MYH2-associated myopathy caused by novel compound heterozygous mutations: a case report and literature review.

IF 2.5 3区 生物学 Q2 GENETICS & HEREDITY
Yulai Kang, Tong Yang, Xue Chen, Zhuo Min, Chunhua Tang, Lili Zhang, Lu Guo
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引用次数: 0

Abstract

MYH2-associated myopathy is a group of congenital heterogeneous diseases. Case reports with MYH2-associated myopathy due to compound heterozygous mutations are rare. We report a 63-year-old Asian female who presented with bilateral ptosis and limb weakness for over 10 years. The orbits magnetic resonance imaging showed no abnormalities. Muscle biopsy revealed characteristics consistent with congenital neuromuscular disease with uniform type 1 fibers. Genetic testing identified compound heterozygous mutations in the MYH2 gene: a heterozygous mutation in exon 30, c.4066G>T (chr17:10430037, p.E1356X) and a heterozygous mutation in exon 38, c.5473-1G>A (chr17:10426730, splicing). The novel gene mutations are considered potential pathogenic variants. MYH2-associated myopathy was diagnosed. Following treatment with cytidine diphosphate choline, coenzyme Q10, methylcobalamin, and idebenone, her ocular symptoms showed slight improvement before discharge. This case highlights the importance of genetic testing in diagnosing rare myopathies and expands the genetic spectrum of MYH2-associated myopathy.

新型复合杂合突变引起的myh2相关肌病1例报告及文献复习
myh2相关肌病是一组先天性异质性疾病。病例报告与myh2相关的肌病由于复合杂合突变是罕见的。我们报告了一位63岁的亚洲女性,她表现为双侧上睑下垂和肢体无力超过10年。眼眶核磁共振未见异常。肌肉活检显示的特征与先天性神经肌肉疾病一致,1型纤维均匀。基因检测在MYH2基因中发现了复合杂合突变:外显子30 c.4066G> a杂合突变(chr17:10430037, p.E1356X)和外显子38 c.5473-1G> a杂合突变(chr17:10426730,剪接)。新的基因突变被认为是潜在的致病变异。诊断为myh2相关肌病。经胞苷二磷酸胆碱、辅酶Q10、甲基钴胺素和依地苯酮治疗,出院前眼部症状略有改善。本病例强调了基因检测在诊断罕见肌病中的重要性,并扩大了myh2相关肌病的遗传谱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Human Genetics
Journal of Human Genetics 生物-遗传学
CiteScore
7.20
自引率
0.00%
发文量
101
审稿时长
4-8 weeks
期刊介绍: The Journal of Human Genetics is an international journal publishing articles on human genetics, including medical genetics and human genome analysis. It covers all aspects of human genetics, including molecular genetics, clinical genetics, behavioral genetics, immunogenetics, pharmacogenomics, population genetics, functional genomics, epigenetics, genetic counseling and gene therapy. Articles on the following areas are especially welcome: genetic factors of monogenic and complex disorders, genome-wide association studies, genetic epidemiology, cancer genetics, personal genomics, genotype-phenotype relationships and genome diversity.
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