首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Deubiquitinase FAM/USP9X Interacts with the E3 Ubiquitin Ligase SMURF1 Protein and Protects It from Ligase Activity-dependent Self-degradation
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Deubiquitinase FAM/USP9X Interacts with the E3 Ubiquitin Ligase SMURF1 Protein and Protects It from Ligase Activity-dependent Self-degradation

机译:泛素化酶FAM / USP9X与E3泛素连接酶SMURF1蛋白相互作用并保护其免受连接酶活性依赖性自我降解的影响

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摘要

Ubiquitination is an essential post-translational modification that mediates diverse cellular functions. SMAD-specific E3 ubiquitin protein ligase 1 (SMURF1) belongs to the Nedd4 family of HECT ubiquitin ligases that directly catalyzes ubiquitin conjugation onto diverse substrates. As a result, SMURF1 regulates a great variety of cellular physiologies including bone morphogenetic protein (BMP) signaling, cell migration, and planar cell polarity. Structurally, SMURF1 consists of a C2 domain, two WW domain repeats, and a catalytic HECT domain essential for its E3 ubiquitin ligase activity. This modular architecture allows for interactions with other proteins, which are either substrates or adaptors of SMURF1. Despite the increasing number of SMURF1 substrates identified, current knowledge regarding regulatory proteins and their modes of action on controlling SMURF1 activity is still limited. In this study, we employed quantitative mass spectrometry to analyze SMURF1-associated cellular complexes, and identified the deubiquitinase FAM/USP9X as a novel interacting protein for SMURF1. Through domain mapping study, we found the second WW domain of SMURF1 and the carboxyl terminus of USP9X critical for this interaction. SMURF1 is autoubiquitinated through its intrinsic HECT E3 ligase activity, and is degraded by the proteasome. USP9X association antagonizes this activity, resulting in deubiquitination and stabilization of SMURF1. In MDA-MB-231 breast cancer cells, SMURF1 expression is elevated and is required for cellular motility. USP9X stabilizes endogenous SMURF1 in MDA-MB-231 cells. Depletion of USP9X led to down-regulation of SMURF1 and significantly impaired cellular migration. Taken together, our data reveal USP9X as an important regulatory protein of SMURF1 and suggest that the association between deubiquitinase and E3 ligase may serve as a common strategy to control the cellular protein dynamics through modulating E3 ligase stability.
机译:泛素化是必不可少的翻译后修饰,可介导多种细胞功能。 SMAD特异的E3泛素蛋白连接酶1(SMURF1)属于HECT泛素连接酶的Nedd4家族,可直接催化泛素结合到多种底物上。结果,SMURF1调节多种细胞生理,包括骨形态发生蛋白(BMP)信号传导,细胞迁移和平面细胞极性。在结构上,SMURF1由一个C2结构域,两个WW结构域重复序列和一个催化性HECT结构域组成,该结构对其E3泛素连接酶活性至关重要。这种模块化架构允许与其他蛋白质相互作用,这些蛋白质可以是SMURF1的底物或衔接子。尽管已鉴定出SMURF1底物的数量在增加,但有关调节蛋白及其在控制SMURF1活性上的作用方式的当前知识仍然有限。在这项研究中,我们采用定量质谱分析SMURF1相关的细胞复合物,并确定去泛素酶FAM / USP9X是SMURF1的新型相互作用蛋白。通过域映射研究,我们发现SMURF1的第二个WW域和USP9X的羧基末端对此相互作用至关重要。 SMURF1通过其固有的HECT E3连接酶活性被自身泛素化,并被蛋白酶体降解。 USP9X协会拮抗这一活性,导致SMURF1的去泛素化和稳定化。在MDA-MB-231乳腺癌细胞中,SMURF1表达升高并且是细胞运动所必需的。 USP9X可稳定MDA-MB-231细胞中的内源性SMURF1。 USP9X的耗尽导致SMURF1的下调并严重损害细胞迁移。综上所述,我们的数据揭示了USP9X是SMURF1的重要调节蛋白,并表明去泛素酶和E3连接酶之间的关联可能是通过调节E3连接酶稳定性来控制细胞蛋白动力学的通用策略。

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