Literature DB >> 33414810

EXT1 and EXT2 Variants in 22 Chinese Families With Multiple Osteochondromas: Seven New Variants and Potentiation of Preimplantation Genetic Testing and Prenatal Diagnosis.

Ye Wang1, Liangying Zhong2, Yan Xu3,4, Lei Ding5, Yuanjun Ji1, Sacha Schutz6,7, Claude Férec6,7, David N Cooper8, Caixia Xu9, Jian-Min Chen6, Yanmin Luo1.   

Abstract

Multiple osteochondromas (MO), the most common type of benign bone tumor, is an autosomal dominant skeletal disorder characterized by multiple cartilage-capped bony protuberances. In most cases, EXT1 and EXT2, which encode glycosyltransferases involved in the biosynthesis of heparan sulfate, are the genes responsible. Here we describe the clinical, phenotypic and genetic characterization of MO in 22 unrelated Chinese families involving a total of 60 patients. Variant detection was performed by means of a battery of different techniques including Sanger sequencing and whole-exome sequencing (WES). The pathogenicity of the missense and splicing variants was explored by means of in silico prediction algorithms. Sixteen unique pathogenic variants, including 10 in the EXT1 gene and 6 in the EXT2 gene, were identified in 18 (82%) of the 22 families. Fourteen (88%) of the 16 variants were predicted to give rise to truncated proteins whereas the remaining two were missense. Seven variants were newly described here, further expanding the spectrum of MO-causing variants in the EXT1 and EXT2 genes. More importantly, the identification of causative variants allowed us to provide genetic counseling to 8 MO patients in terms either of preimplantation genetic testing (PGT) or prenatal diagnosis, thereby preventing the reoccurrence of MO in the corresponding families. This study is the first to report the successful implementation of PGT in MO families and describes the largest number of subjects undergoing prenatal diagnosis to date.
Copyright © 2020 Wang, Zhong, Xu, Ding, Ji, Schutz, Férec, Cooper, Xu, Chen and Luo.

Entities:  

Keywords:  EXT1 gene; EXT2 gene; multiple osteochondromas; pathogenic variant; preimplantation genetic testing; prenatal diagnosis

Year:  2020        PMID: 33414810      PMCID: PMC7783290          DOI: 10.3389/fgene.2020.607838

Source DB:  PubMed          Journal:  Front Genet        ISSN: 1664-8021            Impact factor:   4.599


  44 in total

1.  [Molecular diagnosis and prenatal diagnosis in a hereditary multiple osteochondromas family].

Authors:  Ying Tang; De-zhu Zheng; Xiao-yan Guo; Juan Liao; Feng-hua Lan
Journal:  Beijing Da Xue Xue Bao Yi Xue Ban       Date:  2013-12-18

2.  Characterization of 26 deletion CNVs reveals the frequent occurrence of micro-mutations within the breakpoint-flanking regions and frequent repair of double-strand breaks by templated insertions derived from remote genomic regions.

Authors:  Ye Wang; Peiqiang Su; Bin Hu; Wenjuan Zhu; Qibin Li; Ping Yuan; Jiangchao Li; Xinyuan Guan; Fucheng Li; Xiangyi Jing; Ru Li; Yongling Zhang; Claude Férec; David N Cooper; Jun Wang; Dongsheng Huang; Jian-Min Chen; Yiming Wang
Journal:  Hum Genet       Date:  2015-03-20       Impact factor: 4.132

3.  Mutation analysis and prenatal diagnosis of EXT1 gene mutations in Chinese patients with multiple osteochondromas.

Authors:  Hai-Yan Zhu; Ya-Li Hu; Ying Yang; Xing Wu; Rui-Fang Zhu; Xiang-Yu Zhu; Hong-Lei Duan; Ying Zhang; Jin-Yong Zhou
Journal:  Chin Med J (Engl)       Date:  2011-10       Impact factor: 2.628

4.  The Experimentally Obtained Functional Impact Assessments of 5' Splice Site GT'GC Variants Differ Markedly from Those Predicted.

Authors:  Jian-Min Chen; Jin-Huan Lin; Emmanuelle Masson; Zhuan Liao; Claude Férec; David N Cooper; Matthew Hayden
Journal:  Curr Genomics       Date:  2020-01       Impact factor: 2.236

5.  Contribution of EXT1, EXT2, and EXTL3 to heparan sulfate chain elongation.

Authors:  Marta Busse; Almir Feta; Jenny Presto; Maria Wilén; Mona Grønning; Lena Kjellén; Marion Kusche-Gullberg
Journal:  J Biol Chem       Date:  2007-08-29       Impact factor: 5.157

6.  Severity of disease and risk of malignant change in hereditary multiple exostoses. A genotype-phenotype study.

Authors:  D E Porter; L Lonie; M Fraser; C Dobson-Stone; J R Porter; A P Monaco; A H R W Simpson
Journal:  J Bone Joint Surg Br       Date:  2004-09

7.  Two-color multiplex ligation-dependent probe amplification: detecting genomic rearrangements in hereditary multiple exostoses.

Authors:  Stefan J White; Geraldine R Vink; Marjolein Kriek; Wim Wuyts; Jan Schouten; Bert Bakker; Martijn H Breuning; Johan T den Dunnen
Journal:  Hum Mutat       Date:  2004-07       Impact factor: 4.878

8.  The putative tumor suppressors EXT1 and EXT2 are glycosyltransferases required for the biosynthesis of heparan sulfate.

Authors:  T Lind; F Tufaro; C McCormick; U Lindahl; K Lidholt
Journal:  J Biol Chem       Date:  1998-10-09       Impact factor: 5.157

9.  Predicting Splicing from Primary Sequence with Deep Learning.

Authors:  Kishore Jaganathan; Sofia Kyriazopoulou Panagiotopoulou; Jeremy F McRae; Siavash Fazel Darbandi; David Knowles; Yang I Li; Jack A Kosmicki; Juan Arbelaez; Wenwu Cui; Grace B Schwartz; Eric D Chow; Efstathios Kanterakis; Hong Gao; Amirali Kia; Serafim Batzoglou; Stephan J Sanders; Kyle Kai-How Farh
Journal:  Cell       Date:  2019-01-17       Impact factor: 41.582

Review 10.  Multiple osteochondromas.

Authors:  Judith V M G Bovée
Journal:  Orphanet J Rare Dis       Date:  2008-02-13       Impact factor: 4.123

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  1 in total

Review 1.  Hereditary Multiple Exostoses-A Review of the Molecular Background, Diagnostics, and Potential Therapeutic Strategies.

Authors:  Ewelina Bukowska-Olech; Wiktoria Trzebiatowska; Wiktor Czech; Olga Drzymała; Piotr Frąk; Franciszek Klarowski; Piotr Kłusek; Anna Szwajkowska; Aleksander Jamsheer
Journal:  Front Genet       Date:  2021-12-10       Impact factor: 4.599

  1 in total

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