Kohlmann Sonja, Schäfer Antje, Wolf Dieter H
Institut für Biochemie, Universität Stuttgart, Pfaffenwaldring 55, 70569 Stuttgart, Germany.
J Biol Chem. 2008 Jun 13;283(24):16374-83. doi: 10.1074/jbc.M801702200. Epub 2008 Apr 24.
To identify new components of the protein quality control and degradation pathway of the endoplasmic reticulum (ER), we performed a growth-based genome-wide screen of about 5000 viable deletion mutants of the yeast Saccharomyces cerevisiae. As substrates we used two misfolded ER membrane proteins, CTL* and Sec61-2L, chimeric derivatives of the classical ER degradation substrates CPY* and Sec61-2. Both substrates contain a cytosolic Leu2 protein fusion, and stabilization of these substrates in ER-associated degradation-deficient strains enables a restored growth of the transformed LEU2-deficient deletion mutants. We identified the strain deleted for the ubiquitin chain elongating ligase Hul5 among the mutant strains with a strong growth phenotype. Here we show that Hul5 is necessary for the degradation of two misfolded ER membrane substrates. Although the degradation of their N-terminal parts is Hul5-independent, the breakdown of their C-terminal fragments requires the ubiquitin chain elongating ligase activity of Hul5. In the absence of Hul5, a truncated form of CTLmyc remains to a large extent embedded in the ER membrane. Hul5 activity promotes the interaction of this truncated CTLmyc with the AAA-ATPase Cdc48, which is known to pull proteins out of the ER membrane. This study unravels the stepwise elimination of the ER membrane-localized CTLmyc substrate. First, N-terminal, lumenal CPY is transferred to the cytoplasm and degraded by the proteasome. Subsequently, the remaining C-terminal membrane-anchored part requires Hul5 for its effective extraction out of the endoplasmic reticulum and proteasomal degradation.
为了鉴定内质网(ER)蛋白质质量控制和降解途径的新成分,我们对酿酒酵母约5000个可行的缺失突变体进行了基于生长的全基因组筛选。我们使用两种错误折叠的ER膜蛋白CTL和Sec61-2L作为底物,它们是经典ER降解底物CPY和Sec61-2的嵌合衍生物。这两种底物都含有胞质Leu2蛋白融合体,并且这些底物在内质网相关降解缺陷菌株中的稳定化能够使转化的LEU2缺陷缺失突变体恢复生长。我们在具有强烈生长表型的突变菌株中鉴定出泛素链延伸连接酶Hul5缺失的菌株。在此我们表明,Hul5对于两种错误折叠的ER膜底物的降解是必需的。尽管它们N端部分的降解不依赖于Hul5,但其C端片段的分解需要Hul5的泛素链延伸连接酶活性。在没有Hul5的情况下,截短形式的CTLmyc在很大程度上仍嵌入ER膜中。Hul5的活性促进这种截短的CTLmyc与AAA-ATP酶Cdc48的相互作用,已知Cdc48能将蛋白质从ER膜中拉出。这项研究揭示了ER膜定位的CTLmyc底物的逐步清除过程。首先,N端的腔内CPY转移到细胞质中并被蛋白酶体降解。随后,剩余的C端膜锚定部分需要Hul5才能有效地从内质网中提取出来并进行蛋白酶体降解。