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p50(细胞分裂周期蛋白37)是一种非排他性的热休克蛋白90伴侣蛋白,它密切参与热休克蛋白90介导的未成熟激酶分子的折叠过程。

p50(cdc37) is a nonexclusive Hsp90 cohort which participates intimately in Hsp90-mediated folding of immature kinase molecules.

作者信息

Hartson S D, Irwin A D, Shao J, Scroggins B T, Volk L, Huang W, Matts R L

机构信息

Department of Biochemistry and Molecular Biology, Oklahoma State University, Stillwater 74078-3035, USA.

出版信息

Biochemistry. 2000 Jun 27;39(25):7631-44. doi: 10.1021/bi000315r.

Abstract

Hsp90 and p50(cdc37) provide a poorly understood biochemical function essential to certain protein kinases, and recent models describe p50(cdc37) as an exclusive hsp90 cohort which links hsp90 machinery to client kinases. We describe here the recovery of p50(cdc37) in immunoadsorptions directed against the hsp90 cohorts FKBP52, cyp40, p60HOP, hsp70, and p23. Additionally, monoclonal antibodies against FKBP52 coadsorb maturation intermediates of the hsp90-dependent kinases p56(lck) and HRI, and the presence of these maturation intermediates significantly increases the representation of p50(cdc37) and hsp90 on FKPB52 machinery. Although the native heterocomplex between hsp90 and p50(cdc37) is salt-labile, their dynamic interactions with kinase substrates produce kinase-chaperone heterocomplexes which are highly salt-resistant. The hsp90 inhibitor geldanamycin does not directly disrupt the native association of hsp90 with p50(cdc37) per se, but does result in the formation of salt-labile hsp90-kinase heterocomplexes which lack the p50(cdc37) cohort. We conclude that p50(cdc37) does not simply serve as a passive structural bridge between hsp90 and its kinase substrates; instead, p50(cdc37) is a nonexclusive hsp90 cohort which responds to hsp90's nucleotide-regulated conformational switching during the generation of high-affinity interactions within the hsp90-kinase-p50(cdc37) heterocomplex.

摘要

热休克蛋白90(Hsp90)和p50(cdc37)为某些蛋白激酶提供了一种了解甚少的重要生化功能,最近的模型将p50(cdc37)描述为热休克蛋白90的唯一伙伴蛋白,它将热休克蛋白90机制与客户激酶联系起来。我们在此描述了在针对热休克蛋白90伙伴蛋白FKBP52、cyp40、p60HOP、热休克蛋白70(hsp70)和p23的免疫吸附中回收p50(cdc37)的情况。此外,针对FKBP52的单克隆抗体可共同吸附热休克蛋白90依赖性激酶p56(lck)和血红素调节抑制因子(HRI)的成熟中间体,这些成熟中间体的存在显著增加了p50(cdc37)和热休克蛋白90在FKPB52机制上的占比。尽管热休克蛋白90与p50(cdc37)之间的天然异源复合物对盐不稳定,但它们与激酶底物的动态相互作用会产生高度耐盐的激酶伴侣异源复合物。热休克蛋白90抑制剂格尔德霉素本身不会直接破坏热休克蛋白90与p50(cdc37)的天然结合,但会导致形成对盐不稳定的、缺乏p50(cdc37)伙伴蛋白的热休克蛋白90-激酶异源复合物。我们得出结论,p50(cdc37)并非仅仅作为热休克蛋白90与其激酶底物之间的被动结构桥梁;相反,p50(cdc37)是一种非排他性的热休克蛋白90伙伴蛋白,在热休克蛋白90-激酶-p50(cdc37)异源复合物内产生高亲和力相互作用的过程中,它会响应热休克蛋白90的核苷酸调节构象转换。

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