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Novel interaction between the co-chaperone Cdc37 and Rho GTPase exchange factor Vav3 promotes androgen receptor activity and prostate cancer growth.新型共伴侣 Cdc37 与 Rho GTP 酶交换因子 Vav3 的相互作用促进雄激素受体活性和前列腺癌生长。
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Cdc37作为Hsp90的辅助伴侣蛋白。

Cdc37 as a co-chaperone to Hsp90.

作者信息

Calderwood Stuart K

机构信息

Department of Radiation Oncology, Beth Israel Deaconess Medical Center, Harvard Medical School, 02215, Boston, MA, USA,

出版信息

Subcell Biochem. 2015;78:103-12. doi: 10.1007/978-3-319-11731-7_5.

DOI:10.1007/978-3-319-11731-7_5
PMID:25487018
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6791355/
Abstract

The co-chaperone p50/Cdc37 is an important partner for Hsp90, assisting in molecular chaperone activities, particularly with regard to the regulation of protein kinases. The Hsp90/Cdc37complex controls the folding of a large proportion of protein kinases and thus stands at the hub of a multitude of intracellular signaling networks. Its effects thus reach beyond the housekeeping pathways of protein folding into regulation of a wide range of cellular processes. Due to its influence in cell growth pathways Cdc37 has attracted much attention as a potential intermediate in carcinogenesis. Cdc37 is an attractive potential target in cancer due to: (1) it may be expressed to high level in some types of cancer and (2) Cdc37 controls multiple signaling pathways. This indicates a potential for: (1) selectivity due to its elevated expression and (2) robustness as the co-chaperone may control multiple growth signaling pathways and thus be less prone to evolution of resistance than other oncoproteins. Cdc37 may also be involved in other aspects of pathophysiology. Protein aggregation disorders have been linked to molecular chaperones and to age related declines in molecular chaperones and co-chaperones. Cdc37 appears to be a potential agent in longevity due to its links to protein folding and autophagy and it will be informative to study the role of Cdc37 maintenance/decline in aging organisms.

摘要

共伴侣蛋白p50/Cdc37是Hsp90的重要伙伴,协助分子伴侣活性,特别是在蛋白激酶的调节方面。Hsp90/Cdc37复合物控制着很大一部分蛋白激酶的折叠,因此处于众多细胞内信号网络的核心位置。其作用因此超出了蛋白质折叠的管家途径,延伸到对广泛细胞过程的调节。由于其在细胞生长途径中的影响,Cdc37作为致癌作用的潜在中间体备受关注。Cdc37是癌症中一个有吸引力的潜在靶点,原因如下:(1)它可能在某些类型的癌症中高水平表达;(2)Cdc37控制多种信号通路。这表明存在以下潜力:(1)由于其表达升高而具有选择性;(2)具有稳健性,因为共伴侣蛋白可能控制多种生长信号通路,因此比其他癌蛋白更不容易产生耐药性。Cdc37也可能参与病理生理学的其他方面。蛋白质聚集紊乱与分子伴侣以及分子伴侣和共伴侣与年龄相关的下降有关。由于Cdc37与蛋白质折叠和自噬有关,它似乎是长寿的一个潜在因素,研究Cdc37在衰老生物体中的维持/下降作用将很有意义。