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不同血清型人腺病毒 E4orf6/E1B55K E3 连接酶复合物中 E1B55K 的作用。

Role of E1B55K in E4orf6/E1B55K E3 ligase complexes formed by different human adenovirus serotypes.

机构信息

Department of Biochemistry, McGill University, Montreal, Quebec, Canada.

出版信息

J Virol. 2013 Jun;87(11):6232-45. doi: 10.1128/JVI.00384-13. Epub 2013 Mar 27.

Abstract

The E4orf6 protein of serotypes representing all human adenovirus species forms Cullin-based E3 ubiquitin ligase complexes that facilitate virus infection by inducing degradation of cellular proteins that impede efficient viral replication. This complex also includes the viral E1B55K product believed to bind and introduce substrates for ubiquitination. Heterogeneity in the composition of these ligases exists, as some serotypes form Cul5-based complexes whereas others utilize Cul2. Significant variations in substrate specificities also exist among serotypes, as some degrade certain substrates very efficiently whereas others induce more modest or little degradation. As E1B55K is believed to function as the substrate acquisition component of the ligase, we undertook studies to compare the ability of representative E1B55K proteins to bind substrates with the efficacy of degradation by their respective E4orf6-based ligases. Interestingly, although efficient degradation in some cases corresponded to the ability of E1B55K to bind to or relocalize substrates, there were several examples of substrates that bound efficiently to E1B55K but were not degraded and others in which substrates were degraded even though binding to E1B55K was low or undetectable. These results suggest that transient interactions with E1B55K may be sufficient for efficient substrate degradation and that binding alone is not sufficient, implying that the orientation of the substrate in the ligase complex is probably crucial. Nevertheless, we found that the substrate specificity of certain E4orf6-based ligases could be altered through the formation of hybrid complexes containing E1B55K from another serotype, thus confirming identification of E1B55K as the substrate acquisition component of the complex.

摘要

所有人类腺病毒血清型的 E4orf6 蛋白均形成基于 Cullin 的 E3 泛素连接酶复合物,通过诱导阻碍病毒有效复制的细胞蛋白降解,促进病毒感染。该复合物还包括病毒 E1B55K 产物,其被认为可结合并引入泛素化的底物。这些连接酶的组成存在异质性,因为一些血清型形成基于 Cul5 的复合物,而其他血清型则利用 Cul2。不同血清型之间的底物特异性也存在显著差异,因为一些血清型可非常有效地降解某些底物,而其他血清型则诱导适度或很少的降解。由于 E1B55K 被认为是连接酶的底物获取成分,因此我们进行了研究以比较代表性的 E1B55K 蛋白结合底物的能力及其各自的 E4orf6 基连接酶的降解效率。有趣的是,尽管在某些情况下有效的降解与 E1B55K 结合或重新定位底物的能力相对应,但有几个例子表明,尽管某些底物与 E1B55K 有效结合,但并未降解,而其他底物即使与 E1B55K 的结合较低或无法检测到,也会被降解。这些结果表明,与 E1B55K 的瞬时相互作用可能足以有效地降解底物,而仅结合并不足以降解底物,这意味着底物在连接酶复合物中的取向可能是关键。然而,我们发现,通过形成包含来自另一种血清型的 E1B55K 的杂交复合物,某些基于 E4orf6 的连接酶的底物特异性可以改变,从而证实 E1B55K 是复合物的底物获取成分。

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