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伴侣蛋白依赖性E3连接酶CHIP使可溶性鸟苷酸环化酶泛素化并介导其蛋白酶体降解。

Chaperone-dependent E3 ligase CHIP ubiquitinates and mediates proteasomal degradation of soluble guanylyl cyclase.

作者信息

Xia Tian, Dimitropoulou Christiana, Zeng Jingmin, Antonova Galina N, Snead Connie, Venema Richard C, Fulton David, Qian Shuibing, Patterson Cam, Papapetropoulos Andreas, Catravas John D

机构信息

Vascular Biology Center, Medical College of Georgia, Augusta, GA 30912-2500, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2007 Nov;293(5):H3080-7. doi: 10.1152/ajpheart.00579.2007. Epub 2007 Sep 14.

Abstract

The nitric oxide receptor soluble guanylyl cyclase (sGC) exists in multimeric protein complexes, including heat shock protein (HSP) 90 and endothelial nitric oxide synthase. Inhibition of HSP90 by geldanamycin causes proteasomal degradation of sGC protein. In this study, we have investigated whether COOH terminus of heat shock protein 70-interacting protein (CHIP), a co-chaperone molecule that is involved in protein folding but is also a chaperone-dependent ubiquitin E3 ligase, could play a role in the process of degradation of sGC. Transient overexpression of CHIP in COS-7 cells degraded heterologous sGC in a concentration-related manner; this downregulation of sGC was abrogated by the proteasome inhibitor MG-132. Transfection of tetratricopeptide repeats and U-box domain CHIP mutants attenuated sGC degradation, suggesting that both domains are indispensable for CHIP function. Results from immunoprecipitation and indirect immunofluorescent microscopy experiments demonstrated that CHIP is associated with sGC, HSP90, and HSP70 in COS-7 cells. Furthermore, CHIP increased the association of HSP70 with sGC. In in vitro ubiquitination assays using purified proteins and ubiquitin enzymes, E3 ligase CHIP directly ubiquitinated sGC; this ubiquitination was potentiated by geldanamycin in COS-7 cells, followed by proteasomal degradation. In rat aortic smooth muscle cells, endogenous sGC was also degraded by adenovirus-infected wild-type CHIP but not by the chaperone interaction-deficient K30A CHIP, whereas CHIP, but not K30A, attenuated sGC expression in, and nitric oxide donor-induced relaxation of, rat aortic rings, suggesting that CHIP plays a regulatory role under physiological conditions. This study reveals a new mechanism for the regulation of sGC, an important mediator of cellular and vascular function.

摘要

一氧化氮受体可溶性鸟苷酸环化酶(sGC)存在于多聚体蛋白复合物中,包括热休克蛋白(HSP)90和内皮型一氧化氮合酶。格尔德霉素对HSP90的抑制会导致sGC蛋白的蛋白酶体降解。在本研究中,我们调查了热休克蛋白70相互作用蛋白(CHIP)的羧基末端,一种参与蛋白质折叠但也是一种伴侣依赖性泛素E3连接酶的共伴侣分子,是否在sGC的降解过程中发挥作用。CHIP在COS-7细胞中的瞬时过表达以浓度相关的方式降解异源sGC;蛋白酶体抑制剂MG-132消除了sGC的这种下调。转染四肽重复序列和U-box结构域CHIP突变体减弱了sGC的降解,表明这两个结构域对于CHIP功能都是不可或缺的。免疫沉淀和间接免疫荧光显微镜实验结果表明,CHIP在COS-7细胞中与sGC、HSP90和HSP70相关联。此外,CHIP增加了HSP70与sGC的关联。在使用纯化蛋白和泛素酶的体外泛素化测定中,E3连接酶CHIP直接使sGC泛素化;在COS-7细胞中,格尔德霉素增强了这种泛素化,随后是蛋白酶体降解。在大鼠主动脉平滑肌细胞中,内源性sGC也被腺病毒感染的野生型CHIP降解,但不被伴侣相互作用缺陷型K30A CHIP降解,而CHIP(而非K30A)减弱了大鼠主动脉环中sGC的表达以及一氧化氮供体诱导的舒张,这表明CHIP在生理条件下起调节作用。本研究揭示了sGC调节(细胞和血管功能的重要介质)的一种新机制。

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