosomal Rearrangements
Lango Allen, Hana
Caswell, Richard
Xie, Weijia
Xu, Xiao
Wragg, Christopher
Turnpenny, Peter D
Turner, Claire L S
Weedon, Michael N
Ellard, Sian
Next generation sequencing of chromosomal rearrangements in patients with split-hand/split-foot malformation provides evidence for DYNC1I1 exonic enhancers of DLX5/6 expression in humans
title Next generation sequencing of chromosomal rearrangements in patients with split-hand/split-foot malformation provides evidence for DYNC1I1 exonic enhancers of DLX5/6 expression in humans
title_full Next generation sequencing of chromosomal rearrangements in patients with split-hand/split-foot malformation provides evidence for DYNC1I1 exonic enhancers of DLX5/6 expression in humans
title_fullStr Next generation sequencing of chromosomal rearrangements in patients with split-hand/split-foot malformation provides evidence for DYNC1I1 exonic enhancers of DLX5/6 expression in humans
title_full_unstemmed Next generation sequencing of chromosomal rearrangements in patients with split-hand/split-foot malformation provides evidence for DYNC1I1 exonic enhancers of DLX5/6 expression in humans
title_short Next generation sequencing of chromosomal rearrangements in patients with split-hand/split-foot malformation provides evidence for DYNC1I1 exonic enhancers of DLX5/6 expression in humans
title_sort next generation sequencing of chromosomal rearrangements in patients with split-hand/split-foot malformation provides evidence for dync1i1 exonic enhancers of dlx5/6 expression in humans
topic Chromosomal Rearrangements
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3963551/
https://www.ncbi.nlm.nih.gov/pubmed/24459211
http://dx.doi.org/10.1136/jmedgenet-2013-102142
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