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拟南芥和水稻中羧酸夹钳型四肽重复蛋白的计算机鉴定,作为 HSP90/HSP70 的潜在共伴侣。

In silico identification of carboxylate clamp type tetratricopeptide repeat proteins in Arabidopsis and rice as putative co-chaperones of Hsp90/Hsp70.

机构信息

Department of Biology, The University of Western Ontario, London, Ontario, Canada.

出版信息

PLoS One. 2010 Sep 15;5(9):e12761. doi: 10.1371/journal.pone.0012761.

Abstract

The essential eukaryotic molecular chaperone Hsp90 operates with the help of different co-chaperones, which regulate its ATPase activity and serve as adaptors to recruit client proteins and other molecular chaperones, such as Hsp70, to the Hsp90 complex. Several Hsp90 and Hsp70 co-chaperones contain the tetratricopeptide repeat (TPR) domain, which interacts with the highly conserved EEVD motif at the C-terminal ends of Hsp90 and Hsp70. The acidic side chains in EEVD interact with a subset of basic residues in the TPR binding pocket called a 'carboxylate clamp'. Since the carboxylate clamp residues are conserved in the TPR domains of known Hsp90/Hsp70 co-chaperones, we carried out an in silico search for TPR proteins in Arabidopsis and rice comprising of at least one three-motif TPR domain with conserved amino acid residues required for Hsp90/Hsp70 binding. This approach identified in Arabidopsis a total of 36 carboxylate clamp (CC)-TPR proteins, including 24 novel proteins, with potential to interact with Hsp90/Hsp70. The newly identified CC-TPR proteins in Arabidopsis and rice contain additional protein domains such as ankyrin, SET, octicosapeptide/Phox/Bem1p (Phox/PB1), DnaJ-like, thioredoxin, FBD and F-box, and protein kinase and U-box, indicating varied functions for these proteins. To provide proof-of-concept of the newly identified CC-TPR proteins for interaction with Hsp90, we demonstrated interaction of AtTPR1 and AtTPR2 with AtHsp90 in yeast two-hybrid and in vitro pull down assays. These findings indicate that the in silico approach used here successfully identified in a genome-wide context CC-TPR proteins with potential to interact with Hsp90/Hsp70, and further suggest that the Hsp90/Hsp70 system relies on TPR co-chaperones more than it was previously realized.

摘要

基本的真核分子伴侣 Hsp90 在不同的共伴侣的帮助下发挥作用,这些共伴侣调节其 ATP 酶活性,并作为接头将客户蛋白和其他分子伴侣(如 Hsp70)招募到 Hsp90 复合物中。几种 Hsp90 和 Hsp70 共伴侣含有四肽重复(TPR)结构域,该结构域与 Hsp90 和 Hsp70 的 C 末端高度保守的 EEVD 基序相互作用。EEVD 中的酸性侧链与 TPR 结合口袋中的一组碱性残基相互作用,称为“羧酸盐夹子”。由于羧酸盐夹子残基在已知的 Hsp90/Hsp70 共伴侣的 TPR 结构域中是保守的,我们在拟南芥和水稻中进行了 TPR 蛋白的计算机搜索,这些蛋白至少包含一个具有与 Hsp90/Hsp70 结合所需的保守氨基酸残基的三基序 TPR 结构域。这种方法在拟南芥中总共鉴定了 36 个羧酸盐夹子(CC)-TPR 蛋白,包括 24 个新的蛋白质,它们有可能与 Hsp90/Hsp70 相互作用。在拟南芥和水稻中鉴定的新的 CC-TPR 蛋白还包含其他蛋白质结构域,如锚蛋白、SET、八肽/Phox/Bem1p(Phox/PB1)、DnaJ 样、硫氧还蛋白、FBD 和 F 盒以及蛋白激酶和 U 盒,表明这些蛋白质具有不同的功能。为了提供新鉴定的 CC-TPR 蛋白与 Hsp90 相互作用的概念验证,我们在酵母双杂交和体外下拉实验中证明了 AtTPR1 和 AtTPR2 与 AtHsp90 的相互作用。这些发现表明,这里使用的计算机方法成功地在全基因组范围内鉴定了具有与 Hsp90/Hsp70 相互作用潜力的 CC-TPR 蛋白,并进一步表明 Hsp90/Hsp70 系统比以前认识到的更依赖于 TPR 共伴侣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0604/2939883/bfc0391ea3e5/pone.0012761.g002.jpg

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