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将 RING 结构域蛋白 MdmX 转变为具有活性的泛素蛋白连接酶。

Turning the RING domain protein MdmX into an active ubiquitin-protein ligase.

机构信息

From the Department of Biology and Konstanz Research School Chemical Biology, 78457 Konstanz, Germany.

Proteomics Facility, University of Konstanz, 78457 Konstanz, Germany.

出版信息

J Biol Chem. 2010 Oct 22;285(43):33065-33072. doi: 10.1074/jbc.M110.115113. Epub 2010 Aug 12.

Abstract

The related RING domain proteins MdmX and Mdm2 are best known for their role as negative regulators of the tumor suppressor p53. However, although Mdm2 functions as a ubiquitin ligase for p53, MdmX does not have appreciable ubiquitin ligase activity. In this study, we performed a mutational analysis of the RING domain of MdmX, and we identified two distinct regions that, when replaced by the respective regions of Mdm2, turn MdmX into an active ubiquitin ligase for p53. Mdm2 and MdmX form homodimers as well as heterodimers with each other. One of the regions identified localizes to the dimer interface indicating that subtle conformational changes in this region either affect dimer stability and/or the interaction with the ubiquitin-conjugating enzyme UbcH5b. The second region contains the cryptic nucleolar localization signal of Mdm2 but is also assumed to be involved in the interaction with UbcH5b. Here, we show that this region has a significant impact on the ability of respective MdmX mutants to functionally interact with UbcH5b in vitro supporting the notion that this region serves two distinct functional purposes, nucleolar localization and ubiquitin ligase activity. Finally, evidence is provided to suggest that the RING domain of Mdm2 not only binds to UbcH5b but also acts as an allosteric activator of UbcH5b.

摘要

相关的 RING 结构域蛋白 MdmX 和 Mdm2 最著名的作用是作为肿瘤抑制因子 p53 的负调控因子。然而,尽管 Mdm2 作为 p53 的泛素连接酶发挥作用,但 MdmX 没有明显的泛素连接酶活性。在这项研究中,我们对 MdmX 的 RING 结构域进行了突变分析,确定了两个不同的区域,当这两个区域被 Mdm2 的相应区域取代时,MdmX 就变成了 p53 的活性泛素连接酶。Mdm2 和 MdmX 形成同源二聚体和异源二聚体。其中一个确定的区域定位于二聚体界面,表明该区域的细微构象变化要么影响二聚体稳定性,要么影响与泛素结合酶 UbcH5b 的相互作用。第二个区域包含 Mdm2 的隐蔽核仁定位信号,但也假定参与与 UbcH5b 的相互作用。在这里,我们表明该区域对各自的 MdmX 突变体与 UbcH5b 在体外功能性相互作用的能力有重大影响,支持了该区域具有两个不同功能目的的观点,即核仁定位和泛素连接酶活性。最后,有证据表明,Mdm2 的 RING 结构域不仅与 UbcH5b 结合,而且还作为 UbcH5b 的别构激活剂发挥作用。

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