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首页> 外文期刊>Virology >The adenovirus E4orf6 E3 ubiquitin ligase complex assembles in a novel fashion.
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The adenovirus E4orf6 E3 ubiquitin ligase complex assembles in a novel fashion.

机译:腺病毒E4orf6 E3泛素连接酶复合物以新颖的方式组装。

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The human adenovirus E4orf6 and E1B55K proteins are part of an E3 ubiquitin ligase complex that degrades p53, Mre11 and probably other cellular polypeptides. Our group has demonstrated previously that this complex contains Cul5, Rbx1 and Elongin B and C and is formed through interactions of these cellular proteins with E4orf6. Although this E4orf6 complex is similar in many ways to the cellular SCF and VBC E3 ligase complexes, our previous work indicated that unlike all known Cullin-containing complexes, E4orf6 contains two functional BC-box motifs that permit interactions with Elongin B and C. Here we show that a third BC-box exists that also appears to be fully functional. In addition, we attempted to identify a region in E4orf6 responsible for the specific selection of Cul5, which we show herein by knocking down Cul5 protein levels, is essential for p53 degradation. One sequence within E4orf6 shares limited homology with the 'Cul5 box motif', a recently identified sequence found to be responsible for selection of Cul5 in some cellular Cullin-containing E3 ligase complexes; however, genetic analysis indicated that this motif is not involved in Cullin binding or p53 degradation. Thus E4orf6 appears to utilize a different mechanism for Cul5 selection, and, both in terms of interactions with Elongin B and C and with Cul5, assembles the E3 ligase complex in a highly novel fashion.
机译:人腺病毒E4orf6和E1B55K蛋白是E3泛素连接酶复合物的一部分,该复合物降解p53,Mre11和其他可能的细胞多肽。我们的小组先前已证明该复合物包含Cul5,Rbx1和Elongin B和C,并且是通过这些细胞蛋白与E4orf6相互作用形成的。尽管此E4orf6复合物在许多方面与细胞SCF和VBC E3连接酶复合物相似,但我们先前的工作表明,与所有已知的含Cullin的复合物不同,E4orf6包含两个功能性BC-box基序,允许与Elongin B和C相互作用。我们表明存在第三个BC盒,该盒也似乎功能齐全。此外,我们试图鉴定E4orf6中负责Cul5特异性选择的区域,我们在这里通过降低Cul5蛋白水平来显示该区域对于p53降解至关重要。 E4orf6中的一个序列与“ Cul5盒基序”具有有限的同源性,“ Cul5盒基序”是最近发现的序列,负责在某些含Cullin的细胞E3连接酶复合物中选择Cul5。但是,遗传分析表明,该基序不参与Cullin结合或p53降解。因此,E4orf6似乎利用了不同的机制选择Cul5,并且在与Elongin B和C以及与Cul5的相互作用方面,都以高度新颖的方式组装了E3连接酶复合物。

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