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ATPase Domain and Interdomain Linker Play a Key Role in Aggregation of Mitochondrial Hsp70 Chaperone Ssc1

机译:ATPase域和域间链接器在线粒体Hsp70伴侣Ssc1的聚集中起关键作用

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摘要

The co-chaperone Hep1 is required to prevent the aggregation of mitochondrial Hsp70 proteins. We have analyzed the interaction of Hep1 with mitochondrial Hsp70 (Ssc1) and the determinants in Ssc1 that make it prone to aggregation. The ATPase and peptide binding domain (PBD) of Hsp70 proteins are connected by a linker segment that mediates interdomain communication between the domains. We show here that the minimal Hep1 binding entity of Ssc1 consists of the ATPase domain and the interdomain linker. In the absence of Hep1, the ATPase domain with the interdomain linker had the tendency to aggregate, in contrast to the ATPase domain with the mutated linker segment or without linker, and in contrast to the PBD. The closest homolog of Ssc1, bacterial DnaK, and a Ssc1 chimera, in which a segment of the ATPase domain of Ssc1 was replaced by the corresponding segment from DnaK, did not aggregate in Δhep1 mitochondria. The propensity to aggregate appears to be a specific property of the mitochondrial Hsp70 proteins. The ATPase domain in combination with the interdomain linker is crucial for aggregation of Ssc1. In conclusion, our results suggest that interdomain communication makes Ssc1 prone to aggregation. Hep1 counteracts aggregation by binding to this aggregation-prone conformer.
机译:需要伴侣伴侣Hep1来防止线粒体Hsp70蛋白的聚集。我们已经分析了Hep1与线粒体Hsp70(Ssc1)的相互作用以及Ssc1中决定簇的决定性因素。 Hsp70蛋白的ATPase和肽结合域(PBD)通过介导域之间域间通信的接头片段连接。我们在这里显示Ssc1的最小Hep1结合实体由ATPase域和域间接头组成。在没有Hep1的情况下,与具有域间连接子的ATPase域相比,具有突变的连接子片段或无连接子的ATPase域与PBD相比具有聚集的趋势。 Ssc1,细菌DnaK和Ssc1嵌合体的最接近同源物,其中Ssc1的ATPase结构域的一个片段被DnaK的相应片段替代,没有聚集在Δhep1线粒体中。聚集的倾向似乎是线粒体Hsp70蛋白的特定属性。 ATPase域与域间连接子的结合对于Ssc1的聚集至关重要。总之,我们的结果表明域间通信使Ssc1易于聚集。 Hep1通过绑定到易于聚合的构象异构体来抵消聚合。

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