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Myopathy associated BAG3 mutations lead to protein aggregation by stalling Hsp70 networks

机译:肌病相关的BAG3突变导致Hsp70网络失速导致蛋白质聚集

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摘要

BAG3 is a multi-domain hub that connects two classes of chaperones, small heat shock proteins (sHSPs) via two isoleucine-proline-valine (IPV) motifs and Hsp70 via a BAG domain. Mutations in either the IPV or BAG domain of BAG3 cause a dominant form of myopathy, characterized by protein aggregation in both skeletal and cardiac muscle tissues. Surprisingly, for both disease mutants, impaired chaperone binding is not sufficient to explain disease phenotypes. Recombinant mutants are correctly folded, show unaffected Hsp70 binding but are impaired in stimulating Hsp70-dependent client processing. As a consequence, the mutant BAG3 proteins become the node for a dominant gain of function causing aggregation of itself, Hsp70, Hsp70 clients and tiered interactors within the BAG3 interactome. Importantly, genetic and pharmaceutical interference with Hsp70 binding completely reverses stress-induced protein aggregation for both BAG3 mutations. Thus, the gain of function effects of BAG3 mutants act as Achilles heel of the HSP70 machinery.
机译:BAG3是一个多域集线器,它通过两个异亮氨酸-脯氨酸-缬氨酸(IPV)模体和Hsp70通过两个BAG域连接两类伴侣蛋白,小型热激蛋白(sHSP)。 BAG3的IPV或BAG结构域中的突变会导致肌病的主要形式,其特征是骨骼和心肌组织中的蛋白质聚集。出乎意料的是,对于两种疾病突变体,伴侣结合的受损不足以解释疾病表型。重组突变体正确折叠,显示不受影响的Hsp70绑定,但在刺激依赖Hsp70的客户处理中受损。结果,突变的BAG3蛋白成为主要功能获得的节点,导致自身,Hsp70,Hsp70客户和BAG3相互作用组内的分层相互作用物聚集。重要的是,遗传和药物对Hsp70结合的干扰完全逆转了BAG3突变引起的应激诱导的蛋白质聚集。因此,BAG3突变体的功能效应获得成为HSP70机制的致命弱点。

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