Misaghi Shahram, Galardy Paul J, Meester Wim J N, Ovaa Huib, Ploegh Hidde L, Gaudet Rachelle
Department of Pathology, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Biol Chem. 2005 Jan 14;280(2):1512-20. doi: 10.1074/jbc.M410770200. Epub 2004 Nov 5.
Ubiquitin C-terminal hydrolases (UCHs) comprise a family of small ubiquitin-specific proteases of uncertain function. Although no cellular substrates have been identified for UCHs, their highly tissue-specific expression patterns and the association of UCH-L1 mutations with human disease strongly suggest a critical role. The structure of the yeast UCH Yuh1-ubiquitin aldehyde complex identified an active site crossover loop predicted to limit the size of suitable substrates. We report the 1.45 A resolution crystal structure of human UCH-L3 in complex with the inhibitor ubiquitin vinylmethylester, an inhibitor that forms a covalent adduct with the active site cysteine of ubiquitin-specific proteases. This structure confirms the predicted mechanism of the inhibitor and allows the direct comparison of a UCH family enzyme in the free and ligand-bound state. We also show the efficient hydrolysis by human UCH-L3 of a 13-residue peptide in isopeptide linkage with ubiquitin, consistent with considerable flexibility in UCH substrate size. We propose a model for the catalytic cycle of UCH family members which accounts for the hydrolysis of larger ubiquitin conjugates.
泛素羧基末端水解酶(UCHs)是一类功能不明的小泛素特异性蛋白酶家族。尽管尚未确定UCHs的细胞底物,但它们高度的组织特异性表达模式以及UCH-L1突变与人类疾病的关联强烈表明其具有关键作用。酵母UCH Yuh1-泛素醛复合物的结构确定了一个活性位点交叉环,预计该环会限制合适底物的大小。我们报告了人UCH-L3与抑制剂泛素乙烯甲酯复合物的1.45埃分辨率晶体结构,该抑制剂与泛素特异性蛋白酶的活性位点半胱氨酸形成共价加合物。此结构证实了抑制剂的预测机制,并允许直接比较处于游离状态和配体结合状态的UCH家族酶。我们还展示了人UCH-L3对与泛素形成异肽键的13个残基肽的高效水解,这与UCH底物大小具有相当大的灵活性一致。我们提出了一个UCH家族成员催化循环的模型,该模型解释了较大泛素缀合物的水解过程。