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Ufd2p synthesizes branched ubiquitin chains to promote the degradation of substrates modified with atypical chains

机译:Ufd2p合成支链遍在蛋白链以促进被非典型链修饰的底物降解

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摘要

Ubiquitination of a subset of proteins by ubiquitin chain elongation factors (E4), represented by Ufd2p in Saccharomyces cerevisiae, is a pivotal regulator for many biological processes. However, the mechanism of Ufd2p-mediated ubiquitination is largely unclear. Here, we show that Ufd2p catalyses K48-linked multi-monoubiquitination on K29-linked ubiquitin chains assembled by the ubiquitin ligase (Ufd4p), resulting in branched ubiquitin chains. This reaction depends on the interaction of K29-linked ubiquitin chains with two N-terminal loops of Ufd2p. Only following the addition of K48-linked ubiquitin to substrates modified with K29-linked ubiquitin chains, can the substrates be escorted to the proteasome for degradation. We demonstrate that this ubiquitin chain linkage switching reaction is essential for ERAD, oleic acid and acid pH resistance in yeast. Thus, our results suggest that Ufd2p functions by switching ubiquitin chain linkages to allow the degradation of proteins modified with a ubiquitin linkage, which is normally not targeted to the proteasome.
机译:在酿酒酵母中,由Ufd2p代表的泛素链延伸因子(E4)对蛋白质子集的泛素化作用是许多生物学过程的关键调节剂。但是,Ufd2p介导的泛素化的机制尚不清楚。在这里,我们显示Ufd2p催化由遍在蛋白连接酶(Ufd4p)组装的K29连接的遍在蛋白链上的K48链接的多单泛素化,从而导致分支遍在蛋白链。该反应取决于K29连接的泛素链与Ufd2p的两个N末端环的相互作用。只有在将K48连接的泛素添加到用K29连接的泛素链修饰的底物中后,才能将底物护送到蛋白酶体中进行降解。我们证明了这种遍在蛋白链键切换反应对于酵母中的ERAD,油酸和酸性pH抵抗至关重要。因此,我们的结果表明,Ufd2p通过转换遍在蛋白链连接而起作用,以允许被遍在蛋白连接修饰的蛋白质降解,而这通常不针对蛋白酶体。

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