Lee Byung-Hoon, Lu Ying, Prado Miguel A, Shi Yuan, Tian Geng, Sun Shuangwu, Elsasser Suzanne, Gygi Steven P, King Randall W, Finley Daniel
Department of Cell Biology, Harvard Medical School, 240 Longwood Avenue, Boston, Massachusetts 02115, USA.
Department of Systems Biology, Harvard Medical School, 200 Longwood Avenue, Boston, Massachusetts 02115, USA.
Nature. 2016 Apr 21;532(7599):398-401. doi: 10.1038/nature17433. Epub 2016 Apr 13.
USP14 is a major regulator of the proteasome and one of three proteasome-associated deubiquitinating enzymes. Its effects on protein turnover are substrate-specific, for unknown reasons. We report that USP14 shows a marked preference for ubiquitin-cyclin B conjugates that carry more than one ubiquitin modification or chain. This specificity is conserved from yeast to humans and is independent of chain linkage type. USP14 has been thought to cleave single ubiquitin groups from the distal tip of a chain, but we find that it removes chains from cyclin B en bloc, proceeding until a single chain remains. The suppression of degradation by USP14's catalytic activity reflects its capacity to act on a millisecond time scale, before the proteasome can initiate degradation of the substrate. In addition, single-molecule studies showed that the dwell time of ubiquitin conjugates at the proteasome was reduced by USP14-dependent deubiquitination. In summary, the specificity of the proteasome can be regulated by rapid ubiquitin chain removal, which resolves substrates based on a novel aspect of ubiquitin conjugate architecture.
USP14是蛋白酶体的主要调节因子,也是三种与蛋白酶体相关的去泛素化酶之一。出于未知原因,其对蛋白质周转的影响具有底物特异性。我们报告称,USP14对携带多个泛素修饰或链的泛素-细胞周期蛋白B缀合物表现出明显偏好。这种特异性从酵母到人类都保守,且与链连接类型无关。人们一直认为USP14从链的远端切割单个泛素基团,但我们发现它会整体去除细胞周期蛋白B上的链,直到只剩下单链。USP14催化活性对降解的抑制反映了其在蛋白酶体启动底物降解之前以毫秒时间尺度发挥作用的能力。此外,单分子研究表明,USP14依赖性去泛素化减少了泛素缀合物在蛋白酶体处的停留时间。总之,蛋白酶体的特异性可通过快速去除泛素链来调节,这基于泛素缀合物结构的一个新方面来解析底物。