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Enzyme structure and dynamics affect hydrogen tunneling: The impact of a remote side chain (I553) in soybean lipoxygenase-1

机译:酶的结构和动力学影响氢隧穿:大豆脂氧合酶-1中远程侧链(I553)的影响

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摘要

This study examines the impact of a series of mutations at position 553 on the kinetic and structural properties of soybean lipoxygenase-1 (SLO-1). The previously uncharacterized mutants reported herein are I553L, I553V, and I553G. High-resolution x-ray studies of these mutants, together with the earlier studied I553A, show almost no structural change in relation to the WT-enzyme. By contrast, a progression in kinetic behavior occurs in which the decrease in the size of the side chain at position 553 leads to an increased importance of donor–acceptor distance sampling in the course of the hydrogen transfer process. These dynamical changes in behavior are interpreted in the context of two general classes of protein motions, preorganization and reorganization, with the latter including the distance sampling modes [Klinman JP (2006) Philos Trans R Soc London Ser B 361:1323–1331; Nagel Z, Klinman JP (2006) Chem Rev 106:3095–3118]. The aggregate data for SLO-1 show how judicious placement of hydrophobic side chains can influence enzyme catalysis via enhanced donor–acceptor hydrogenic wave function overlap.
机译:这项研究检查了位置553处的一系列突变对大豆脂氧合酶1(SLO-1)动力学和结构性质的影响。本文报道的先前未表征的突变体是I553L,I553V和I553G。这些突变体的高分辨率X射线研究以及较早研究的I553A,表明与WT酶几乎没有结构变化。相反,动力学行为会发生进展,其中在位置553上侧链尺寸的减小导致在氢转移过程中供体-受体距离采样的重要性增加。这些行为的动态变化在蛋白质运动的两大类背景下进行了解释:预组织和重组,后者包括距离采样模式[Klinman JP(2006)Philos Trans R Soc London Ser B 361:1323–1331; Nagel Z,Klinman JP(2006)Chem Rev 106:3095-3118]。 SLO-1的汇总数据表明,疏水性侧链的明智定位如何通过增强的供体-受体氢波功能重叠来影响酶催化。

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