Functional assessment of a novel biallelic MYH3 variation causing CPSKF1B (contractures, pterygia, and spondylocarpotarsal fusion syndrome1B).

IF 1.5 4区 医学 Q4 GENETICS & HEREDITY Molecular Genetics & Genomic Medicine Pub Date : 2024-03-01 DOI:10.1002/mgg3.2401
Qing-Bing He, Cai-Hong Wu, Dong-Lan Sun, Jia-Yu Yuan, Hua-Ying Hu, Kai Yang, Wen-Qi Chen, You-Sheng Yan, Guang-Yue Yin, Jing Zhang, Ya-Zhou Li
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Abstract

Background: The MYH3-associated myosinopathies comprise a spectrum of rare neuromuscular disorders mainly characterized by distal arthrogryposis with or without other features like pterygia and vertebrae fusion. CPSKF1B (contractures, pterygia, and spondylocarpotarsal fusion syndrome1B) is the only known autosomal recessiveMYH3-associated myosinopathy so far, with no more than two dozen cases being reported.

Materials and methods: A boy with CPSKF1B was recruited and subjected to a comprehensive clinical and imaging evaluation. Genetic detection with whole-exome sequencing (WES) was performed on the patient and extended family members to identify the causative variation. A series of in silico and in vitro investigations were carried out to verify the pathogenicity of the two variants of the identified compound heterozygous variation.

Results: The patient exhibited moderate CPSKF1B symptoms including multiarticular contractures, webbed neck, and spondylocarpotarsal fusion. WES detected a compound heterozygous MYH3 variation consisting of two variants, namely NM_002470.4: c.3377A>G; p. (E1126G) and NM_002470.4: c.5161-2A>C. It was indicated that the NM_002470.4: c.3377A>G; p. (E1126G) variant mainly impaired the local hydrogen bond formation and impacted the TGF-B pathway, while the NM_002470.4: c.5161-2A>C variant could affect the normal splicing of pre-mRNA, resulting in the appearance of multiple abnormal transcripts.

Conclusions: The findings of this study expanded the mutation spectrum of CPSKF1B, provided an important basis for the counseling of the affected family, and also laid a foundation for the functional study of MYH3 mutations.

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对导致 CPSKF1B(挛缩、翼状胬肉和脊柱跖骨融合综合征 1B)的新型双拷贝 MYH3 变异进行功能评估。
背景:MYH3相关肌球蛋白病是一种罕见的神经肌肉疾病,主要特征是远端关节畸形,伴有或不伴有翼状胬肉和脊椎融合等其他特征。CPSKF1B(挛缩、翼状胬肉和脊椎跗骨融合综合征1B)是迄今所知的唯一一种常染色体隐性MYH3相关肌营养不良症,目前报道的病例不超过二十多例:招募了一名患有 CPSKF1B 的男孩,并对其进行了全面的临床和影像学评估。对患者和大家庭成员进行了全外显子组测序(WES)基因检测,以确定致病变异。为了验证已确定的复合杂合变异中两个变异的致病性,进行了一系列的硅学和体外研究:结果:患者表现出中度 CPSKF1B 症状,包括多关节挛缩、颈部蹼状和脊柱跗关节融合。WES检测到一个复合杂合子MYH3变异,由两个变异体组成,即NM_002470.4: c.3377A>G; p. (E1126G)和NM_002470.4: c.5161-2A>C。结果表明,NM_002470.4:c.3377A>G; p. (E1126G)变异主要损害局部氢键的形成,影响TGF-B通路,而NM_002470.4:c.5161-2A>C变异可影响前mRNA的正常剪接,导致多个异常转录本的出现:本研究的发现扩大了CPSKF1B的突变谱,为患病家庭的咨询提供了重要依据,同时也为MYH3突变的功能研究奠定了基础。
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来源期刊
Molecular Genetics & Genomic Medicine
Molecular Genetics & Genomic Medicine Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
4.20
自引率
0.00%
发文量
241
审稿时长
14 weeks
期刊介绍: Molecular Genetics & Genomic Medicine is a peer-reviewed journal for rapid dissemination of quality research related to the dynamically developing areas of human, molecular and medical genetics. The journal publishes original research articles covering findings in phenotypic, molecular, biological, and genomic aspects of genomic variation, inherited disorders and birth defects. The broad publishing spectrum of Molecular Genetics & Genomic Medicine includes rare and common disorders from diagnosis to treatment. Examples of appropriate articles include reports of novel disease genes, functional studies of genetic variants, in-depth genotype-phenotype studies, genomic analysis of inherited disorders, molecular diagnostic methods, medical bioinformatics, ethical, legal, and social implications (ELSI), and approaches to clinical diagnosis. Molecular Genetics & Genomic Medicine provides a scientific home for next generation sequencing studies of rare and common disorders, which will make research in this fascinating area easily and rapidly accessible to the scientific community. This will serve as the basis for translating next generation sequencing studies into individualized diagnostics and therapeutics, for day-to-day medical care. Molecular Genetics & Genomic Medicine publishes original research articles, reviews, and research methods papers, along with invited editorials and commentaries. Original research papers must report well-conducted research with conclusions supported by the data presented.
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