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CryoEM structure of Hsp104 and its mechanistic implication for protein disaggregation

机译:Hsp104的CryoEM结构及其对蛋白质分解的影响

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摘要

Hsp104 is a ring-forming AAA+ machine that recognizes both aggregated proteins and prion-fibrils as substrates and, together with the Hsp70 system, remodels substrates in an ATP-dependent manner. Whereas the ability to disaggregate proteins is dependent on the Hsp104 M-domain, the location of the M-domain is controversial and its exact function remains unknown. Here we present cryoEM structures of two Hsp104 variants in both crosslinked and noncrosslinked form, in addition to the structure of a functional Hsp104 chimera harboring T4 lysozyme within the M-domain helix L2. Unexpectedly, we found that our Hsp104 chimera has gained function and can solubilize heat-aggregated β-galactosidase (β-gal) in the absence of the Hsp70 system. Our fitted structures confirm that the subunit arrangement of Hsp104 is similar to other AAA+ machines, and place the M-domains on the Hsp104 exterior, where they can potentially interact with large, aggregated proteins.
机译:Hsp104是成环的AAA +机器,可将聚集的蛋白质和病毒原纤维都识别为底物,并与Hsp70系统一起以ATP依赖性方式重塑底物。尽管分解蛋白的能力取决于Hsp104 M结构域,但M结构域的位置仍存在争议,其确切功能仍然未知。在这里,我们介绍了两个Hsp104变体在交联和非交联形式中的cryoEM结构,以及在M结构域螺旋L2中包含T4溶菌酶的功能性Hsp104嵌合体的结构。出乎意料的是,我们发现我们的Hsp104嵌合体已获得功能,并且可以在没有Hsp70系统的情况下溶解热聚集的β-半乳糖苷酶(β-gal)。我们的拟合结构证实Hsp104的亚基排列与其他AAA +机器相似,并将M结构域放置在Hsp104外部,在那里它们可能与大型聚集蛋白相互作用。

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