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Harc的C末端结构域对于与Hsp70和Hop结合的重要性及其对热休克的反应。

Importance of the C-terminal domain of Harc for binding to Hsp70 and Hop as well as its response to heat shock.

作者信息

Cartledge Kellie, Elsegood Caryn, Roiniotis John, Hamilton John A, Scholz Glen M

机构信息

Ludwig Institute for Cancer Research, Parkville, Victoria 3050, Australia.

出版信息

Biochemistry. 2007 Dec 25;46(51):15144-52. doi: 10.1021/bi701041p. Epub 2007 Dec 1.

Abstract

Hsp90 is a molecular chaperone that acts in concert with Hsp70 to mediate the folding of many important regulatory proteins (e.g., protein kinases) into functional conformations. The chaperone activity of Hsp90 is primarily regulated by its cochaperones. For example, the Hsp90 cochaperone Cdc37 recruits Hsp90 to protein kinases as well as inhibiting its ATPase activity to promote the binding of Hsp90 to protein kinases. Harc is a structurally related Hsp90 cochaperone with a three-domain structure in which the middle domain binds Hsp90. In contrast to Cdc37 though, Harc also binds to Hsp70 and Hop (Hsp70/Hsp90 organizing protein). Here we demonstrate that deletion of the C-terminal domain of Harc abolished the binding of Hsp70 and Hop and reduced the affinity of Hsp90 binding to Harc. Significantly, the C-terminal domain of Harc bound Hsp70, but it did not bind Hop or Hsp90. Size exclusion chromatography of cell lysates revealed that Hop only formed a complex with Harc in the presence of Hsp90 and Hsp70, consistent with a model in which the interaction of Hop with Harc is mediated via the binding of Hop to Harc-bound Hsp90 and Hsp70. Notably, heat shock resulted in a marked decrease in the solubility of Harc, a response that was further augmented by the deletion of the C-terminal domain of Harc. This latter finding is especially interesting given that bioinformatics analysis indicated that cells may express splice variants of Harc that encode C-terminally truncated Harc isoforms. Together, these findings indicate that the C-terminal domain of Harc is a key determinant of its cochaperone functions.

摘要

热休克蛋白90(Hsp90)是一种分子伴侣,它与热休克蛋白70(Hsp70)协同作用,介导许多重要调节蛋白(如蛋白激酶)折叠成功能构象。Hsp90的伴侣活性主要由其辅助伴侣调节。例如,Hsp90辅助伴侣Cdc37将Hsp90招募到蛋白激酶上,并抑制其ATP酶活性,以促进Hsp90与蛋白激酶的结合。Harc是一种结构相关的Hsp90辅助伴侣,具有三结构域结构,其中间结构域与Hsp90结合。然而,与Cdc37不同的是,Harc还与Hsp70和Hop(Hsp70/Hsp90组织蛋白)结合。在这里,我们证明,缺失Harc的C末端结构域会消除Hsp70和Hop的结合,并降低Hsp90与Harc结合的亲和力。值得注意的是,Harc的C末端结构域与Hsp70结合,但不与Hop或Hsp90结合。细胞裂解物的尺寸排阻色谱显示,只有在Hsp90和Hsp70存在的情况下,Hop才会与Harc形成复合物,这与Hop与Harc的相互作用是通过Hop与Harc结合的Hsp90和Hsp70的结合介导的模型一致。值得注意的是,热休克导致Harc的溶解度显著降低,缺失Harc的C末端结构域会进一步增强这种反应。考虑到生物信息学分析表明细胞可能表达编码C末端截短的Harc异构体的剪接变体,后一发现尤其有趣。总之,这些发现表明,Harc的C末端结构域是其辅助伴侣功能的关键决定因素。

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