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A Stopped Flow Transient Kinetic Analysis of Substrate Binding and Catalysis in Escherichia coli d-3-Phosphoglycerate Dehydrogenase

机译:底物结合和停止流动的瞬态动力学分析 大肠杆菌d-3-磷酸甘油酸酯的催化 脱氢酶

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摘要

Pre-steady state, stopped flow analysis of Escherichia coli d-3-phosphoglycerate dehydrogenase was performed by following the fluorescence of protein tryptophan and the fluorescence resonance energy transfer from protein tryptophan to bound NADH. The results indicate that binding of substrates is ordered, with coenzyme, NADH, binding first. Furthermore, the analysis indicated that there are two sets of sites on the tetrameric enzyme that can be differentiated by their kinetic behavior. NADH binding was consistent with an initial binding event followed by a slow conformational change for each site. The slow conformational change is responsible for the apparent tight binding of NADH to the apoenzyme but is too slow to participate in the catalytic cycle when the enzyme is rapidly turning over. Subsequent binding of the substrate, α-ketoglutarate, was characterized by a rapid equilibrium binding event followed by a conformational change for each site. Catalysis in the direction of NAD+ reduction showed a distinct burst of activity followed by a slow rate of turnover, indicating that the rate-limiting step is after hydride transfer. Catalysis in the direction of NADH oxidation did not display burst kinetics, indicating that the rate-limiting step is at or before the hydride transfer step. The burst data indicated that the rate of NAD+ reduction (3.8 s–1) is similar to the kcat of the enzyme (2–3 s–1) in that direction. However, analysis of the reaction with deuterated NADH failed to show an effect on the velocity of the reaction with a VH/VD = 1.07 ± 0.06. None of the other rates determined by stopped flow analysis could account for the kcat of the enzyme in either direction (forward kcat = 0.01 s–1, reverse kcat = 2–3 s–1), suggesting that the rate-limiting step in both directions is a conformational change in the enzyme that is not detected optically.
机译:通过跟踪蛋白色氨酸的荧光和从蛋白色氨酸到结合的NADH的荧光共振能量转移,对大肠杆菌d-3-磷酸甘油酸脱氢酶进行稳态前的停止流分析。结果表明底物的结合是有序的,辅酶NADH首先结合。此外,分析表明四聚酶上有两组位点可以通过其动力学行为加以区分。 NADH结合与初始结合事件一致,随后每个位点的构象变化缓慢。缓慢的构象变化是NADH与脱辅酶明显结合的原因,但是当酶迅速翻转时,它太慢而无法参与催化循环。底物α-酮戊二酸的随后结合的特征在于快速的平衡结合事件,随后是每个位点的构象变化。在NAD + 还原方向上的催化显示出明显的活性爆发,其后的转换速率很慢,这表明限速步骤是在氢化物转移之后进行的。沿NADH氧化方向的催化未显示出爆裂 动力学,表明限速步骤在氢化物处或之前 转移步骤。突发数据表明NAD + 的速率 减少(3.8 s –1 )类似于 酶的kcat(2–3 s –1 )在 那个方向。但是,用氘代NADH分析反应失败 显示对反应速度的影响 VH / VD = 1.07±0.06。没有 由停止流量分析确定的其他费率可以解释 酶在任一方向上的kcat(正向 kcat = 0.01 s –1 ,反向 kcat = 2–3 s –1 ),表明 双向的限速步骤是 光学检测不到的酶。

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