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K63 泛素化通过引发支化泛素链触发蛋白酶体降解。

K63 ubiquitylation triggers proteasomal degradation by seeding branched ubiquitin chains.

机构信息

Laboratory of Protein Metabolism, Tokyo Metropolitan Institute of Medical Science, Tokyo 156-8506, Japan

Laboratory of Protein Metabolism, Tokyo Metropolitan Institute of Medical Science, Tokyo 156-8506, Japan.

出版信息

Proc Natl Acad Sci U S A. 2018 Feb 13;115(7):E1401-E1408. doi: 10.1073/pnas.1716673115. Epub 2018 Jan 29.

Abstract

Different polyubiquitin chain linkages direct substrates toward distinct cellular pathways. K63-linked ubiquitylation is known to regulate proteasome-independent events such as signal transduction, but its function in the context of heterogeneous ubiquitin chains remains unclear. Here, we report that K63 ubiquitylation plays a critical role in proteasome-mediated substrate degradation by serving as a "seed" for K48/K63 branched ubiquitin chains. Quantitative analysis revealed that K48/K63 branched linkages preferentially associate with proteasomes in cells. We found that ITCH-dependent K63 ubiquitylation of the proapoptotic regulator TXNIP triggered subsequent assembly of K48/K63 branched chains by recruiting ubiquitin-interacting ligases such as UBR5, leading to TXNIP degradation. These results reveal a role for K63 chains as a substrate-specific mark for proteasomal degradation involved in regulating cell fate. Our findings provide insight into how cellular interpretation of the ubiquitin code is altered by combinations of ubiquitin linkages.

摘要

不同的多聚泛素链连接将底物导向不同的细胞途径。已知 K63 连接的泛素化可调节蛋白酶体非依赖性事件,如信号转导,但在异质泛素链的背景下,其功能仍不清楚。在这里,我们报告说,K63 泛素化通过充当 K48/K63 分支泛素链的“种子”,在蛋白酶体介导的底物降解中发挥关键作用。定量分析显示,K48/K63 分支连接在细胞中优先与蛋白酶体结合。我们发现,促凋亡调节剂 TXNIP 的 ITCH 依赖性 K63 泛素化通过招募泛素相互作用连接酶(如 UBR5)触发随后的 K48/K63 分支链的组装,导致 TXNIP 降解。这些结果揭示了 K63 链作为参与调节细胞命运的蛋白酶体降解的底物特异性标记的作用。我们的发现提供了深入了解细胞如何通过泛素连接的组合改变对泛素密码的解释。

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