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Rsp5p的WW结构域2和3在与Spt23p和Mga2p的LPKY基序结合中发挥重叠作用。

WW domains 2 and 3 of Rsp5p play overlapping roles in binding to the LPKY motif of Spt23p and Mga2p.

作者信息

Bhattacharya Sabyasachi, Zoladek Teresa, Haines Dale S

机构信息

Fels Institute for Cancer Research and Molecular Biology and Department of Biochemistry, Temple University School of Medicine, Philadelphia, PA 19140, United States.

出版信息

Int J Biochem Cell Biol. 2008;40(1):147-57. doi: 10.1016/j.biocel.2007.07.007. Epub 2007 Jul 22.

Abstract

Rsp5p of Saccharomyces cerevisiae is a member of the C2-WW-HECT family of ubiquitin ligases and it interacts with targets via its WW domains. Spt23p and Mga2p are Rsp5p substrates and Rsp5p activates the OLE1 inducing functions of these membrane-localized transcription factors by ubiquitination. Although it is known that Rsp5p binds Mga2p and Spt23p via an imperfect WW domain-binding site (LPKY) that is located within the carboxy-terminal domain of the proteins, it remains unclear which WW domains mediate binding. We show that Rsp5p mutants harboring mutations in single WW domains are Spt23p/Mga2p binding and ubiquitination proficient. This is also the case for WW domains 1/2 and WW domains 1/3 mutants. However, disrupting WW domains 2 and 3 abrogates a physical and functional interaction with substrates in vitro and in cells. We also show that abrogation of WW domains 2 and 3 eliminates the activity of an Rsp5p dominant-negative mutant and an rsp5 WW domain 2/3 mutant is unable to rescue the proliferative defects of rsp5 Delta cells. Interestingly, while rsp5 Delta cells are able to grow on oleic acid containing YPD media, they as well as those transformed with the WW domain 2/3 mutant are unable to proliferate on oleic acid containing synthetic drop-out media. We conclude from these studies that WW domains 2 and 3 of Rsp5p play overlapping roles in binding to the LPKY site on Spt23p and Mga2p. Also, we propose that WW domains 2 and 3 perform yet to be defined essential function(s) outside of the OLE1 pathway when cells are grown in nutrient restrictive media.

摘要

酿酒酵母的Rsp5p是泛素连接酶C2-WW-HECT家族的成员,它通过其WW结构域与靶标相互作用。Spt23p和Mga2p是Rsp5p的底物,Rsp5p通过泛素化激活这些膜定位转录因子的OLE1诱导功能。尽管已知Rsp5p通过位于蛋白质羧基末端结构域内的不完美WW结构域结合位点(LPKY)与Mga2p和Spt23p结合,但尚不清楚哪些WW结构域介导这种结合。我们发现,在单个WW结构域中发生突变的Rsp5p突变体仍能与Spt23p/Mga2p结合并进行泛素化。WW结构域1/2和WW结构域1/3突变体也是如此。然而,破坏WW结构域2和3会消除其在体外和细胞内与底物的物理和功能相互作用。我们还发现,去除WW结构域2和3会消除Rsp5p显性负性突变体的活性,并且rsp5 WW结构域2/3突变体无法挽救rsp5Δ细胞的增殖缺陷。有趣的是,虽然rsp5Δ细胞能够在含有油酸的YPD培养基上生长,但它们以及用WW结构域2/3突变体转化的细胞都无法在含有油酸的合成缺陷培养基上增殖。我们从这些研究中得出结论,Rsp5p的WW结构域2和3在与Spt23p和Mga2p上的LPKY位点结合中发挥重叠作用。此外,我们提出,当细胞在营养限制培养基中生长时,WW结构域2和3在OLE1途径之外还执行尚未确定的重要功能。

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