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RNF11将E3连接酶SMURF2隔离在细胞膜上,可拮抗SMAD7对转化生长因子β信号传导的下调作用。

RNF11 sequestration of the E3 ligase SMURF2 on membranes antagonizes SMAD7 down-regulation of transforming growth factor β signaling.

作者信息

Malonis Ryan J, Fu Wenxiang, Jelcic Mark J, Thompson Marae, Canter Brian S, Tsikitis Mary, Esteva Francisco J, Sánchez Irma

机构信息

From the Laura and Isaac Perlmutter Cancer Center at NYU Langone, New York, New York 10016.

the Albert Einstein School of Medicine, Bronx, New York 10461.

出版信息

J Biol Chem. 2017 May 5;292(18):7435-7451. doi: 10.1074/jbc.M117.783662. Epub 2017 Mar 14.

Abstract

The activity of the E3 ligase, SMURF2, is antagonized by an intramolecular, autoinhibitory interaction between its C2 and Hect domains. Relief of SMURF2 autoinhibition is induced by TGFβ and is mediated by the inhibitory SMAD, SMAD7. In a proteomic screen for endomembrane interactants of the RING-domain E3 ligase, RNF11, we identified SMURF2, among a cohort of Hect E3 ligases previously implicated in TGFβ signaling. Reconstitution of the SMURF2·RNF11 complex unexpectedly revealed robust SMURF2 E3 ligase activity, with biochemical properties previously restricted to the SMURF2·SMAD7 complex. Using binding assays, we find that RNF11 can directly compete with SMAD7 for SMURF2 and that binding is mutually exclusive and dependent on a proline-rich domain. Moreover, we found that co-expression of RNF11 and SMURF2 dramatically reduced SMURF2 ubiquitylation in the cell. This effect is strictly dependent on complex formation and sorting determinants that regulate the association of RNF11 with membranes. RNF11 is overexpressed in certain tumors, and, importantly, we found that depletion of this protein down-regulated gene expression of several TGFβ-responsive genes, dampened cell proliferation, and dramatically reduced cell migration in response to TGFβ. Our data suggest for the first time that the choice of binding partners for SMURF2 can sustain or repress TGFβ signaling, and RNF11 may promote TGFβ-induced cell migration.

摘要

E3 连接酶 SMURF2 的活性受到其 C2 结构域和 Hect 结构域之间分子内自抑制相互作用的拮抗。TGFβ 可诱导 SMURF2 自抑制的解除,且由抑制性 SMAD 即 SMAD7 介导。在一项针对 RING 结构域 E3 连接酶 RNF11 的内膜相互作用蛋白的蛋白质组学筛选中,我们在先前涉及 TGFβ 信号传导的一组 Hect E3 连接酶中鉴定出了 SMURF2。SMURF2·RNF11 复合物的重组意外地揭示了强大的 SMURF2 E3 连接酶活性,其生化特性先前仅限于 SMURF2·SMAD7 复合物。通过结合实验,我们发现 RNF11 可以直接与 SMAD7 竞争结合 SMURF2,且这种结合是相互排斥的,并且依赖于富含脯氨酸的结构域。此外,我们发现 RNF11 和 SMURF2 的共表达显著降低了细胞中 SMURF2 的泛素化。这种效应严格依赖于调节 RNF11 与膜结合的复合物形成和分选决定因素。RNF11 在某些肿瘤中过表达,重要的是,我们发现该蛋白的缺失下调了几个 TGFβ 反应基因的基因表达,抑制了细胞增殖,并显著降低了对 TGFβ 的细胞迁移。我们的数据首次表明,SMURF2 结合伙伴的选择可以维持或抑制 TGFβ 信号传导,并且 RNF11 可能促进 TGFβ 诱导的细胞迁移。

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