首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Hsp70 Interacts with the Retroviral Restriction Factor TRIM5α and Assists the Folding of TRIM5α
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Hsp70 Interacts with the Retroviral Restriction Factor TRIM5α and Assists the Folding of TRIM5α

机译:Hsp70与逆转录病毒限制因子TRIM5α相互作用并协助TRIM5α的折叠。

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摘要

Tripartite motif (TRIM) protein TRIM5α has been shown to restrict human immunodeficiency virus, type 1 infection in Old World monkey cells at the early post-entry step by poorly understood mechanisms. Currently, the physiological function of TRIM5α is not known. In this study, we showed that transiently overexpressed TRIM5α causes a morphological change in HEK293T cells. A proteomics analysis of the protein complexes that were pulled down with hemagglutinin-tagged TRIM5α suggested that the heat shock protein 70 (Hsp70) may serve as a TRIM5α-binding partner. The interaction between Hsp70 and TRIM5α was confirmed by co-localization and co-immunoprecipitation assays. Co-expression of Hsp70 reversed the TRIM5α-induced morphological change in HEK293T cells. Another heat shock protein Hsc70 also bound to TRIM5α, but unlike Hsp70, Hsc70 was not able to reverse the TRIM5α-induced morphological change, suggesting that Hsp70 specifically reverses the morphological change caused by TRIM5α. Studies using a series of TRIM5α deletion mutants demonstrate that, although the PRYSPRY domain is critical for binding to Hsp70, the entire TRIM5α structure is necessary to induce the morphological change of cells. When the ATPase domain of Hsp70 was mutated, the mutated Hsp70 could not counteract the morphological change induced by TRIM5α, indicating that the catalytic activity of Hsp70 protein is important for this function. Co-expression of Hsp70 elevated the levels of TRIM5α in the detergent-soluble fraction with a concomitant decrease in the detergent-insoluble fraction. Together these results suggest that Hsp70 plays critical roles in the cellular management against the TRIM5α-induced cellular insults.
机译:三分体基序(TRIM)蛋白TRIM5α已被证明在机制尚不清楚的情况下会在进入后的早期阶段限制人类免疫缺陷病毒(旧世界猴细胞中的1型感染)。目前,TRIM5α的生理功能尚不清楚。在这项研究中,我们表明瞬时过度表达的TRIM5α会引起HEK293T细胞的形态变化。对用血凝素标记的TRIM5α下拉的蛋白质复合物的蛋白质组学分析表明,热激蛋白70(Hsp70)可以作为TRIM5α结合伴侣。 Hsp70和TRIM5α之间的相互作用已通过共定位和共免疫沉淀试验得以证实。 Hsp70的共表达逆转了TRIM5α诱导的HEK293T细胞的形态变化。另一种热激蛋白Hsc70也与TRIM5α结合,但与Hsp70不同,Hsc70不能逆转TRIM5α诱导的形态变化,表明Hsp70特异逆转了由TRIM5α引起的形态变化。使用一系列TRIM5α缺失突变体的研究表明,尽管PRYSPRY域对于与Hsp70结合至关重要,但整个TRIM5α结构对于诱导细胞的形态变化是必不可少的。当Hsp70的ATPase结构域发生突变时,突变的Hsp70不能抵消TRIM5α诱导的形态变化,表明Hsp70蛋白的催化活性对该功能很重要。 Hsp70的共表达提高了去污剂可溶级分中TRIM5α的水平,同时去污剂不溶级分也随之降低。这些结果共同表明,Hsp70在针对TRIM5α诱导的细胞损伤的细胞管理中起着至关重要的作用。

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