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鉴定依赖于磷酸吡哆醛的转氨酶在氮杂糖生物合成中的作用。

Characterization of the PLP-dependent transaminase initiating azasugar biosynthesis.

机构信息

Department of Chemistry, University of Florida, Gainesville, FL 32611-7200, U.S.A.

出版信息

Biochem J. 2018 Jul 17;475(13):2241-2256. doi: 10.1042/BCJ20180340.

Abstract

Biosynthesis of the azasugar 1-deoxynojirimycin (DNJ) critically involves a transamination in the first committed step. Here, we identify the azasugar biosynthetic cluster signature in SC2 (), homologous to that reported in FZB42 (), and report the characterization of the aminotransferase GabT1 (named from ). GabT1 from exhibits a specific activity of 4.9 nmol/min/mg at 30°C (pH 7.5), a somewhat promiscuous amino donor selectivity, and curvilinear steady-state kinetics that do not reflect the predicted ping-pong behavior typical of aminotransferases. Analysis of the first half reaction with l-glutamate in the absence of the acceptor fructose 6-phosphate revealed that it was capable of catalyzing multiple turnovers of glutamate. Kinetic modeling of steady-state initial velocity data was consistent with a novel hybrid branching kinetic mechanism which included dissociation of PMP after the first half reaction to generate the apoenzyme which could bind PLP for another catalytic deamination event. Based on comparative sequence analyses, we identified an uncommon His-Val dyad in the PLP-binding pocket which we hypothesized was responsible for the unusual kinetics. Restoration of the conserved PLP-binding site motif via the mutant H119F restored classic ping-pong kinetic behavior.

摘要

氮杂糖 1-脱氧野尻霉素(DNJ)的生物合成在第一步涉及转氨作用。在这里,我们确定了 SC2()中的氮杂糖生物合成簇特征,与 FZB42()中报道的特征同源,并报告了氨基转移酶 GabT1(命名为)的特征。来自 的 GabT1 在 30°C(pH7.5)时的比活性为 4.9nmol/min/mg,具有一定的氨基酸供体选择性,以及非线性稳态动力学,这不符合典型氨基转移酶的预测乒乓反应行为。在没有受体果糖 6-磷酸的情况下用 l-谷氨酸分析第一半反应表明,它能够催化谷氨酸的多次周转。稳态初始速度数据的动力学建模与一种新的混合分支动力学机制一致,其中包括第一半反应后 PMP 的解离,生成能够结合 PLP 进行另一个催化脱氨事件的脱辅基酶。基于比较序列分析,我们在 PLP 结合口袋中鉴定出一个不常见的 His-Val 二联体,我们假设这是导致异常动力学的原因。通过突变体 H119F 恢复保守的 PLP 结合位点基序,恢复了经典的乒乓动力学行为。

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