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A novel mutation in ext2 caused hereditary multiple exostoses through reducing the synthesis of heparan sulfate

Hereditary multiple exostoses (HME) is a rare skeletal disorder characterized by the formation of multiple benign cartilage-capped tumors, usually in the metaphyseal region of the long bones. Over 70% of HME cases arise from monoallelic mutations in either of the two genes encoding the heparan sulfa...

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Autores principales: Xian, Caixia, Zhu, Mingwei, Nong, Tianying, Li, Yiqiang, Xie, Xingmei, Li, Xia, Li, Jiangui, Li, Jingchun, Wu, Jianping, Shi, Weizhe, Wei, Ping, Xu, Hongwen, Tang, Ya-ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sociedade Brasileira de Genética 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8156126/
https://www.ncbi.nlm.nih.gov/pubmed/34042151
http://dx.doi.org/10.1590/1678-4685-GMB-2020-0334
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author Xian, Caixia
Zhu, Mingwei
Nong, Tianying
Li, Yiqiang
Xie, Xingmei
Li, Xia
Li, Jiangui
Li, Jingchun
Wu, Jianping
Shi, Weizhe
Wei, Ping
Xu, Hongwen
Tang, Ya-ping
author_facet Xian, Caixia
Zhu, Mingwei
Nong, Tianying
Li, Yiqiang
Xie, Xingmei
Li, Xia
Li, Jiangui
Li, Jingchun
Wu, Jianping
Shi, Weizhe
Wei, Ping
Xu, Hongwen
Tang, Ya-ping
author_sort Xian, Caixia
collection PubMed
description Hereditary multiple exostoses (HME) is a rare skeletal disorder characterized by the formation of multiple benign cartilage-capped tumors, usually in the metaphyseal region of the long bones. Over 70% of HME cases arise from monoallelic mutations in either of the two genes encoding the heparan sulfate (HS) synthesis enzymes, ext1 and ext2. To identify more HME-associated mutations, genomic DNA from members of five independent consanguineous families with HME was sequenced with whole exome sequencing (WES). A novel heterozygous splice site mutation (c.1173+2T>A) in ext2 was detected in all three affected members of family V. Further study showed that the novel mutation caused exon 7 of ext2 mRNA to be skipped during splicing and caused a frameshift after the codon for Arg360, which results in the appearance of new 43 codons, followed by a termination codon. Although the resulting truncated protein was still localized to the Golgi, similar to the full-length EXT2, its HS synthesis activity decreased by 40%. In this study, a novel splice site mutation in ext2 was identified and suggested to be a pathogenic mutation of HME, which may expand the genetic etiology spectrum of HME and may be helpful for clinical genetic counseling and prenatal diagnosis.
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spelling pubmed-81561262021-06-07 A novel mutation in ext2 caused hereditary multiple exostoses through reducing the synthesis of heparan sulfate Xian, Caixia Zhu, Mingwei Nong, Tianying Li, Yiqiang Xie, Xingmei Li, Xia Li, Jiangui Li, Jingchun Wu, Jianping Shi, Weizhe Wei, Ping Xu, Hongwen Tang, Ya-ping Genet Mol Biol Human and Medical Genetics Hereditary multiple exostoses (HME) is a rare skeletal disorder characterized by the formation of multiple benign cartilage-capped tumors, usually in the metaphyseal region of the long bones. Over 70% of HME cases arise from monoallelic mutations in either of the two genes encoding the heparan sulfate (HS) synthesis enzymes, ext1 and ext2. To identify more HME-associated mutations, genomic DNA from members of five independent consanguineous families with HME was sequenced with whole exome sequencing (WES). A novel heterozygous splice site mutation (c.1173+2T>A) in ext2 was detected in all three affected members of family V. Further study showed that the novel mutation caused exon 7 of ext2 mRNA to be skipped during splicing and caused a frameshift after the codon for Arg360, which results in the appearance of new 43 codons, followed by a termination codon. Although the resulting truncated protein was still localized to the Golgi, similar to the full-length EXT2, its HS synthesis activity decreased by 40%. In this study, a novel splice site mutation in ext2 was identified and suggested to be a pathogenic mutation of HME, which may expand the genetic etiology spectrum of HME and may be helpful for clinical genetic counseling and prenatal diagnosis. Sociedade Brasileira de Genética 2021-05-21 /pmc/articles/PMC8156126/ /pubmed/34042151 http://dx.doi.org/10.1590/1678-4685-GMB-2020-0334 Text en https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License
spellingShingle Human and Medical Genetics
Xian, Caixia
Zhu, Mingwei
Nong, Tianying
Li, Yiqiang
Xie, Xingmei
Li, Xia
Li, Jiangui
Li, Jingchun
Wu, Jianping
Shi, Weizhe
Wei, Ping
Xu, Hongwen
Tang, Ya-ping
A novel mutation in ext2 caused hereditary multiple exostoses through reducing the synthesis of heparan sulfate
title A novel mutation in ext2 caused hereditary multiple exostoses through reducing the synthesis of heparan sulfate
title_full A novel mutation in ext2 caused hereditary multiple exostoses through reducing the synthesis of heparan sulfate
title_fullStr A novel mutation in ext2 caused hereditary multiple exostoses through reducing the synthesis of heparan sulfate
title_full_unstemmed A novel mutation in ext2 caused hereditary multiple exostoses through reducing the synthesis of heparan sulfate
title_short A novel mutation in ext2 caused hereditary multiple exostoses through reducing the synthesis of heparan sulfate
title_sort novel mutation in ext2 caused hereditary multiple exostoses through reducing the synthesis of heparan sulfate
topic Human and Medical Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8156126/
https://www.ncbi.nlm.nih.gov/pubmed/34042151
http://dx.doi.org/10.1590/1678-4685-GMB-2020-0334
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