Your browser doesn't support javascript.
loading
A heterozygous duplication variant of the HOXD13 gene caused synpolydactyly type 1 with variable expressivity in a Chinese family.
Zaib, Tahir; Ji, Wei; Saleem, Komal; Nie, Guangchen; Li, Chao; Cao, Lin; Xu, Baijun; Dong, Kexian; Yu, Hanfei; Hao, Xuguang; Xue, Yan; Si, Shuhan; Jia, Xueyuan; Wu, Jie; Zhang, Xuelong; Guan, Rongwei; Ji, Guohua; Bai, Jing; Chen, Feng; Liu, Yong; Sun, Wenjing; Fu, Songbin.
Afiliação
  • Zaib T; Laboratory of Medical Genetics, Harbin Medical University, 157 Baojian Road, Nangang District, Harbin, 150081, China.
  • Ji W; Key Laboratory of Preservation of Human Genetic Resources and Disease Control in China (Harbin Medical University), Ministry of Education, Harbin, China.
  • Saleem K; Laboratory of Medical Genetics, Harbin Medical University, 157 Baojian Road, Nangang District, Harbin, 150081, China.
  • Nie G; Key Laboratory of Preservation of Human Genetic Resources and Disease Control in China (Harbin Medical University), Ministry of Education, Harbin, China.
  • Li C; Laboratory of Medical Genetics, Harbin Medical University, 157 Baojian Road, Nangang District, Harbin, 150081, China.
  • Cao L; Key Laboratory of Preservation of Human Genetic Resources and Disease Control in China (Harbin Medical University), Ministry of Education, Harbin, China.
  • Xu B; Department of Hand Surgery the Fifth Hospital of Harbin, 27 Jiankang Road, Xiangfang District, Harbin, 150040, China.
  • Dong K; Department of Orthopaedic Surgery the Second Affiliated Hospital of Harbin Medical University, Harbin, 150086, China.
  • Yu H; Department of Hepatopancreatobiliary Surgery the Second Affiliated Hospital of Harbin Medical University, Harbin, 150086, China.
  • Hao X; Department of Radiology Suihua Cancer Hospital, Suihua, 152000, China.
  • Xue Y; Laboratory of Medical Genetics, Harbin Medical University, 157 Baojian Road, Nangang District, Harbin, 150081, China.
  • Si S; Key Laboratory of Preservation of Human Genetic Resources and Disease Control in China (Harbin Medical University), Ministry of Education, Harbin, China.
  • Jia X; Laboratory of Medical Genetics, Harbin Medical University, 157 Baojian Road, Nangang District, Harbin, 150081, China.
  • Wu J; Key Laboratory of Preservation of Human Genetic Resources and Disease Control in China (Harbin Medical University), Ministry of Education, Harbin, China.
  • Zhang X; Department of Hand Surgery the Fifth Hospital of Harbin, 27 Jiankang Road, Xiangfang District, Harbin, 150040, China.
  • Guan R; Department of Hand Surgery the Fifth Hospital of Harbin, 27 Jiankang Road, Xiangfang District, Harbin, 150040, China.
  • Ji G; Laboratory of Medical Genetics, Harbin Medical University, 157 Baojian Road, Nangang District, Harbin, 150081, China.
  • Bai J; Key Laboratory of Preservation of Human Genetic Resources and Disease Control in China (Harbin Medical University), Ministry of Education, Harbin, China.
  • Chen F; Laboratory of Medical Genetics, Harbin Medical University, 157 Baojian Road, Nangang District, Harbin, 150081, China.
  • Liu Y; Key Laboratory of Preservation of Human Genetic Resources and Disease Control in China (Harbin Medical University), Ministry of Education, Harbin, China.
  • Sun W; Laboratory of Medical Genetics, Harbin Medical University, 157 Baojian Road, Nangang District, Harbin, 150081, China.
  • Fu S; Key Laboratory of Preservation of Human Genetic Resources and Disease Control in China (Harbin Medical University), Ministry of Education, Harbin, China.
BMC Med Genet ; 20(1): 203, 2019 12 23.
Article em En | MEDLINE | ID: mdl-31870337
ABSTRACT

BACKGROUND:

Synpolydactyly type 1 (SPD1), also known as syndactyly type II, is an autosomal dominant limb deformity generally results in webbing of 3rd and 4th fingers, duplication of 4th or 5th toes. It is most commonly caused by mutation in HOXD13 gene. In this study, a five-generation Chinese family affected with SPD1 disease were collected. We tried to identify the pathogenic variations associated with SPD1 involved in the family.

METHODS:

We used the whole genome sequencing (WGS) to identify the pathogenic variant in this family which was later confirmed by PCR-Sanger sequencing. The genetic variation were evaluated with the frequencies in the 1000 Genome Project and Exome Aggregation Consortium (ExAC) dataset. The significance of variants were assessed using different mutation predictor softwares like Mutation Taster, PROVEAN and SIFT. The classification of variants was assessed according to American College of Medical Genetics and Genomics (ACMG) guidelines.

RESULTS:

Our results showed the mutation of 24-base pair duplication (c.183_206dupAGCGGCGGCTGCGGCGGCGGCGGC) in exon one of HOXD13 in heterozygous form which was predicted to result in eight extra alanine (A) residues in N-terminal domain of HOXD13 protein. The mutation was detected in all affected members of the family.

CONCLUSION:

Based on our mutation analysis of variant c.183_206dupAGCGGCGGCTGCGGCGGCGGCGGC in HOXD13 and its cosegregation in all affected family members, we found this variant as likely pathogenic to this SPD1 family. Our study highlights variable expressivity of HOXD13 mutation. Our results also widen the spectrum of HOXD13 mutation responsible for SPD1.
Assuntos
Palavras-chave

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Fatores de Transcrição / Sindactilia / Proteínas de Homeodomínio / Duplicação Gênica / Heterozigoto / Mutação Tipo de estudo: Prognostic_studies Limite: Child / Female / Humans / Male País/Região como assunto: Asia Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Fatores de Transcrição / Sindactilia / Proteínas de Homeodomínio / Duplicação Gênica / Heterozigoto / Mutação Tipo de estudo: Prognostic_studies Limite: Child / Female / Humans / Male País/Região como assunto: Asia Idioma: En Ano de publicação: 2019 Tipo de documento: Article