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两个新的MYH7脯氨酸替代导致具有可变表达性和颈部伸肌挛缩的莱宁远端肌病样表型。

Two novel MYH7 proline substitutions cause Laing Distal Myopathy-like phenotypes with variable expressivity and neck extensor contracture.

作者信息

Feinstein-Linial Miora, Buvoli Massimo, Buvoli Ada, Sadeh Menachem, Dabby Ron, Straussberg Rachel, Shelef Ilan, Dayan Daniel, Leinwand Leslie Anne, Birk Ohad S

机构信息

The Morris Kahn Laboratory of Human Genetics at the National Institute of Biotechnology in the Negev and Faculty of Health Sciences, Ben Gurion University, Beer Sheva, 84105, Israel.

Department of Molecular, Cellular and Developmental Biology, University of Colorado, Boulder, CO, 80309-0347, USA.

出版信息

BMC Med Genet. 2016 Aug 12;17(1):57. doi: 10.1186/s12881-016-0315-1.

Abstract

BACKGROUND

Human skeletal muscles express three major myosin heavy chain (MyHC) isoforms: MyHCIIx (MYH1) in fast type 2B muscle fibers, MyHCIIa (MYH2) in fast type 2A fibers and MyHCI/β-cardiac MyHC (MYH7) in slow type I skeletal fibers and cardiac ventricles. In line with its expression pattern, MYH7 mutations have been reported in association with hypertrophic or dilated cardiomyopathy, skeletal myopathies or a combination of both. We analyzed the clinical and molecular phenotype of two unrelated families of Jewish Moroccan ancestry that presented with apparently autosomal dominant inheritance of progressive Laing-like distal myopathy with non-specific myopathic changes, but uncommon marked contractures and wasting of the neck extensors.

METHODS

Clinical phenotyping, whole exome sequencing and restriction analysis, generation of mutants followed by cell culture transfection and imaging.

RESULTS

Using whole exome sequencing we identified in both families two novel heterozygous proline substitutions located in exon 31 of MYH7 within its rod domain: c.4309G>C (p.Ala1437Pro) and c.4301G>C (p.Arg1434Pro). Here we show that the phenotype caused by these mutations includes marked cervical muscle contracture, and report that the severity of the phenotype varies significantly, to the extent of non-penetrance in one of the families. Finally, we provide evidence that both proline substitutions impair myosin self-assembly in non-muscle cells transfected with β-myosin constructs carrying the mutations, but do not prevent incorporation of the mutant molecules into the sarcomere.

CONCLUSIONS

This study expands our clinical and molecular knowledge of MYH7 rod mutations causing skeletal myopathies, and underscores the importance of discussing disease penetrance during genetic counseling.

摘要

背景

人类骨骼肌表达三种主要的肌球蛋白重链(MyHC)异构体:快速型2B肌纤维中的MyHCIIx(MYH1)、快速型2A纤维中的MyHCIIa(MYH2)以及慢速型I型骨骼肌纤维和心室中的MyHCI/β-心脏型MyHC(MYH7)。与其表达模式一致,已有报道称MYH7突变与肥厚型或扩张型心肌病、骨骼肌病或两者的组合有关。我们分析了两个具有摩洛哥犹太血统的不相关家族的临床和分子表型,这些家族呈现出明显的常染色体显性遗传的进行性类Laing型远端肌病,伴有非特异性肌病改变,但颈部伸肌有罕见的明显挛缩和萎缩。

方法

临床表型分析、全外显子组测序和限制性分析、突变体的产生,随后进行细胞培养转染和成像。

结果

通过全外显子组测序,我们在两个家族中均发现了位于MYH7杆状结构域第31外显子中的两个新的杂合脯氨酸替代:c.4309G>C(p.Ala1437Pro)和c.4301G>C(p.Arg1434Pro)。在此我们表明,这些突变引起的表型包括明显的颈部肌肉挛缩,并报告表型的严重程度差异显著,在其中一个家族中存在非外显现象。最后,我们提供证据表明,这两个脯氨酸替代均会损害携带突变的β-肌球蛋白构建体转染的非肌肉细胞中的肌球蛋白自我组装,但不会阻止突变分子并入肌节。

结论

本研究扩展了我们对导致骨骼肌病的MYH7杆状结构域突变的临床和分子认识,并强调了在遗传咨询过程中讨论疾病外显率的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d23/4982306/8ee8e24abe68/12881_2016_315_Fig1_HTML.jpg

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