Takeda Kojiro, Yanagida Mitsuhiro
Department of Biophysics, Graduate School of Science, Kyoto University, Sakyo-ku, Kyoto 606-8501, Japan.
Cell. 2005 Aug 12;122(3):393-405. doi: 10.1016/j.cell.2005.05.023.
While proteasome is central to the degradation of cellular ubiquitinated proteins, the control of its nuclear function is barely understood. Here we show that the fission yeast ubiquitin-conjugating Rhp6/Ubc2/Rad6 and ligating enzymes Ubr1 are responsible for nuclear enrichment of proteasome through the function of Cut8, a nuclear envelope protein. Cut8 is an Rhp6 substrate that physically interacts with and tethers proteasome. Nonubiquitinatable K-all-R Cut8 weakly interacts with proteasome and fails to enrich nuclear proteasome. Consistently, the nuclear enrichment of proteasome also fails in rhp6 and ubr1 null mutants. Further, cut8 null and cut8 K-all-R mutants are hypersensitive to DNA damage, probably due to the paucity of nuclear proteasome. Thus, Rhp6 enhances the retention of nuclear proteasome through regulating Cut8. The short-lived nature of Cut8 is crucial for feedback enrichment of the proteasome within the nucleus. This is likely to be a conserved mechanism as we describe a Cut8 homolog in flies.
虽然蛋白酶体对于细胞中泛素化蛋白的降解至关重要,但其核功能的调控却几乎不为人所知。在此,我们表明裂殖酵母泛素结合酶Rhp6/Ubc2/Rad6和连接酶Ubr1通过核膜蛋白Cut8的功能负责蛋白酶体在细胞核中的富集。Cut8是Rhp6的底物,它与蛋白酶体发生物理相互作用并将其拴系。不可泛素化的K-all-R Cut8与蛋白酶体的相互作用较弱,无法使细胞核中的蛋白酶体富集。同样,蛋白酶体在细胞核中的富集在rhp6和ubr1缺失突变体中也无法实现。此外,cut8缺失和cut8 K-all-R突变体对DNA损伤高度敏感,这可能是由于细胞核中蛋白酶体数量不足所致。因此,Rhp6通过调节Cut8增强了细胞核中蛋白酶体的保留。Cut8的短寿命特性对于蛋白酶体在细胞核内的反馈富集至关重要。这可能是一种保守机制,因为我们在果蝇中描述了一种Cut8同源物。