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Bul蛋白,一类泛素连接酶调节蛋白的非冗余拮抗家族。

Bul proteins, a nonredundant, antagonistic family of ubiquitin ligase regulatory proteins.

作者信息

Novoselova Tatiana V, Zahira Kiran, Rose Ruth-Sarah, Sullivan James A

机构信息

School of Biological and Chemical Sciences, Queen Mary, University of London, London, United Kingdom.

出版信息

Eukaryot Cell. 2012 Apr;11(4):463-70. doi: 10.1128/EC.00009-12. Epub 2012 Feb 3.

Abstract

Like other Nedd4 ligases, Saccharomyces cerevisiae E3 Rsp5p utilizes adaptor proteins to interact with some substrates. Previous studies have indentified Bul1p and Bul2p as adaptor proteins that facilitate the ligase-substrate interaction. Here, we show the identification of a third member of the Bul family, Bul3p, the product of two adjacent open reading frames separated by a stop codon that undergoes readthrough translation. Combinatorial analysis of BUL gene deletions reveals that they regulate some, but not all, of the cellular pathways known to involve Rsp5p. Surprisingly, we find that Bul proteins can act antagonistically to regulate the same ubiquitin-dependent process, and the nature of this antagonistic activity varies between different substrates. We further show, using in vitro ubiquitination assays, that the Bul proteins have different specificities for WW domains and that the two forms of Bul3p interact differently with Rsp5p, potentially leading to alternate functional outcomes. These data introduce a new level of complexity into the regulatory interactions that take place between Rsp5p and its adaptors and substrates and suggest a more critical role for the Bul family of proteins in controlling adaptor-mediated ubiquitination.

摘要

与其他Nedd4连接酶一样,酿酒酵母E3 Rsp5p利用衔接蛋白与一些底物相互作用。先前的研究已确定Bul1p和Bul2p为促进连接酶 - 底物相互作用的衔接蛋白。在此,我们展示了Bul家族的第三个成员Bul3p的鉴定,它是由一个终止密码子分隔的两个相邻开放阅读框的产物,该终止密码子会发生通读翻译。对BUL基因缺失的组合分析表明,它们调节一些但并非所有已知涉及Rsp5p的细胞途径。令人惊讶的是,我们发现Bul蛋白可以起到拮抗作用来调节相同的泛素依赖性过程,并且这种拮抗活性的性质在不同底物之间有所不同。我们进一步通过体外泛素化实验表明,Bul蛋白对WW结构域具有不同的特异性,并且两种形式的Bul3p与Rsp5p的相互作用不同,这可能导致不同的功能结果。这些数据为Rsp5p与其衔接蛋白和底物之间发生的调节相互作用引入了新的复杂层面,并表明Bul蛋白家族在控制衔接蛋白介导的泛素化中发挥更关键的作用。

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