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A comparison of Hsp90alpha and Hsp90beta interactions with cochaperones and substrates.

机译:Hsp90alpha和Hsp90beta与伴侣蛋白和底物相互作用的比较。

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Hsp90 chaperone complexes function in assembly, folding, and activation of numerous substrates. The 2 vertebrate homologues encoded by the genes hsp90a and hsp90b are differentially expressed in embryonic and adult tissues and during stress; however, it is not known whether they possess identical functional activities in chaperone complexes. This question was addressed by examining potential differences between the Hsp90 isoforms with respect to both cochaperone and substrate interactions. Epitope-tagged proteins were expressed in mammalian cells or Xenopus oocytes and subjected to immunoprecipitation with an array of cochaperones. Both isoforms were shown to participate equally in multichaperone complexes, and no significant differences in cochaperone distribution were observed. The substrates Raf-1, HSF1, Cdc37, and MEK1 interacted with both Hsp90alpha and Hsp90beta, and the relative patterns of these interactions were not affected by heat shock. The substrate kinases c-Src, CKIIB, A-raf, and Erk interacted with both isoforms; however, significantly more Hsp90alpha was recovered after heat shock. The data demonstrate that Hsp90alpha and Hsp90beta exhibit similar interactions with cochaperones, but significantly different behaviors with respect to substrate interactions under stress conditions. These results reveal both functional similarities and key functional differences in the individual members of this protein family.
机译:Hsp90伴侣复合物可在多种底物的组装,折叠和激活中发挥作用。由hsp90a和hsp90b基因编码的2个脊椎动物同源基因在胚胎和成年组织中以及在胁迫过程中差异表达。但是,尚不知道它们在伴侣复合物中是否具有相同的功能活性。通过检查Hsp90同工型之间在伴侣伴侣和底物相互作用方面的潜在差异,解决了这个问题。带有抗原决定簇的蛋白在哺乳动物细胞或非洲爪蟾卵母细胞中表达,并通过一系列伴侣蛋白进行免疫沉淀。两种同工型均显示参与多分子伴侣复合物,并且在分子伴侣的分布中未见明显差异。底物Raf-1,HSF1,Cdc37和MEK1与Hsp90alpha和Hsp90beta都相互作用,并且这些相互作用的相对模式不受热冲击的影响。底物激酶c-Src,CKIIB,A-raf和Erk与这两种同工型相互作用。然而,热休克后回收的Hsp90alpha明显更多。数据表明,Hsp90alpha和Hsp90beta与辅酶伴侣表现出相似的相互作用,但在应激条件下,与底物之间的相互作用表现出明显不同。这些结果揭示了该蛋白家族中各个成员的功能相似性和关键功能差异。

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