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Mutations affecting the cytoplasmic functions of the co-chaperone DNAJB6 cause limb-girdle muscular dystrophy

机译:影响共同伴侣DNaJB6的细胞质功能原因肢带型肌营养不良症突变

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摘要

Limb-girdle muscular dystrophy type 1D (LGMD1D) was linked to 7q36 over a decade ago, but its genetic cause has remained elusive. We have studied nine LGMD families from Finland, the U.S., and Italy, and identified four dominant missense mutations leading to p.Phe93Leu or p.Phe89Ile changes in the ubiquitously expressed co-chaperone DNAJB6. Functional testing in vivo showed that the mutations have a dominant toxic effect mediated specifically by the cytoplasmic isoform of DNAJB6. In vitro studies demonstrated that the mutations increase the half-life of DNAJB6, extending this effect to the wild-type protein, and reduce its protective anti-aggregation effect. Further, we show that DNAJB6 interacts with members of the CASA complex, including the myofibrillar-myopathy-causing protein BAG3. Our data provide the genetic cause of LGMD1D, suggest that the pathogenesis is mediated by defective chaperone function, and highlight how mutations expressed ubiquitously can exert their effect in a tissue-, cellular compartment-, and isoform-specific manner.
机译:十一十年前的肢体肌营养不良型1D(LGMD1D)与7Q36联系,但其遗传原因仍然难以捉摸。我们研究了来自芬兰,美国和意大利的九个LGMD家庭,并确定了普遍表达普遍表达的共伴侣DNAJB6的P.phe93Leu或P.phe89ile的四种主导畸形突变。体内功能测试表明,突变具有明显的毒性效果,特别是DNAJB6的细胞质同种型介导。体外研究表明,突变增加了DNAJB6的半衰期,向野生型蛋白延伸了这种效果,并降低了其保护性抗聚集效应。此外,我们表明DNAJB6与Casa综合体的成员相互作用,包括肌原纤维 - 肌病引发蛋白袋3。我们的数据提供LGMD1D的遗传原因,表明发病机制是通过缺陷的伴侣函数介导的,并且突出普遍地表达的突变可以在组织,细胞室和同种型的方式中施加效果。

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