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Chaperone-assisted protein aggregate reactivation: Different solutions for the same problem

机译:分子伴侣辅助的蛋白质聚集体再活化:针对同一问题的不同解决方案

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The oligomeric AAA+ chaperones Hsp104 in yeast and ClpB in bacteria are responsible for the reactivation of aggregated proteins, an activity essential for cell survival during severe stress. The protein disaggregase activity of these members of the Hsp100 family is linked to the activity of chaperones from the Hsp70 and Hsp40 families. The precise mechanism by which these proteins untangle protein aggregates remains unclear. Strikingly, Hsp100 proteins are not present in metazoans. This does not mean that animal cells do not have a disaggregase activity, but that this activity is performed by the Hsp70 system and a representative of the Hsp110 family instead of a Hsp100 protein. This review describes the actual view of Hsp100-mediated aggregate reactivation, including the ATP-induced conformational changes associated with their disaggregase activity, the dynamics of the oligomeric assembly that is regulated by its ATPase cycle and the DnaK system, and the tight allosteric coupling between the ATPase domains within the hexameric ring complexes. The lack of homologs of these disaggregases in metazoans has suggested that they might be used as potential targets to develop antimicrobials. The current knowledge of the human disaggregase machinery and the role of Hsp110 are also discussed. (C) 2015 Elsevier Inc. All rights reserved.
机译:酵母中的寡聚AAA +伴侣Hsp104和细菌中的ClpB负责聚集蛋白的重新激活,这是严重压力下细胞存活所必需的。 Hsp100家族的这些成员的蛋白去整合酶活性与Hsp70和Hsp40家族的伴侣蛋白的活性有关。这些蛋白质解开蛋白质聚集体的确切机制仍不清楚。令人惊讶的是,后生动物中不存在Hsp100蛋白。这并不意味着动物细胞不具有Disagggregase活性,而是由Hsp70系统和Hsp110家族的代表而不是Hsp100蛋白来执行此活性。这篇综述描述了Hsp100介导的聚集体再活化的实际观点,包括ATP诱导的与其构象失活酶活性相关的构象变化,受其ATPase循环和DnaK系统调控的寡聚装配的动力学以及两者之间的紧密构构偶联六聚环配合物中的ATPase结构域。在后生动物中缺乏这些分解物的同源物,表明它们可能被用作开发抗菌素的潜在靶标。还讨论了人类脱羧酶机制的当前知识和Hsp110的作用。 (C)2015 Elsevier Inc.保留所有权利。

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