Department of Biochemistry and Molecular Biology and the East Carolina Diabetes and Obesity Institute, Brody School of Medicine at East Carolina University, Greenville, NC, United States.
Department of Biochemistry, University of Wisconsin, Madison, WI, United States.
Arch Biochem Biophys. 2018 Apr 2;643:57-61. doi: 10.1016/j.abb.2018.02.013. Epub 2018 Feb 23.
The Ca-dependent deamidation and transamidation activities of transglutaminase 2 (TG2) are important to numerous physiological and pathological processes. Herein, we have examined the steady-state kinetics and (V/K) kinetic isotope effects (KIEs) for the TG2-catalyzed deamidation and transamidation of N-Benzyloxycarbonyl-l-Glutaminylglycine (Z-Gln-Gly) using putrescine as the acyl acceptor substrate. Kinetic parameters determined from initial velocity plots are consistent with previously proposed mechanisms. Significant differences in the (V/K) KIEs on NH release determined for the deamidation (0.2%) and the transamidation (2.3%) of Z-Gln-Gly suggest the rate-limiting steps of TG2 active site acylation are dependent on the presence of the acyl acceptor. We propose a plausible mechanistic explanation where substrate-induced conformational changes may play a role in promoting catalysis.
钙依赖性脱酰胺和转酰胺活性是转谷氨酰胺酶 2(TG2)的重要功能,涉及许多生理和病理过程。在此,我们使用腐胺作为酰基受体底物,研究了 TG2 催化 N-苄氧羰基-l-谷氨酰甘氨酸(Z-Gln-Gly)的脱酰胺和转酰胺反应的稳态动力学和(V/K)动力学同位素效应(KIE)。从初始速度图确定的动力学参数与先前提出的机制一致。对于 Z-Gln-Gly 的脱酰胺(0.2%)和转酰胺(2.3%)反应,NH 释放的(V/K)KIE 存在显著差异,表明 TG2 活性位点酰化的限速步骤取决于酰基受体的存在。我们提出了一个合理的机制解释,其中底物诱导的构象变化可能在促进催化中发挥作用。