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Large scale dynamics of the michaelis complex in Bacillus stearothermophilus lactate dehydrogenase revealed by a single-tryptophan mutant study

机译:单色氨酸突变体研究揭示了嗜热脂肪芽孢杆菌乳酸脱氢酶中米氏菌复合物的大规模动力学

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Large scale dynamics within the Michaelis complex mimic of Bacillus stearothermophilus thermophilic lactate dehydrogenase, bsLDH·NADH· oxamate, were studied with site specific resolution by laser-induced temperature jump relaxation spectroscopy with a time resolution of 20 ns. NADH emission and Trp emission from the wild type and a series of single-tryptophan bsLDH mutants, with the tryptophan positions different distances from the active site, were used as reporters of evolving structure in response to the rapid change in temperature. Several distinct dynamical events were observed on the millisecond to microsecond time scale involving motion of atoms spread over the protein, some occurring concomitantly or nearly concomitantly with structural changes at the active site. This suggests that a large portion of the protein-substrate complex moves in a rather concerted fashion to bring about catalysis. The catalytically important surface loop undergoes two distinct movements, both needed for a competent enzyme. Our results also suggest that what is called "loop motion" is not just localized to the loop and active site residues. Rather, it involves the motion of atoms spread over the protein, even some quite distal from the active site. How these results bear on the catalytic mechanism of bsLDH is discussed.
机译:用激光诱导的温度跃迁松弛光谱法以20 ns的时间分辨率研究了位点特异性分辨率的嗜热脂肪芽孢杆菌嗜热乳酸脱氢酶bsLDH·NADH·草酸酯的Michaelis复合物模拟中的大规模动力学。来自野生型和一系列单色氨酸bsLDH突变体的NADH发射和Trp发射,其色氨酸位置与活性位点的距离不同,响应温度的快速变化,被用作进化结构的报告基因。在毫秒至微秒的时间尺度上,观察到了几个不同的动力学事件,这些动力学事件涉及分布在蛋白质上的原子的运动,其中一些与活性位点的结构变化同时发生或几乎同时发生。这表明大部分蛋白质-底物复合物以相当协调的方式运动以引起催化作用。具有催化作用的重要表面环经历两个不同的运动,这都是感受态酶所必需的。我们的结果还表明,所谓的“循环运动”不仅局限于循环和活性位点残基。相反,它涉及分布在蛋白质上的原子的运动,甚至是远离活性位点的原子。讨论了这些结果如何影响bsLDH的催化机理。

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