Biomedical Research Division, Center for Advanced Biomolecular Recognition, Korea Institute of Science and Technology (KIST), Seoul, 02792, Korea.
Division of Bio‑Medical Science and Technology, KIST‑School, University of Science and Technology (UST), Seoul, 02792, Korea.
Cell Mol Life Sci. 2023 Apr 1;80(4):112. doi: 10.1007/s00018-023-04740-9.
Recently, a number of reports on the importance of USP35 in cancer have been published. However, very little is known about the exact mechanism by which USP35 activity is regulated. Here, we show the possible regulation of USP35 activity and the structural specificity affecting its function by analyzing various fragments of USP35. Interestingly, the catalytic domain of USP35 alone does not exhibit deubiquitinating activity; in contrast, the C-terminal domain and insertion region in the catalytic domain is required for full USP35 activity. Additionally, through its C-terminal domain, USP35 forms a homodimer that prevents USP35 degradation. CHIP bound to HSP90 interacts with and ubiquitinates USP35. However, when fully functional USP35 undergoes auto-deubiquitination, which attenuates CHIP-mediated ubiquitination. Finally, USP35 dimer is required for deubiquitination of the substrate Aurora B and regulation of faithful mitotic progression. The properties of USP35 identified in this study are a unique homodimer structure, regulation of deubiquitinating activity through this, and utilization of a novel E3 ligase involved in USP35 auto-deubiquitination, which adds another complexity to the regulation of deubiquitinating enzymes.
最近,有许多关于 USP35 在癌症中重要性的报告已经发表。然而,USP35 活性如何受到调节的具体机制还知之甚少。在这里,我们通过分析 USP35 的各种片段,展示了 USP35 活性的可能调节和影响其功能的结构特异性。有趣的是,USP35 的催化结构域本身没有去泛素化活性;相比之下,催化结构域中的 C 末端结构域和插入区是完全 USP35 活性所必需的。此外,USP35 通过其 C 末端结构域形成同源二聚体,从而防止 USP35 降解。CHIP 与 HSP90 结合并与 USP35 相互作用和泛素化。然而,当完全功能的 USP35 经历自身去泛素化时,会减弱 CHIP 介导的泛素化。最后,USP35 二聚体是泛素化底物 Aurora B 和调节有丝分裂进程的保真度所必需的。本研究中鉴定的 USP35 的特性是独特的同源二聚体结构,通过这种结构调节去泛素化活性,以及利用一种新的参与 USP35 自身去泛素化的 E3 连接酶,这为去泛素化酶的调节增加了另一个复杂性。