首页> 外文期刊>The FEBS journal >Active site residue involvement in monoamine or diamine oxidation catalysed by pea seedling amine oxidase.
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Active site residue involvement in monoamine or diamine oxidation catalysed by pea seedling amine oxidase.

机译:豌豆幼苗胺氧化酶催化单胺或二胺氧化的活性位点残基。

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摘要

The structures of copper amine oxidases from various sources show good similarity, suggesting similar catalytic mechanisms for all members of this enzyme family. However, the optimal substrates for each member differ, depending on the source of the enzyme and its location. The structural factors underlying substrate selectivity still remain to be discovered. With this in view, we examined the kinetic behaviour of pea seedling amine oxidase with cadaverine and hexylamine, the first bearing two, and the second only one, positively charged amino group. The dependence of K(m) and catalytic constant (k(c)) values on pH, ionic strength and temperature indicates that binding of the monoamine is driven by hydrophobic interactions. Instead, binding of the diamine is strongly facilitated by electrostatic factors, controlled by polar side-chains and two titratable residues present in the active site. The position of the docked substrate is also essential for the participation of titratable amino acid residues in the following catalytic steps. A new mechanistic model explaining the substrate-dependent kinetics of the reaction is discussed. Copyright 2011 The Authors Journal compilation Copyright 2011 FEBS.
机译:来自各种来源的铜胺氧化酶的结构显示出良好的相似性,表明该酶家族的所有成员都具有相似的催化机制。但是,取决于酶的来源及其位置,每个成员的最佳底物会有所不同。底物选择性的基础结构因素仍有待发现。有鉴于此,我们检查了带有尸胺和己胺的豌豆幼苗胺氧化酶的动力学行为,第一个带有两个,而第二个只有一个带正电荷的氨基。 K(m)和催化常数(k(c))值对pH,离子强度和温度的依赖性表明单胺的结合是由疏水相互作用驱动的。取而代之的是,静电因子强烈促进二胺的结合,静电因子受极性侧链和活性位点中存在的两个可滴定残基的控制。停靠的底物的位置对于可滴定的氨基酸残基参与以下催化步骤也至关重要。讨论了新的机理模型,该模型解释了反应的底物依赖性动力学。版权所有2011 The Authors Journal汇编版权所有2011 FEBS。

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