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热休克蛋白 70 结构:在蛋白毒性应激后,热休克蛋白 70.1 和 Hsc70 形成新型聚合体结构。

Hsp70 architecture: the formation of novel polymeric structures of Hsp70.1 and Hsc70 after proteotoxic stress.

机构信息

Peter MacCallum Cancer Centre, St Andrew's Place, East Melbourne, Victoria, Australia.

出版信息

PLoS One. 2012;7(12):e52351. doi: 10.1371/journal.pone.0052351. Epub 2012 Dec 19.

Abstract

Heat induces Hsp70.1 (HSPA1) and Hsc70 (HSPA8) to form complex detergent insoluble cytoplasmic and nuclear structures that are distinct from the cytoskeleton and internal cell membranes. These novel structures have not been observed by earlier immunofluorescence studies as they are obscured by the abundance of soluble Hsp70.1/Hsc70 present in cells. While resistant to detergents, these Hsp70 structures display complex intracellular dynamics and are efficiently disaggregated by ATP, indicating that this pool of Hsp70.1/Hsc70 retains native function and regulation. Hsp70.1 promotes the repair of proteotoxic damage and cell survival after stress. In heated fibroblasts expressing Hsp70.1, Hsp70.1 and Hsc70 complexes are efficiently disaggregated before the cells undergo-heat induced apoptosis. In the absence of Hsp70.1, fibroblasts have increased rates of heat-induced apoptosis and maintain stable insoluble Hsc70 structures. The differences in the intracellular distribution of Hsp70.1 and Hsc70, combined with the ability of Hsp70.1, but not Hsc70, to promote the disaggregation of insoluble Hsp70.1/Hsc70 complexes, indicate that these two closely related proteins perform distinctly different cellular functions in heated cells.

摘要

热诱导 Hsp70.1(HSPA1)和 Hsc70(HSPA8)形成复杂的去污剂不溶性细胞质和核结构,这些结构与细胞骨架和细胞膜内部不同。这些新结构以前的免疫荧光研究没有观察到,因为它们被细胞中大量存在的可溶性 Hsp70.1/Hsc70 所掩盖。虽然这些 Hsp70 结构对去污剂有抗性,但它们表现出复杂的细胞内动力学,并能被 ATP 有效解聚,表明这池 Hsp70.1/Hsc70 保留了天然的功能和调节。Hsp70.1 促进应激后蛋白质毒性损伤的修复和细胞存活。在表达 Hsp70.1 的加热成纤维细胞中,Hsp70.1 和 Hsc70 复合物在细胞经历热诱导凋亡之前被有效地解聚。在没有 Hsp70.1 的情况下,成纤维细胞的热诱导凋亡率增加,并保持稳定的不溶性 Hsc70 结构。Hsp70.1 和 Hsc70 的细胞内分布差异,加上 Hsp70.1 但不是 Hsc70 促进不溶性 Hsp70.1/Hsc70 复合物解聚的能力,表明这两种密切相关的蛋白质在加热细胞中执行明显不同的细胞功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf16/3526589/c8df5d8b2a34/pone.0052351.g001.jpg

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