Xie Youming, Varshavsky Alexander
Division of Biology, California Institute of Technology, Pasadena, California 91125, USA.
Nat Cell Biol. 2002 Dec;4(12):1003-7. doi: 10.1038/ncb889.
The ubiquitin system recognizes degradation signals of protein substrates through E3-E2 ubiquitin ligases, which produce a substrate-linked multi-ubiquitin chain. Ubiquitinated substrates are degraded by the 26S proteasome, which consists of the 20S protease and two 19S particles. We previously showed that UBR1 and UFD4, two E3 ligases of the yeast Saccharomyces cerevisiae, interact with specific proteasomal subunits. Here we advance this analysis for UFD4 and show that it interacts with RPT4 and RPT6, two subunits of the 19S particle. The 201-residue amino-terminal region of UFD4 is essential for its binding to RPT4 and RPT6. UFD4(DeltaN), which lacks this N-terminal region, adds ubiquitin to test substrates with apparently wild-type activity, but is impaired in conferring short half-lives on these substrates. We propose that interaction of a targeted substrate with the 26S proteasome involves contacts of specific proteasomal subunits with the substrate-bound ubiquitin ligase, with the substrate-linked multi-ubiquitin chain and with the substrate itself. This multiple-site binding may function to slow down dissociation of the substrate from the proteasome and to facilitate the unfolding of substrate through ATP-dependent movements of the chaperone subunits of the 19S particle.
泛素系统通过E3-E2泛素连接酶识别蛋白质底物的降解信号,该酶产生与底物相连的多泛素链。泛素化的底物被26S蛋白酶体降解,26S蛋白酶体由20S蛋白酶和两个19S颗粒组成。我们之前表明,酿酒酵母的两种E3连接酶UBR1和UFD4与特定的蛋白酶体亚基相互作用。在这里,我们对UFD4进行了进一步分析,发现它与19S颗粒的两个亚基RPT4和RPT6相互作用。UFD4的201个残基的氨基末端区域对于其与RPT4和RPT6的结合至关重要。缺少该N末端区域的UFD4(DeltaN)能将泛素添加到具有明显野生型活性的测试底物上,但在赋予这些底物短半衰期方面存在缺陷。我们提出,靶向底物与26S蛋白酶体的相互作用涉及特定蛋白酶体亚基与底物结合的泛素连接酶、与底物相连的多泛素链以及底物本身的接触。这种多位点结合可能起到减缓底物从蛋白酶体解离的作用,并通过19S颗粒的伴侣亚基的ATP依赖性运动促进底物的展开。