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Rbx1在VBC-Cul2泛素连接酶复合物中的多种作用。

Multiple roles of Rbx1 in the VBC-Cul2 ubiquitin ligase complex.

作者信息

Megumi Yuzuru, Miyauchi Yasuhiro, Sakurai Hitomi, Nobeyama Hiroyuki, Lorick Kevin, Nakamura Eijiro, Chiba Tomoki, Tanaka Keiji, Weissman Allan M, Kirisako Takayoshi, Ogawa Osamu, Iwai Kazuhiro

机构信息

Department of Molecular Cell Biology, Graduate School of Medicine, Osaka City University, 1-4-3 Asahi-Machi, Abeno-Ku, Osaka 545-8585, Japan.

出版信息

Genes Cells. 2005 Jul;10(7):679-91. doi: 10.1111/j.1365-2443.2005.00869.x.

Abstract

The importance of the ubiquitin system largely depends on ubiquitin ligases, E3s, as they determine the specificity of the system. Rbx1/ROC1/Hrt1, a RING finger protein, functions as an important component of the cullin-containing SCF and VBC-Cul2 ligases. Modification of cullins by NEDD8 (NEDDylation), has been shown to be essential for the E3 activity of both SCF and VBC-Cul2, and it was suggested that Rbx1 acts as the E3 for cullin NEDDylation. RING finger is composed of eight cysteine and histidine residues that bind to zinc ions. Rbx1 is a highly evolutionarily conserved protein; however, the eighth coordination residue in its RING finger is aspartate (D97) rather than cysteine. Substitution of D97 with each of the other 19 amino acids demonstrates that aspartate is superior to cysteine in cullin NEDDylation. Interestingly, however, different D97 mutants demonstrate different activities towards 6 cullins tested. Importantly, we were able to discriminate between the NEDDylating activity of Rbx1 and its involvement in the ubiquitylation reaction within the context of VBC-Cul2. Moreover, while Rbx1 is not involved in governing the stability of SCF, Rbx1 mutants destabilize VBC-Cul2. Taken together, these results indicate that various mechanisms regulate both the activities and the stability of cullin-based ligases.

摘要

泛素系统的重要性很大程度上取决于泛素连接酶(E3),因为它们决定了该系统的特异性。Rbx1/ROC1/Hrt1是一种环指蛋白,作为含cullin的SCF和VBC-Cul2连接酶的重要组成部分发挥作用。NEDD8对cullin的修饰(NEDDylation)已被证明对SCF和VBC-Cul2的E3活性至关重要,并且有人提出Rbx1作为cullin NEDDylation的E3。环指由与锌离子结合的八个半胱氨酸和组氨酸残基组成。Rbx1是一种高度进化保守的蛋白质;然而,其环指中的第八个配位残基是天冬氨酸(D97)而不是半胱氨酸。用其他19种氨基酸中的每一种取代D97表明,在cullin NEDDylation中,天冬氨酸优于半胱氨酸。然而,有趣的是,不同的D97突变体对所测试的6种cullin表现出不同的活性。重要的是,我们能够区分Rbx1的NEDDylating活性及其在VBC-Cul2背景下参与泛素化反应的情况。此外,虽然Rbx1不参与调节SCF的稳定性,但Rbx1突变体会使VBC-Cul2不稳定。综上所述,这些结果表明各种机制调节基于cullin的连接酶的活性和稳定性。

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