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GRP75 通过 CHIP 介导的泛素降解途径调节癌基因 Dbl 驱动的胞吞作用失调。

GRP75 modulates oncogenic Dbl-driven endocytosis derailed via the CHIP-mediated ubiquitin degradation pathway.

机构信息

Department of Cell Biology, School of Medicine, Nankai University, Tianjin, China.

Department of Clinical Laboratory, Cancer Hospital of Tianjin Medical University, Tianjin, China.

出版信息

Cell Death Dis. 2018 Sep 24;9(10):971. doi: 10.1038/s41419-018-1039-2.

Abstract

Chaperone-assisted proteasome degradation of oncogenic protein acts as an upstream signal controlling tumorigenesis and progression. The understanding of the co-regulation of chaperone and oncoprotein of endocytosis pathways is extremely limited. In this study, we showed for the first time that proto-Dbl (dbl proto-oncogene product) is co-enriched with mitochondrial chaperone GRP75 in endocytosis vesicles from ovarian cancer cells. onco-Dbl, produced by oncogenic mutation/degradation of proto-Dbl, markedly enhanced cellular macropinocytosis but suppressed clathrin-mediated endocytosis and clathrin-independent endocytosis pathways, presenting a derailed endocytosis phenotype. GRP75 was associated with proto-Dbl inside cells and modulated Dbl-driven endocytosis derailed by a co-regulatory mode. In spite of not being a component of the Hsc70/Hsp90/proto-Dbl complex, the degradation of proto-Dbl was promoted by GRP75 through the CHIP-mediated ubiquitin-proteasome pathway, of which GRP75 acts as a cooperator with CHIP but also acts as a competitor to Hsc70 and Hsp90 in the multiple chaperones-assisted pro-folding/pro-degradation machinery. Knockdown or inhibition of GRP75 attenuated proto-Dbl degradation and reduced the onco-Dbl level, which differentially impaired Rho GTPases activation and therefore shifted the endocytosis-derailed phenotype. Our data uncovered a novel GRP75-Dbl endocytosis regulatory axis and provided an alternative using chaperone inhibitor to shut down the oncoprotein-driven endocytosis derailment mechanism.

摘要

伴侣蛋白辅助蛋白酶体降解致癌蛋白作为一种上游信号,控制肿瘤发生和进展。然而,对于伴侣蛋白和内吞途径中致癌蛋白的共同调控的理解非常有限。在这项研究中,我们首次表明原癌基因 Dbl(proto-Dbl)与线粒体伴侣蛋白 GRP75 一起在内质网小泡中富集。致癌突变/原癌基因 Dbl 的降解产物 onco-Dbl 显著增强了细胞巨胞饮作用,但抑制了网格蛋白介导的内吞作用和网格蛋白非依赖性内吞作用途径,呈现出脱轨的内吞作用表型。GRP75 与细胞内的 proto-Dbl 相关,并通过共调节模式调节 Dbl 驱动的脱轨内吞作用。尽管 GRP75 不是 Hsc70/Hsp90/proto-Dbl 复合物的组成部分,但它通过 CHIP 介导的泛素-蛋白酶体途径促进 proto-Dbl 的降解,其中 GRP75 作为 CHIP 的合作者,但也作为 Hsc70 和 Hsp90 在多种伴侣蛋白辅助 pro-folding/pro-degradation 机制中的竞争者。GRP75 的敲低或抑制减弱了 proto-Dbl 的降解并降低了 onco-Dbl 的水平,这差异地损害了 Rho GTPases 的激活,从而改变了脱轨的内吞作用表型。我们的数据揭示了一个新的 GRP75-Dbl 内吞调节轴,并提供了一种使用伴侣蛋白抑制剂来关闭致癌蛋白驱动的内吞作用脱轨机制的替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d06/6155137/ae5eac182eb8/41419_2018_1039_Fig1_HTML.jpg

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