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Copy-number variants and candidate gene mutations in isolated split hand/foot malformation

Split hand/foot malformation (SHFM) is a congenital limb deficiency with missing or shortened central digits. Some SHFM genes have been identified but the cause of many SHFM cases is unknown. We used single nucleotide polymorphism (SNP) microarray analysis to detect copy-number variants (CNVs) in 25...

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Autores principales: Carter, Tonia C., Sicko, Robert J., Kay, Denise M., Browne, Marilyn L., Romitti, Paul A., Edmunds, Zoë L., Liu, Aiyi, Fan, Ruzong, Druschel, Charlotte M., Caggana, Michele, Brody, Lawrence C., Mills, James L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5612852/
https://www.ncbi.nlm.nih.gov/pubmed/28539665
http://dx.doi.org/10.1038/jhg.2017.56
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author Carter, Tonia C.
Sicko, Robert J.
Kay, Denise M.
Browne, Marilyn L.
Romitti, Paul A.
Edmunds, Zoë L.
Liu, Aiyi
Fan, Ruzong
Druschel, Charlotte M.
Caggana, Michele
Brody, Lawrence C.
Mills, James L.
author_facet Carter, Tonia C.
Sicko, Robert J.
Kay, Denise M.
Browne, Marilyn L.
Romitti, Paul A.
Edmunds, Zoë L.
Liu, Aiyi
Fan, Ruzong
Druschel, Charlotte M.
Caggana, Michele
Brody, Lawrence C.
Mills, James L.
author_sort Carter, Tonia C.
collection PubMed
description Split hand/foot malformation (SHFM) is a congenital limb deficiency with missing or shortened central digits. Some SHFM genes have been identified but the cause of many SHFM cases is unknown. We used single nucleotide polymorphism (SNP) microarray analysis to detect copy-number variants (CNVs) in 25 SHFM cases without other birth defects from New York State (NYS), prioritized CNVs absent from population CNV databases, and validated these CNVs using qPCR. We tested for the validated CNVs in seven cases from Iowa using qPCR, and also sequenced 36 SHFM candidate genes in all subjects. Seven NYS cases had a potentially deleterious variant: two had a p.R225H or p.R225L mutation in TP63, one had a 17q25 microdeletion, one had a 10q24 microduplication, and three had a 17p13.3 microduplication. Additionally, one Iowa case had a de novo 10q24 microduplication. The 17q25 microdeletion has not been reported previously in SHFM and included two SHFM candidate genes (SUMO2 and GRB2), while the 10q24 and 17p13.3 CNVs had breakpoints within genomic regions that contained putative regulatory elements and a limb development gene. In SHFM pathogenesis, the microdeletion may cause haploinsufficiency of SHFM genes and/or deletion of their regulatory regions, and the microduplications could disrupt regulatory elements that control transcription of limb development genes.
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spelling pubmed-56128522017-11-25 Copy-number variants and candidate gene mutations in isolated split hand/foot malformation Carter, Tonia C. Sicko, Robert J. Kay, Denise M. Browne, Marilyn L. Romitti, Paul A. Edmunds, Zoë L. Liu, Aiyi Fan, Ruzong Druschel, Charlotte M. Caggana, Michele Brody, Lawrence C. Mills, James L. J Hum Genet Article Split hand/foot malformation (SHFM) is a congenital limb deficiency with missing or shortened central digits. Some SHFM genes have been identified but the cause of many SHFM cases is unknown. We used single nucleotide polymorphism (SNP) microarray analysis to detect copy-number variants (CNVs) in 25 SHFM cases without other birth defects from New York State (NYS), prioritized CNVs absent from population CNV databases, and validated these CNVs using qPCR. We tested for the validated CNVs in seven cases from Iowa using qPCR, and also sequenced 36 SHFM candidate genes in all subjects. Seven NYS cases had a potentially deleterious variant: two had a p.R225H or p.R225L mutation in TP63, one had a 17q25 microdeletion, one had a 10q24 microduplication, and three had a 17p13.3 microduplication. Additionally, one Iowa case had a de novo 10q24 microduplication. The 17q25 microdeletion has not been reported previously in SHFM and included two SHFM candidate genes (SUMO2 and GRB2), while the 10q24 and 17p13.3 CNVs had breakpoints within genomic regions that contained putative regulatory elements and a limb development gene. In SHFM pathogenesis, the microdeletion may cause haploinsufficiency of SHFM genes and/or deletion of their regulatory regions, and the microduplications could disrupt regulatory elements that control transcription of limb development genes. 2017-05-25 2017-10 /pmc/articles/PMC5612852/ /pubmed/28539665 http://dx.doi.org/10.1038/jhg.2017.56 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Carter, Tonia C.
Sicko, Robert J.
Kay, Denise M.
Browne, Marilyn L.
Romitti, Paul A.
Edmunds, Zoë L.
Liu, Aiyi
Fan, Ruzong
Druschel, Charlotte M.
Caggana, Michele
Brody, Lawrence C.
Mills, James L.
Copy-number variants and candidate gene mutations in isolated split hand/foot malformation
title Copy-number variants and candidate gene mutations in isolated split hand/foot malformation
title_full Copy-number variants and candidate gene mutations in isolated split hand/foot malformation
title_fullStr Copy-number variants and candidate gene mutations in isolated split hand/foot malformation
title_full_unstemmed Copy-number variants and candidate gene mutations in isolated split hand/foot malformation
title_short Copy-number variants and candidate gene mutations in isolated split hand/foot malformation
title_sort copy-number variants and candidate gene mutations in isolated split hand/foot malformation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5612852/
https://www.ncbi.nlm.nih.gov/pubmed/28539665
http://dx.doi.org/10.1038/jhg.2017.56
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