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肌球蛋白纤维肌病由小鼠 MHC IIb 运动域的突变引起。

Myofibrillar myopathy caused by a mutation in the motor domain of mouse MyHC IIb.

机构信息

MRC Mammalian Genetics Unit, Harwell OX11 0RD, UK.

出版信息

Hum Mol Genet. 2012 Apr 15;21(8):1706-24. doi: 10.1093/hmg/ddr605. Epub 2011 Dec 23.

DOI:10.1093/hmg/ddr605
PMID:22199023
Abstract

Ariel is a mouse mutant that suffers from skeletal muscle myofibrillar degeneration due to the rapid accumulation of large intracellular protein aggregates. This fulminant disease is caused by an ENU-induced recessive mutation resulting in an L342Q change within the motor domain of the skeletal muscle myosin protein MYH4 (MyHC IIb). Although normal at birth, homozygous mice develop hindlimb paralysis from Day 13, consistent with the timing of the switch from developmental to adult myosin isoforms in mice. The mutated myosin (MYH4(L342Q)) is an aggregate-prone protein. Notwithstanding the speed of the process, biochemical analysis of purified aggregates showed the presence of proteins typically found in human myofibrillar myopathies, suggesting that the genesis of ariel aggregates follows a pathogenic pathway shared with other conformational protein diseases of skeletal muscle. In contrast, heterozygous mice are overtly and histologically indistinguishable from control mice. MYH4(L342Q) is present in muscles from heterozygous mice at only 7% of the levels of the wild-type protein, resulting in a small but significant increase in force production in isolated single fibres and indicating that elimination of the mutant protein in heterozygotes prevents the pathological changes observed in homozygotes. Recapitulation of the L342Q change in the functional equivalent of mouse MYH4 in human muscles, MYH1, results in a more aggregate-prone protein.

摘要

阿里尔(Ariel)是一种小鼠突变体,由于大量细胞内蛋白质聚集体的迅速积累,导致骨骼肌肌原纤维退行性变。这种暴发性疾病是由ENU 诱导的隐性突变引起的,导致骨骼肌肌球蛋白蛋白 MYH4(MyHC IIb)的运动域中发生 L342Q 变化。尽管在出生时正常,但纯合子小鼠从第 13 天开始出现后肢瘫痪,与小鼠从发育型肌球蛋白向成年型肌球蛋白同工型转变的时间一致。突变肌球蛋白(MYH4(L342Q))是一种易于聚集的蛋白质。尽管过程迅速,但对纯化聚集体的生化分析表明存在通常在人类肌原纤维肌病中发现的蛋白质,表明阿里尔聚集体的产生遵循与骨骼肌其他构象蛋白疾病共享的致病途径。相比之下,杂合子小鼠在外观和组织学上与对照小鼠没有明显区别。MYH4(L342Q)仅存在于杂合子小鼠的肌肉中,其水平为野生型蛋白的 7%,导致分离的单个纤维中力产生有微小但显著的增加,表明杂合子中突变蛋白的消除可防止观察到的纯合子中发生的病理变化。在人类肌肉中 MYH1 的功能等效物中重现 L342Q 变化会导致更易聚集的蛋白质。

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