Sato Brian K, Schulz Daniel, Do Phong H, Hampton Randolph Y
Section of Cell and Developmental Biology, Division of Biological Sciences, University of California-San Diego, 9500 Gilman Drive, La Jolla, CA 92093, USA.
Mol Cell. 2009 Apr 24;34(2):212-22. doi: 10.1016/j.molcel.2009.03.010.
Quality control pathways such as ER-associated degradation (ERAD) employ a small number of factors to specifically recognize a wide variety of protein substrates. Delineating the mechanisms of substrate selection is a principle goal in studying quality control. The Hrd1p ubiquitin ligase mediates ERAD of numerous misfolded proteins including soluble, lumenal ERAD-L and membrane-anchored ERAD-M substrates. We tested if the Hrd1p multispanning membrane domain was involved in ERAD-M specificity. In this work, we have identified site-directed membrane domain mutants of Hrd1p impaired only for ERAD-M and normal for ERAD-L. Furthermore, other Hrd1p variants were specifically deficient for degradation of individual ERAD-M substrates. Thus, the Hrd1p transmembrane region bears determinants of high specificity in the ERAD-M pathway. From in vitro and interaction studies, we suggest a model in which the Hrd1p membrane domain employs intramembrane residues to evaluate substrate misfolding, leading to selective ubiquitination of appropriate ERAD-M clients.
诸如内质网相关降解(ERAD)之类的质量控制途径利用少数因子来特异性识别各种各样的蛋白质底物。阐明底物选择机制是质量控制研究的一个主要目标。Hrd1p泛素连接酶介导众多错误折叠蛋白的ERAD,包括可溶性的内质网腔ERAD-L底物和膜锚定的ERAD-M底物。我们测试了Hrd1p的多跨膜结构域是否参与ERAD-M特异性。在这项工作中,我们鉴定出了仅在ERAD-M方面受损而在ERAD-L方面正常的Hrd1p定点膜结构域突变体。此外,其他Hrd1p变体在降解单个ERAD-M底物方面存在特异性缺陷。因此,Hrd1p跨膜区域在ERAD-M途径中具有高特异性的决定因素。从体外和相互作用研究中,我们提出了一个模型,其中Hrd1p膜结构域利用膜内残基来评估底物的错误折叠,从而导致适当的ERAD-M底物被选择性泛素化。