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Nrf1 介导的蛋白酶体转录调控需要功能性 TIP60 复合物。

Nrf1-mediated transcriptional regulation of the proteasome requires a functional TIP60 complex.

机构信息

From the Department of Pathology and Massey Cancer Center, Virginia Commonwealth University, Richmond, Virginia 23298.

From the Department of Pathology and Massey Cancer Center, Virginia Commonwealth University, Richmond, Virginia 23298

出版信息

J Biol Chem. 2019 Feb 8;294(6):2036-2045. doi: 10.1074/jbc.RA118.006290. Epub 2018 Dec 17.

Abstract

Inhibition of the proteasome leads to proteotoxic stress, which is characterized by the buildup of ubiquitinated proteins that cannot be degraded properly. The transcription factor Nrf1 (also called NFE2L1) counteracts proteotoxic stress by inducing transcription of proteasome subunit genes, resulting in the restoration of proteasome activity. Further understanding of the Nrf1 pathway is therefore of interest in both neurodegeneration, where proteasome activity could be enhanced, and cancer, where suppression of this pathway could potentiate the cell-killing effect mediated by proteasome inhibitor drugs. Here, to identify novel regulators of Nrf1, we performed an RNAi screen in an engineered cell line, reporting on Nrf1 transcriptional activity. In addition to validating known regulators, we discovered that the AAA+ ATPase RUVBL1 is necessary for Nrf1's transcriptional activity. Given that RUVBL1 is part of different multisubunit complexes that play key roles in transcription, we dissected this phenomenon further and found that the TIP60 chromatin-regulatory complex is essential for Nrf1-dependent transcription of proteasome genes. Consistent with these observations, Nrf1, RUVBL1, and TIP60 proteins were co-recruited to the promoter regions of proteasome genes after proteasome inhibitor treatments. More importantly, depletion of RUVBL1 or TIP60 in various cancer cells sensitized them to cell death induced by proteasome inhibition. Overall, our study provides a framework for manipulating the TIP60-Nrf1 axis to alter proteasome function in various human diseases, including cancer.

摘要

蛋白酶体的抑制会导致蛋白毒性应激,其特征是积累不能正常降解的泛素化蛋白质。转录因子 Nrf1(也称为 NFE2L1)通过诱导蛋白酶体亚基基因的转录来对抗蛋白毒性应激,从而恢复蛋白酶体的活性。因此,进一步了解 Nrf1 途径不仅对神经退行性疾病(其中可以增强蛋白酶体活性),而且对癌症(抑制该途径可以增强蛋白酶体抑制剂药物介导的细胞杀伤作用)都具有重要意义。在这里,为了鉴定 Nrf1 的新调节剂,我们在工程细胞系中进行了 RNAi 筛选,报告了 Nrf1 的转录活性。除了验证已知的调节剂外,我们还发现 AAA+ATP 酶 RUVBL1 是 Nrf1 转录活性所必需的。鉴于 RUVBL1 是参与转录的不同多亚基复合物的一部分,我们进一步剖析了这一现象,发现 TIP60 染色质调节复合物对于 Nrf1 依赖的蛋白酶体基因转录是必不可少的。与这些观察结果一致,蛋白酶体抑制剂处理后,Nrf1、RUVBL1 和 TIP60 蛋白被共同募集到蛋白酶体基因的启动子区域。更重要的是,在各种癌细胞中耗尽 RUVBL1 或 TIP60 会使它们对蛋白酶体抑制诱导的细胞死亡敏感。总的来说,我们的研究为操纵 TIP60-Nrf1 轴提供了一个框架,以改变各种人类疾病(包括癌症)中的蛋白酶体功能。

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