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首页> 外文期刊>International Journal of Quantum Chemistry >Enzymatic “Tricks”: Carboxylate Shift and Sulfur Shift
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Enzymatic “Tricks”: Carboxylate Shift and Sulfur Shift

机译:酶促“技巧”:羧酸盐转变和硫磺转变

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摘要

We look into two interesting phenomena that occur in enzymes: one has been termed carboxylate shift and the other sulfur shift. Carboxylate shift is an interesting mechanistic phenomenon, which is characterized by a change in the coordination mode of a carboxylate group (monodentate to bidentate or vice versa) with ligand entrance or ligand exit from the metal coordination sphere. We focus on some patterns relating the intrinsic characteristics of a given metal coordination sphere to the occurrence of a carboxylate shift and the corresponding energy stabilization suffered by the enzyme. A structural rearrangement known as sulfur shift has been recognized to occur in some Mo-containing enzymes of the DMSO reductase family. This mechanism is characterized by the displacement of a coordinating cysteine thiol or selenocysteine thiol from the first to the second shell of the Mo-coordination sphere metal, allowing for direct coordination of the incoming ligand (substrate or inhibitor) to the hexacoordinated Mo ion found in the enzyme unbound state. The sulfur shift, as well as the carboxylate shift, results in a rearrangement of the enzymatic catalytic center that provides an efficient mechanism to keep a constant coordination number throughout an entire catalytic pathway.
机译:我们研究了酶中发生的两种有趣现象:一种被称为羧酸盐转移,另一种被称为硫转移。羧酸盐移位是一种有趣的机制现象,其特征在于羧酸盐基团的配位模式(单齿至双齿,反之亦然)的改变方式具有配体入口或配体从金属配位球中退出。我们专注于一些模式,这些模式将给定金属配位球的固有特性与羧酸盐转移的发生以及酶所遭受的相应能量稳定化相关。已经认识到在DMSO还原酶家族的某些含Mo的酶中发生了称为硫转移的结构重排。该机理的特征在于,配位的半胱氨酸硫醇或硒代半胱氨酸硫醇从Mo配位球金属的第一壳到第二壳被置换,从而允许传入的配体(底物或抑制剂)与X上的六配位Mo离子直接配位。酶未结合状态。硫的转移以及羧酸盐的转移导致酶催化中心的重排,从而提供了一种有效的机制,可以在整个催化路径中保持恒定的配位数。

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