Gödderz Daniela, Heinen Christian, Marchese Francesco P, Kurz Tilman, Acs Klàra, Dantuma Nico P
Department of Cell and Molecular Biology, Karolinska Institutet, S-17177 Stockholm, Sweden.
Sci Rep. 2015 Jan 5;5:7615. doi: 10.1038/srep07615.
Ubiquitin fusion degradation (UFD) substrates are delivered at the proteasome by a handover mechanism involving the ubiquitin-selective chaperone Cdc48 and the ubiquitin shuttle factor Rad23. Here, we show that introduction of a 20 amino acid peptide extension not only rendered degradation independent of Cdc48, in line with the model that this chaperone is involved in early unfolding events of tightly folded substrates, but at the same time relieved the need for efficient polyubiquitylation and the ubiquitin shuttle factor Rad23. Removal of the ubiquitylation sites in the N-terminal UFD signal made the degradation of this substrate strictly dependent on the peptide extension and also on Cdc48 and, importantly the presence of a functional ubiquitylation machinery. This suggests that the extension in the absence of N-terminal ubiquitylation sites is not properly positioned to engage the unfoldase machinery of the proteasome. Thus the need for efficient ubiquitylation and Cdc48 in facilitating proteasomal degradation are tightly linked but can be bypassed in the context of UFD substrates by the introduction of an unstructured extension. Our data suggest that polyubiquitin-binding complexes acting upstream of the proteasome, rather than the proteasome itself, can be primary determinants for the level of ubiquitylation required for protein degradation.
泛素融合降解(UFD)底物通过一种涉及泛素选择性伴侣蛋白Cdc48和泛素穿梭因子Rad23的交接机制被递送至蛋白酶体。在此,我们表明引入一段20个氨基酸的肽段延伸不仅使降解独立于Cdc48,这与该伴侣蛋白参与紧密折叠底物早期解折叠事件的模型相符,而且同时消除了对高效多聚泛素化和泛素穿梭因子Rad23的需求。去除N端UFD信号中的泛素化位点使得该底物的降解严格依赖于肽段延伸,也依赖于Cdc48,并且重要的是依赖于功能性泛素化机制的存在。这表明在没有N端泛素化位点的情况下,该延伸未能正确定位以与蛋白酶体的解折叠酶机制结合。因此,在促进蛋白酶体降解过程中对高效泛素化和Cdc48的需求紧密相连,但在UFD底物的情况下,通过引入无结构的延伸可以绕过这种需求。我们的数据表明,在蛋白酶体上游起作用的多聚泛素结合复合物,而非蛋白酶体本身,可能是蛋白质降解所需泛素化水平的主要决定因素。