State Key Laboratory of Molecular Biology, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China.
Biochem J. 2012 Jan 1;441(1):143-9. doi: 10.1042/BJ20110699.
UCHs [Ub (ubiquitin) C-terminal hydrolases] are a family of deubiquitinating enzymes that are often thought to only remove small C-terminal peptide tails from Ub adducts. Among the four UCHs identified to date, neither UCH-L3 nor UCH-L1 can catalyse the hydrolysis of isopeptide Ub chains, but UCH-L5 can when it is present in the PA700 complex of the proteasome. In the present paper, we report that the UCH domain of UCH-L5, different from UCH-L1 and UCH-L3, by itself can process the K48-diUb (Lys48-linked di-ubiquitin) substrate by cleaving the isopeptide bond between two Ub units. The catalytic specificity of the four UCHs is dependent on the length of the active-site crossover loop. The UCH domain with a long crossover loop (usually >14 residues), such as that of UCH-L5 or BAP1 [BRCA1 (breast cancer early-onset 1)-associated protein 1], is able to cleave both small and large Ub derivatives, whereas the one with a short loop can only process small Ub derivatives. We also found that elongation of the crossover loop enables UCH-L1 to have isopeptidase activity for K48-diUb in a length-dependent manner. Thus the loop length of UCHs defines their substrate specificity for diUb chains, suggesting that the chain flexibility of the crossover loop plays an important role in determining its catalytic activity and substrate specificity for cleaving isopeptide Ub chains.
UCHs(泛素 C 末端水解酶)是去泛素化酶家族的一员,通常被认为仅能从 Ub 加合物上移除小的 C 末端肽尾。在迄今为止鉴定的四种 UCH 中,UCH-L3 和 UCH-L1 均不能催化异肽 Ub 链的水解,但 UCH-L5 存在于蛋白酶体的 PA700 复合物中时可以。在本文中,我们报告称,UCH-L5 的 UCH 结构域与 UCH-L1 和 UCH-L3 不同,它本身可以通过切割两个 Ub 单元之间的异肽键来处理 K48-二 Ub(Lys48 连接的二泛素)底物。四种 UCH 的催化特异性取决于活性位点交叉环的长度。具有长交叉环(通常 >14 个残基)的 UCH 结构域,如 UCH-L5 或 BAP1(BRCA1 相关蛋白 1),能够切割大小两种 Ub 衍生物,而具有短环的则只能处理小的 Ub 衍生物。我们还发现,交叉环的延长使 UCH-L1 能够以长度依赖的方式对 K48-二 Ub 具有异肽酶活性。因此,UCHs 的环长度决定了它们对二 Ub 链的底物特异性,这表明交叉环的链柔性在确定其催化活性和对切割异肽 Ub 链的底物特异性方面起着重要作用。