Department of Chemistry and Biochemistry, University of Windsor, Windsor, Canada.
Department of Chemistry, University of Guelph, Guelph, Canada.
J Biol Chem. 2024 Oct;300(10):107727. doi: 10.1016/j.jbc.2024.107727. Epub 2024 Aug 28.
Ubiquitin-specific proteases (USPs) are a family of multi-domain deubiquitinases (DUBs) with variable architectures, some containing regulatory auxiliary domains. Among the USP family, all occurrences of intramolecular regulation presently known are autoactivating. USP8 remains the sole exception as its putative WW-like domain, conserved only in vertebrate orthologs, is autoinhibitory. Here, we present a comprehensive structure-function analysis describing the autoinhibition of USP8 and provide evidence of the physical interaction between the WW-like and catalytic domains. The solution structure of full-length USP8 reveals an extended, monomeric conformation. Coupled with DUB assays, the WW-like domain is confirmed to be the minimal autoinhibitory unit. Strikingly, autoinhibition is only observed with the WW-like domain in cis and depends on the length of the linker tethering it to the catalytic domain. Modeling of the WW:CD complex structure and mutagenesis of interface residues suggests a novel binding site in the S1 pocket. To investigate the interplay between phosphorylation and USP8 autoinhibition, we identify AMP-activated protein kinase as a highly selective modifier of S718 in the 14-3-3 binding motif. We show that 14-3-3γ binding to phosphorylated USP8 potentiates autoinhibition in a WW-like domain-dependent manner by stabilizing an autoinhibited conformation. These findings provide mechanistic details on the autoregulation of USP8 and shed light on its evolutionary significance.
泛素特异性蛋白酶(USP)是一类具有可变结构的多结构域去泛素化酶(DUBs),其中一些包含调节辅助结构域。在 USP 家族中,目前已知的所有内在调节事件都是自动激活的。USP8 仍然是唯一的例外,因为其假定的 WW 样结构域仅在脊椎动物同源物中保守,是自动抑制的。在这里,我们进行了全面的结构功能分析,描述了 USP8 的自动抑制,并提供了 WW 样结构域和催化结构域之间物理相互作用的证据。全长 USP8 的溶液结构揭示了一个扩展的单体构象。与 DUB 测定相结合,WW 样结构域被确认为最小的自动抑制单元。引人注目的是,自动抑制仅在 WW 样结构域顺式存在时观察到,并且依赖于将其连接到催化结构域的连接子的长度。WW:CD 复合物结构的建模和界面残基的突变表明在 S1 口袋中存在一个新的结合位点。为了研究磷酸化和 USP8 自动抑制之间的相互作用,我们鉴定出 AMP 激活的蛋白激酶是在 14-3-3 结合基序中 S718 的高度选择性修饰物。我们表明,磷酸化 USP8 与 14-3-3γ 的结合以 WW 样结构域依赖的方式增强自动抑制,通过稳定自动抑制构象来实现。这些发现提供了 USP8 自我调节的机制细节,并阐明了其进化意义。