Heuson Egon, Storgaard Morten, Huynh Tri H V, Charmantray Franck, Gefflaut Thierry, Bunch Lennart
Clermont Université, Université Blaise Pascal, Institut de Chimie de Clermont-Ferrand, BP 10448, F-63000 Clermont-Ferrand, France.
Org Biomol Chem. 2014 Nov 21;12(43):8689-95. doi: 10.1039/c4ob01377h.
The membrane bound enzyme monoamine oxidase exist in two splice variants designated A and B (MAO-A and MAO-B) and are key players in the oxidative metabolism of monoamines in mammalians. Despite their importance and being a prevalent target for the development of inhibitors as drugs, no systematic study of substrate specificity has been reported. In this study we present a systematic study of the MAO-A and MAO-B substrate specificity profile by probing two series of phenethylamine analogs. Km and kcat values were determined for four N-alkyl analogs 2-5 and four aryl halide analogs 6-9 at MAO-A and MAO-B. A following in silico study disclosed a new adjacent compartment to the MAO-B substrate pocket defined by amino acids Tyr188, Tyr435, Tyr398, Thr399, Cys172 and Gly434. This new insight is important for the understanding of the substrate specificity of the MAO-B enzyme and will be relevant for future drug design within the field of monoamines.
膜结合酶单胺氧化酶存在两种剪接变体,分别命名为A和B(MAO-A和MAO-B),它们是哺乳动物单胺氧化代谢的关键参与者。尽管它们很重要,并且是开发抑制剂作为药物的普遍靶点,但尚未有关于底物特异性的系统研究报道。在本研究中,我们通过探测两个系列的苯乙胺类似物,对MAO-A和MAO-B的底物特异性概况进行了系统研究。测定了四种N-烷基类似物2-5和四种芳基卤化物类似物6-9在MAO-A和MAO-B上的Km和kcat值。随后的计算机模拟研究揭示了一个由氨基酸Tyr188、Tyr435、Tyr398、Thr399、Cys172和Gly434定义的与MAO-B底物口袋相邻的新区域。这一新见解对于理解MAO-B酶的底物特异性很重要,并且将与单胺领域未来的药物设计相关。