Haynes Cole M, Caldwell Sabrina, Cooper Antony A
University of Missouri-Kansas City, Division of Cell Biology and Biophysics, School of Biological Sciences, Kansas City, MO 64110, USA.
J Cell Biol. 2002 Jul 8;158(1):91-101. doi: 10.1083/jcb.200201053.
We have identified a new pathway of ER-associated degradation in Saccharomyces cerevisiae that functions separately from the HRD/DER pathway comprised of Hrd1p, Hrd3p, Der1p, and Ubc7p. This pathway, termed Hrd1p independent-proteolysis (HIP), is capable of recognizing and degrading both lumenal (CPY* and PrA*), and integral membrane proteins (Sec61-2p) that misfold in the ER. CPY* overexpression likely saturates the HRD/DER pathway and activates the HIP pathway, so the slowed degradation kinetics of CPY* in a hrd1 Delta strain is restored to a wild-type rate when CPY* is overexpressed. Substrates of HIP require vesicular trafficking between the ER and Golgi apparatus before degradation by the ubiquitin-proteasome system. Ubiquitination of HIP substrates does not involve the HRD/DER pathway ubiquitin ligase Hrd1p, but instead uses another ubiquitin ligase, Rsp5p. HIP is regulated by the unfolded protein response as Ire1p is necessary for the degradation of CPY* when overexpressed, but not when CPY* is expressed at normal levels. Both the HIP and HRD/DER pathways contribute to the degradation of CPY*, and only by eliminating both is CPY* degradation completely blocked.
我们在酿酒酵母中鉴定出一种新的内质网相关降解途径,它与由Hrd1p、Hrd3p、Der1p和Ubc7p组成的HRD/DER途径独立发挥作用。这条途径被称为Hrd1p非依赖型蛋白水解(HIP)途径,能够识别并降解在内质网中错误折叠的腔内蛋白(CPY和PrA)以及整合膜蛋白(Sec61-2p)。CPY的过表达可能使HRD/DER途径饱和并激活HIP途径,因此当CPY过表达时,hrd1Δ菌株中CPY降解动力学的减慢恢复到野生型速率。HIP的底物在被泛素-蛋白酶体系统降解之前,需要在内质网和高尔基体之间进行囊泡运输。HIP底物的泛素化不涉及HRD/DER途径的泛素连接酶Hrd1p,而是使用另一种泛素连接酶Rsp5p。HIP受未折叠蛋白反应的调节,因为当CPY过表达时,Ire1p对于CPY的降解是必需的,但当CPY以正常水平表达时则不是。HIP和HRD/DER途径都有助于CPY的降解,只有同时消除这两条途径,CPY的降解才会被完全阻断。