Department of Pharmacology - SPH 383, Robert Wood Johnson Medical School, Rutgers University, 683 Hoes Lane, Piscataway, NJ 08854, USA.
Department of Pharmacology - SPH 383, Robert Wood Johnson Medical School, Rutgers University, 683 Hoes Lane, Piscataway, NJ 08854, USA.
J Mol Biol. 2020 Mar 27;432(7):2388-2404. doi: 10.1016/j.jmb.2020.03.001. Epub 2020 Mar 6.
Well-studied structural motifs in Rad23 have been shown to bind polyubiquitin chains and the proteasome. These domains are predicted to enable Rad23 to transport polyubiquitylated (polyUb) substrates to the proteasome (Chen and Madura, 2002 [1]). The validation of this model, however, has been hindered by the lack of specific physiological substrates of Rad23. We report here that Rad23 can bind Ho-endonuclease (Ho-endo), a nuclear protein that initiates mating-type switching in Saccharomyces cerevisiae. We observed that the degradation of Ho-endo required export from the nucleus, in agreement with a previous report (Kaplun et al., 2003 [2]), and suggests that Rad23 can traffic proteins out of the nucleus. In agreement, the subcellular distribution of Rad23 is noticeably altered in genetic mutants that disrupt nucleocytoplasmic trafficking. Significantly, the location of Rad23 affected its binding to polyUb substrates. Mutations in nuclear export stabilized substrates, and caused accumulation in the nucleus. Importantly, Rad23 also accumulated in the nucleus in an export mutant, and bound to higher levels of polyUb proteins. In contrast, Rad23 is localized in the cytosol in rna1-1, a nucleocytoplasmic transport mutant, and it forms reduced binding to polyUb substrates. These and other studies indicate that substrates that are conjugated to polyubiquitin chains in the nucleus may rely on an export-dependent mechanism to be degraded by the proteasome. The evolutionary conservation of Rad23 and similar substrate-trafficking proteins predicts an important role for export in the turnover of nuclear proteins.
Rad23 中经过充分研究的结构基序已被证明可结合多泛素链和蛋白酶体。这些结构域有望使 Rad23 能够将多泛素化(polyUb)底物转运到蛋白酶体(Chen 和 Madura,2002 [1])。然而,该模型的验证受到 Rad23 缺乏特定生理底物的阻碍。我们在此报告 Rad23 可以结合 Ho-内切核酸酶(Ho-endo),一种启动酿酒酵母交配型转换的核蛋白。我们观察到 Ho-endo 的降解需要从核内输出,这与之前的报告一致(Kaplun 等人,2003 [2]),表明 Rad23 可以将蛋白质运出核内。同样,核细胞质流遗传突变体显著改变了 Rad23 的亚细胞分布。值得注意的是,Rad23 的位置会影响其与多泛素底物的结合。核输出突变稳定了底物,并导致其在核内积累。重要的是,在 export 突变体中 Rad23 也在核内积累,并与更高水平的多泛素蛋白结合。相比之下,在核细胞质流突变体 rna1-1 中,Rad23 定位于细胞质中,与多泛素底物的结合减少。这些和其他研究表明,在核内与多泛素链缀合的底物可能依赖于依赖输出的机制来被蛋白酶体降解。Rad23 和类似的底物转运蛋白在进化上的保守性表明,输出在核蛋白周转中起着重要作用。