Literature DB >> 31015262

Bi-allelic loss of function variants of TBX6 causes a spectrum of malformation of spine and rib including congenital scoliosis and spondylocostal dysostosis.

Nao Otomo1,2, Kazuki Takeda1,2, Shunsuke Kawai3,4,5, Ikuyo Kou1, Long Guo1, Mitsujiro Osawa6, Cantas Alev3, Noriaki Kawakami7, Noriko Miyake8, Naomichi Matsumoto8, Yukuto Yasuhiko9, Toshiaki Kotani10, Teppei Suzuki11, Koki Uno11, Hideki Sudo12, Satoshi Inami13, Hiroshi Taneichi13, Hideki Shigematsu14, Kei Watanabe15, Ikuho Yonezawa16, Ryo Sugawara17, Yuki Taniguchi18, Shohei Minami10, Kazuo Kaneko16, Masaya Nakamura2, Morio Matsumoto2, Junya Toguchida3,4,5, Kota Watanabe19, Shiro Ikegawa20.   

Abstract

BACKGROUND: Congenital scoliosis (CS) is a common vertebral malformation. Spondylocostal dysostosis (SCD) is a rare skeletal dysplasia characterised by multiple vertebral malformations and rib anomalies. In a previous study, a compound heterozygosity for a null mutation and a risk haplotype composed by three single-nucleotide polymorphisms in TBX6 have been reported as a disease-causing model of CS. Another study identified bi-allelic missense variants in a SCD patient. The purpose of our study is to identify TBX6 variants in CS and SCD and examine their pathogenicity.
METHODS: We recruited 200 patients with CS or SCD and investigated TBX6 variants. We evaluated the pathogenicity of the variants by in silico prediction and in vitro experiments.
RESULTS: We identified five 16p11.2 deletions, one splice-site variant and five missense variants in 10 patients. In vitro functional assays for missense variants identified in the previous and present studies demonstrated that most of the variants caused abnormal localisation of TBX6 proteins. We confirmed mislocalisation of TBX6 proteins in presomitic mesoderm cells induced from SCD patient-derived iPS cells. In induced cells, we found decreased mRNA expressions of TBX6 and its downstream genes were involved in somite formation. All CS patients with missense variants had the risk haplotype in the opposite allele, while a SCD patient with bi-allelic missense variants did not have the haplotype.
CONCLUSIONS: Our study suggests that bi-allelic loss of function variants of TBX6 cause a spectrum of phenotypes including CS and SCD, depending on the severity of the loss of TBX6 function. © Author(s) (or their employer(s)) 2019. No commercial re-use. See rights and permissions. Published by BMJ.

Entities:  

Keywords:  TBX6; bi-allelic mutation; congenital scoliosis; mislocalisation; spondylocostal dysostosis

Mesh:

Substances:

Year:  2019        PMID: 31015262     DOI: 10.1136/jmedgenet-2018-105920

Source DB:  PubMed          Journal:  J Med Genet        ISSN: 0022-2593            Impact factor:   6.318


  3 in total

1.  Spondylocostal dysplasia and brachydactyly associated with TBX6 and IHH variants: A case report.

Authors:  Surasak Puvabanditsin; Michelle Gorbonosov; Kristin Blackledge; Jeffrey Manzano; Matthew Federici; Rajeev Mehta
Journal:  Clin Case Rep       Date:  2022-07-11

2.  Molecular identification of T-box transcription factor 6 and prognostic assessment in patients with congenital scoliosis: A single-center study.

Authors:  Wenyan Zhang; Ziming Yao; Ruolan Guo; Haichong Li; Shuang Zhao; Wei Li; Xuejun Zhang; Chanjuan Hao
Journal:  Front Med (Lausanne)       Date:  2022-08-11

3.  Identification of novel FBN1 variations implicated in congenital scoliosis.

Authors:  Mao Lin; Sen Zhao; Gang Liu; Yingzhao Huang; Chenxi Yu; Yanxue Zhao; Lianlei Wang; Yuanqiang Zhang; Zihui Yan; Shengru Wang; Sen Liu; Jiaqi Liu; Yongyu Ye; Yaping Chen; Xu Yang; Bingdu Tong; Zheng Wang; Xinzhuang Yang; Yuchen Niu; Xiaoxin Li; Yipeng Wang; Jianzhong Su; Jian Yuan; Hengqiang Zhao; Shuyang Zhang; Guixing Qiu; Shiro Ikegawa; Jianguo Zhang; Zhihong Wu; Nan Wu
Journal:  J Hum Genet       Date:  2019-12-11       Impact factor: 3.172

  3 in total

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