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USP9X通过去泛素化内吞衔接蛋白Eps15来控制表皮生长因子受体(EGFR)的命运。

USP9X Controls EGFR Fate by Deubiquitinating the Endocytic Adaptor Eps15.

作者信息

Savio Michol Giovanna, Wollscheid Nadine, Cavallaro Elena, Algisi Veronica, Di Fiore Pier Paolo, Sigismund Sara, Maspero Elena, Polo Simona

机构信息

IFOM, Fondazione Istituto FIRC di Oncologia Molecolare, Via Adamello 16, 20139 Milan, Italy; DIPO, Dipartimento di Oncologia ed Emato-Oncologia, Università degli Studi di Milano, Via di Rudinì 8, 20122 Milan, Italy.

IFOM, Fondazione Istituto FIRC di Oncologia Molecolare, Via Adamello 16, 20139 Milan, Italy.

出版信息

Curr Biol. 2016 Jan 25;26(2):173-183. doi: 10.1016/j.cub.2015.11.050. Epub 2015 Dec 31.

Abstract

Following activation by its cognate ligand(s), the epidermal growth factor receptor (EGFR) is rapidly routed to the lysosome for degradation in a ubiquitination-dependent fashion. This pathway represents the major mechanism of long-term attenuation of EGFR signaling, and its deregulation is a significant feature in different types of cancers. Here we demonstrate, through a systematic RNAi-based approach, that several deubiquitinating (DUB) enzymes extend or decrease EGFR half-life upon EGF stimulation. We focus on USP9X, whose depletion severely affects EGFR turnover, interfering with its internalization and trafficking. We identify the endocytic protein Eps15 as one of the critical substrates of USP9X, and we map the Eps15 ubiquitination sites. We found that Eps15 monoubiquitination occurs already at minimal dose of EGF stimulation and is essential for EGFR internalization. Overall, our findings identify USP9X as a novel regulator of EGFR endocytosis and suggest a model whereby cycles of ubiquitination and deubiquitination events on endocytic accessory proteins may regulate the internalization and trafficking of the EGFR toward the lysosomes.

摘要

在被其同源配体激活后,表皮生长因子受体(EGFR)会迅速以泛素化依赖的方式被转运至溶酶体进行降解。该途径是EGFR信号长期衰减的主要机制,其失调是不同类型癌症的一个显著特征。在此,我们通过基于RNA干扰的系统方法证明,几种去泛素化(DUB)酶在表皮生长因子(EGF)刺激后会延长或缩短EGFR的半衰期。我们聚焦于泛素特异性蛋白酶9X(USP9X),其缺失会严重影响EGFR的周转,干扰其内化和运输。我们确定内吞蛋白Eps15是USP9X的关键底物之一,并绘制了Eps15的泛素化位点图谱。我们发现,在最低剂量的EGF刺激下就会发生Eps15单泛素化,且这对EGFR的内化至关重要。总体而言,我们的研究结果确定USP9X是EGFR内吞作用的新型调节因子,并提出了一种模型,即内吞辅助蛋白上的泛素化和去泛素化事件循环可能调节EGFR向溶酶体的内化和运输。

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