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(15)(V/K) kinetic isotope effect and steady-state kinetic analysis for the transglutaminase 2 catalyzed deamidation and transamidation reactions

机译:(15)(v / k)动力学同位素效应和转谷氨酰胺酶2催化的脱酰胺和横向反应的稳态动力学分析

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The Ca2+-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 (15)(V/K) kinetic isotope effects (KIEs) for the TG2-catalyzed deamidation and transamidation of N-Benzyloxycarbonyl-l-Glutaminylglyeine (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 (15)(V/K) KIEs on NH3 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.
机译:转谷氨酰胺酶2(TG2)的Ca2 +依赖性脱酰胺和仲裁活性对于许多生理和病理过程至关重要。 在此,我们研究了使用PUTRESCINE的TG2催化的TG2催化的脱氨酸和N-苄氧基羰基-1-谷氨酸氨基氨基(Z-Gln-Gly)的TG2催化的脱胺(kies)的稳态动力学和(15)(v / k)动力学同位素效应(kies) 作为酰基受体底物。 从初始速度图确定的动力学参数与先前提出的机制一致。 在脱酰胺(0.2%)和z-gln-gly的抗扫描(0.2%)和羟基丙酰胺(2.3%)的NH3释放上的差异显着差异表明TG2活性位点酰化的速率限制步骤取决于依赖性 在酰基受体的存在下。 我们提出了一种合理的机制解释,其中基质诱导的构象变化可能在促进催化方面发挥作用。

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