Bonifacino J S, Weissman A M
Cell Biology and Metabolism Branch, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, Maryland 20892-5430, USA.
Annu Rev Cell Dev Biol. 1998;14:19-57. doi: 10.1146/annurev.cellbio.14.1.19.
The modification of proteins by chains of ubiquitin has long been known to mediate targeting of cytosolic and nuclear proteins for degradation by proteasomes. In this article, we discuss recent developments that reveal the involvement of ubiquitin in the degradation of proteins retained within the endoplasmic reticulum (ER) and in the internalization of plasma membrane proteins. Both luminal and transmembrane proteins retained in the ER are now known to be retrotranslocated into the cytosol in a process that involves ER chaperones and components of the protein import machinery. Once exposed to the cytosolic milieu, retro-translocated proteins are degraded by the proteasome, in most cases following polyubiquitination. There is growing evidence that both the ubiquitin-conjugating machinery and proteasomes may be associated with the cytosolic face of the ER membrane and that they could be functionally coupled to the process of retrotranslocation. The ubiquitination of plasma membrane proteins, on the other hand, mediates internalization of the proteins, which in most cases is followed by lysosomal/vacuolar degradation. There is, however, a well-documented case of a plasma membrane protein (the c-Met receptor) for which ubiquitination results in proteasomal degradation. These recent findings imply that ubiquitin plays more diverse roles in the regulation of the fate of cellular proteins than originally anticipated.
长期以来,人们一直认为泛素链对蛋白质的修饰作用介导了胞质和核蛋白被蛋白酶体降解的靶向过程。在本文中,我们讨论了最近的研究进展,这些进展揭示了泛素在内质网(ER)中滞留的蛋白质降解以及质膜蛋白内化过程中的作用。现在已知,滞留在内质网中的腔蛋白和跨膜蛋白都会通过一个涉及内质网伴侣蛋白和蛋白质导入机制成分的过程逆向转运到胞质溶胶中。一旦暴露于胞质环境中,逆向转运的蛋白质在大多数情况下会在多聚泛素化后被蛋白酶体降解。越来越多的证据表明,泛素结合机制和蛋白酶体可能都与内质网膜的胞质面相关联,并且它们在功能上可能与逆向转运过程耦合。另一方面,质膜蛋白的泛素化介导了蛋白质的内化,在大多数情况下,随后会发生溶酶体/液泡降解。然而,有一个有充分记录的质膜蛋白(c-Met受体)的例子,其泛素化导致蛋白酶体降解。这些最新发现表明,泛素在细胞蛋白质命运调控中所起的作用比最初预期的要更加多样。