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小鼠胚胎多能干细胞中Wwp2介导的RNA聚合酶II大亚基的泛素化作用

Wwp2-mediated ubiquitination of the RNA polymerase II large subunit in mouse embryonic pluripotent stem cells.

作者信息

Li Hui, Zhang Zhihong, Wang Beibei, Zhang Junmei, Zhao Yingming, Jin Ying

机构信息

Key Laboratory of Stem Cell Biology, Institute of Health Sciences, 225 South Chongqing Road, Shanghai 200025, China.

出版信息

Mol Cell Biol. 2007 Aug;27(15):5296-305. doi: 10.1128/MCB.01667-06. Epub 2007 May 25.

Abstract

Ubiquitination and the degradation of the large subunit of RNA polymerase II, Rpb1, is not only involved in DNA damage-induced arrest but also in other transcription-obstructing events. However, the ubiquitin ligases responsible for DNA damage-independent processes in mammalian cells remain to be identified. Here, we identified Wwp2, a mouse HECT domain ubiquitin E3 ligase, as a novel ubiquitin ligase of Rpb1. We found that Wwp2 specifically interacted with mouse Rpb1 and targeted it for ubiquitination both in vitro and in vivo. Interestingly, the interaction with and ubiquitination of Rpb1 was dependent neither on its phosphorylation state nor on DNA damage. However, the enzymatic activity of Wwp2 was absolutely required for its ubiquitin modification of Rpb1. Furthermore, our study indicates that the interaction between Wwp2 and Rpb1 was mediated through WW domain of Wwp2 and C-terminal domain of Rpb1, respectively. Strikingly, downregulation of Wwp2 expression compromised Rpb1 ubiquitination and elevated its intracellular steady-state protein level significantly. Importantly, we identified six lysine residues in the C-terminal domain of Rpb1 as ubiquitin acceptor sites mediated by Wwp2. These results indicate that Wwp2 plays an important role in regulating expression of Rpb1 in normal physiological conditions.

摘要

泛素化以及RNA聚合酶II的大亚基Rpb1的降解不仅参与DNA损伤诱导的停滞,还参与其他转录阻碍事件。然而,负责哺乳动物细胞中与DNA损伤无关过程的泛素连接酶仍有待确定。在此,我们鉴定出小鼠HECT结构域泛素E3连接酶Wwp2是Rpb1的一种新型泛素连接酶。我们发现Wwp2在体外和体内均与小鼠Rpb1特异性相互作用,并使其发生泛素化。有趣的是,Rpb1与Wwp2的相互作用及其泛素化既不依赖于其磷酸化状态,也不依赖于DNA损伤。然而,Wwp2的酶活性对于其对Rpb1的泛素修饰是绝对必需的。此外,我们的研究表明,Wwp2与Rpb1之间的相互作用分别通过Wwp2的WW结构域和Rpb1的C末端结构域介导。引人注目的是,Wwp2表达的下调损害了Rpb1的泛素化,并显著提高了其细胞内稳态蛋白水平。重要的是,我们确定Rpb1 C末端结构域中的六个赖氨酸残基是由Wwp2介导的泛素接受位点。这些结果表明,Wwp2在正常生理条件下对Rpb1的表达调节中起重要作用。

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