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Atypical AAA+ subunit packing creates an expanded cavity for disaggregation by the protein-remodeling factor Hsp104

机译:不典型的AAA +亚基堆积会形成一个扩大的空腔,可通过蛋白质重塑因子Hsp104分解

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摘要

Hsp104, a yeast protein-remodeling factor of the AAA+ (ATPases associated with various cellular activities) superfamily, and its homologs in bacteria and plants mediate cell recovery after severe stress by disaggregating denatured proteins through a poorly understood mechanism. Here, we present cryo-electron microscopy maps and domain fitting of Hsp104 hexamers, revealing an unusual arrangement of AAA+ modules with the prominent coiled-coil domain intercalated between the AAA+ domains. This packing results in a greatly expanded cavity, which is capped at either end by N- and C-terminal domains. The fitted structures as well as mutation of conserved coiled-coil arginines suggest that the coiled-coil domain plays a major role in the extraction of proteins from aggregates, providing conserved residues for key functions in ATP hydrolysis and potentially for substrate interaction. The large cavity could enable the uptake of polypeptide loops without a requirement for exposed N or C termini.
机译:Hsp104是AAA +(与各种细胞活动相关的ATPases)超家族的酵母蛋白质重塑因子,它在细菌和植物中的同系物通过不了解的机制分解变性蛋白质,从而在严重压力后介导细胞恢复。在这里,我们介绍了Hsp104六聚体的低温电子显微镜图和结构域拟合,揭示了AAA +模块的不寻常排列,突出的卷曲螺旋结构域插在AAA +结构域之间。这种堆积导致空腔大大扩展,该空腔的任一端都被N和C端域封端。拟合结构以及保守的卷曲螺旋精氨酸的突变表明,卷曲螺旋结构域在从聚集体提取蛋白质中起主要作用,为ATP水解中的关键功能和潜在的底物相互作用提供了保守的残基。大腔体可以摄取多肽环,而无需暴露的N或C末端。

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