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酵母外切核酸酶 Rrp6 与其相关辅助因子 Rrp47 的组装发生在核内,这对于 Rrp47 的可控表达至关重要。

Assembly of the yeast exoribonuclease Rrp6 with its associated cofactor Rrp47 occurs in the nucleus and is critical for the controlled expression of Rrp47.

机构信息

Molecular Biology and Biotechnology Department, University of Sheffield, Firth Court, Western Bank, Sheffield S10 2TN, United Kingdom.

出版信息

J Biol Chem. 2013 May 31;288(22):15959-70. doi: 10.1074/jbc.M112.445759. Epub 2013 Apr 11.

Abstract

Rrp6 is a key catalytic subunit of the nuclear RNA exosome that plays a pivotal role in the processing, degradation, and quality control of a wide range of cellular RNAs. Here we report our findings on the assembly of the complex involving Rrp6 and its associated protein Rrp47, which is required for many Rrp6-mediated RNA processes. Recombinant Rrp47 is expressed as a non-globular homodimer. Analysis of the purified recombinant Rrp6·Rrp47 complex revealed a heterodimer, suggesting that Rrp47 undergoes a structural reconfiguration upon interaction with Rrp6. Studies using GFP fusion proteins show that Rrp6 and Rrp47 are localized to the yeast cell nucleus independently of one another. Consistent with this data, Rrp6, but not Rrp47, is found associated with the nuclear import adaptor protein Srp1. We show that the interaction with Rrp6 is critical for Rrp47 stability in vivo; in the absence of Rrp6, newly synthesized Rrp47 is rapidly degraded in a proteasome-dependent manner. These data resolve independent nuclear import routes for Rrp6 and Rrp47, reveal a structural reorganization of Rrp47 upon its interaction with Rrp6, and demonstrate a proteasome-dependent mechanism that efficiently suppresses the expression of Rrp47 in the absence of Rrp6.

摘要

Rrp6 是核 RNA 外切体的关键催化亚基,在多种细胞 RNA 的加工、降解和质量控制中发挥着关键作用。在这里,我们报告了我们在涉及 Rrp6 及其相关蛋白 Rrp47 的复合物组装方面的发现,该复合物是许多 Rrp6 介导的 RNA 过程所必需的。重组 Rrp47 作为非球形同源二聚体表达。对纯化的重组 Rrp6·Rrp47 复合物的分析表明存在异源二聚体,这表明 Rrp47 在与 Rrp6 相互作用时发生了结构重排。使用 GFP 融合蛋白的研究表明,Rrp6 和 Rrp47 彼此独立地定位于酵母细胞核中。与这些数据一致,Rrp6 而不是 Rrp47 与核输入衔接蛋白 Srp1 相关联。我们表明,与 Rrp6 的相互作用对于 Rrp47 在体内的稳定性至关重要;在没有 Rrp6 的情况下,新合成的 Rrp47 以依赖蛋白酶体的方式迅速降解。这些数据确定了 Rrp6 和 Rrp47 的独立核输入途径,揭示了 Rrp47 在与 Rrp6 相互作用时的结构重排,并证明了一种依赖蛋白酶体的机制,可有效地抑制在没有 Rrp6 的情况下 Rrp47 的表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8c8/3668751/6d0c6b553daf/zbc0251350340001.jpg

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