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Recognition of trans and gauche phenylethylamine conformers in the active site of human monoamine oxidase B: A MD-simulation and DFT studies

机译:识别跨越苯基乙胺赋板在人单胺氧化酶B的活性位点:MD仿真和DFT研究

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Phenylethylamine (PEA) is an endogenous amphetamine and as such, it blocks monoamine transporters and to a lesser extent vesicular transport thus elevating the level of corresponding neurotransmitter molecules at the synaptic cleft. In the physiological system, PEA acts as neuromodulator and is primarily metabolized by human monoamine oxidase B (hMAO B) to corresponding aldehyde and ammonia. In this work the stabilization of trans and gauche conformers of protonated phenylethylamine in the active site cavity of hMAO B have been evaluated by MD-simulation and DFT studies. The aromatic phenyl ring of trans-PEA is stabilized by Phe343(pi)center dot center dot center dot PEA(pi) interaction, where the pi-ring of Phe343 is observed to stabilized by pi center dot center dot center dot H-O (Tyr398(OH)) interaction, whereas in gauche conformer hydrogen bonding association of a water molecule with N+-atom of PEA and at the same time its bridging with aromatic it-ring of that substrate through non-covalent (N+center dot center dot W center dot center dot center dot pi and water center dot center dot center dot pi center dot center dot center dot water) interaction have provided some extra stability to it. It has also been observed that N+-site of PEA has been stabilized by two to three water molecules along with Leu171(OB) and Gln206(OE1)/TYr435(OH) in the respective trans and gauche conformers. The results provide some interesting chemical insight on the stabilization of both the trans and gauche conformers of PEA in the active site of hMAO B which may be useful for inhibitor design related to neurological diseases. (C) 2018 Elsevier B.V. All rights reserved.
机译:苯基乙胺(豌豆)是内源性的杂胺,因此,它阻断单胺转运蛋白并呈较小程度的凹形转运,从而升高在突触裂缝处的相应神经递质分子的水平。在生理系统中,豌豆用作神经调节剂,主要由人单胺氧化酶B(HMAO B)代谢至相应的醛和氨。在这项工作中,通过MD模拟和DFT研究评估了HMAO B的活性部位腔中质子化苯乙胺的反式和Gauche符合子的稳定化。通过PHE343(PI)中心点中心点中心点豌豆(PI)相互作用稳定反式豌豆的芳族苯环,观察到PI中心点中心点中心DOT HO(TYR398( OH))相互作用,而在GAUINE适合于豌豆的水分子的氢键组合物,同时通过非共价桥接该基板的芳族IT环(N + CENTER DOT CENTER W CENTER DOT中心点中心点PI和水中中心点中心点中心点PI中心点中心点水分用水)相互作用为其提供了一些额外的稳定性。还观察到,在相应的反式和Gauche符合子中,N + - 豌豆的豌豆和Leu171(OB)和GLN206(OE1)/ Tyr435(OH)稳定。结果提供了一些关于HMAO B活性位点中的豌豆和Gauche稳定剂的有趣化学洞察,这对于与神经疾病有关的抑制剂设计可能是有用的。 (c)2018 Elsevier B.v.保留所有权利。

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