Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, United States.
Laboratory of Biomolecular NMR, St. Petersburg State University, St. Petersburg 199034, Russia.
Biochemistry. 2021 Mar 2;60(8):584-596. doi: 10.1021/acs.biochem.0c00760. Epub 2021 Feb 14.
We report the co-crystal structure of the (catalytic Cys)-to-Ala mutant of the deubiquitinase domain of the effector SdeA (SdeA) with its ubiquitin (Ub) product. Most of the intermolecular interactions are preserved in this product-bound structure compared to that of the previously characterized complex of SdeA with the suicide inhibitor ubiquitin vinylmethyl ester (Ub-VME), whose structure models the acyl-enzyme thioester intermediate. Nuclear magnetic resonance (NMR) titration studies show a chemical shift perturbation pattern that suggests that the same interactions also exist in solution. Isothermal titration calorimetry and NMR titration data reveal that the affinity of wild-type (WT) SdeA for Ub is significantly lower than that of the Cys-to-Ala mutant. This is potentially due to repulsive interaction between the thiolate ion of the catalytic Cys residue in WT SdeA and the carboxylate group of the C-terminal Gly76 residue in Ub. In the context of SdeA catalysis, this electrostatic repulsion arises after the hydrolysis of the scissile isopeptide bond in the acyl-enzyme intermediate and the consequent formation of the C-terminal carboxylic group in the Ub fragment. We hypothesize that this electrostatic repulsion may expedite the release of the Ub product by SdeA. We note that similar repulsive interactions may also occur in other deubiquitinases and hydrolases of ubiquitin-like protein modifiers and may constitute a fairly general mechanism of product release within this family. This is a potentially important feature for a family of enzymes that form extensive protein-protein interactions during enzyme-substrate engagement.
我们报告了效应物 SdeA 的去泛素化酶结构域(Catalytic Cys)-to-Ala 突变体与泛素(Ub)产物的共晶结构。与先前表征的 SdeA 与自杀抑制剂泛素乙烯基甲酯(Ub-VME)的复合物结构相比,该产物结合结构保留了大多数分子间相互作用,其结构模型是酰基-酶硫酯中间产物。核磁共振(NMR)滴定研究表明,化学位移扰动模式表明相同的相互作用也存在于溶液中。等温滴定量热法和 NMR 滴定数据表明,野生型(WT)SdeA 与 Ub 的亲和力明显低于 Cys-to-Ala 突变体。这可能是由于 WT SdeA 中催化半胱氨酸残基的硫醇离子与 Ub 中 C 末端 Gly76 残基的羧酸盐之间存在排斥相互作用。在 SdeA 催化的情况下,这种静电排斥在酰基-酶中间产物中切割的异肽键水解后以及 Ub 片段中 C 末端羧酸基团的形成后出现。我们假设这种静电排斥可能会加速 SdeA 释放 Ub 产物。我们注意到,类似的排斥相互作用也可能发生在其他泛素样蛋白修饰物的去泛素酶和水解酶中,并且可能构成该家族中产物释放的相当普遍的机制。对于在酶-底物结合过程中形成广泛蛋白质-蛋白质相互作用的酶家族来说,这是一个潜在的重要特征。