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首页> 外文期刊>Journal of molecular graphics & modelling >Identification of novel serotonin reuptake inhibitors targeting central and allosteric binding sites: A virtual screening and molecular dynamics simulations study
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Identification of novel serotonin reuptake inhibitors targeting central and allosteric binding sites: A virtual screening and molecular dynamics simulations study

机译:鉴定中枢和变构结合位点的新型血清素再摄取抑制剂的鉴定:虚拟筛选和分子动力学模拟研究

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The serotonin (5-hydroxytryptamine, 5HT) transporter (SERT) is a member of neurotransmitter sodium symporter (NSS) family, which maintains neurotransmitter by reuptaking 5HT into synapses. Decrease in serotonin concentrations in synaptic clefts have been reported to cause psychological and neurological disorders. Therefore, inhibition of SERT is a potent strategy for the treatment of related diseases such as depression. In this study, approximately 260,000 small molecules from an available chemical database have been virtually screened both at central and allosteric binding sites of SERT to identify potent novel candidate SERT inhibitors. A set of docking algorithms were used to predict binding modes and energies of compounds. Screening analyses led three top-ranked hit compounds (160234, Otava ID: 7118020138; 159166, Otava ID: 7117171303; and 69419, Otava ID: 118671819) for central binding site (S1) and one compound (93507, Otava ID: 6248262) for allosteric binding site (S2). These promising compounds are then subjected to long multiple molecular dynamics (MD) simulations to elucidate their structural and dynamical profiles at the binding cavities of SERT. Higher predicted binding affinities of identified compounds were also confirmed with binding free energy calculations (MM/GBSA) in comparison with the reference central and allosteric binding site inhibitors, paroxetine (8PR) and escitalopram (68P), respectively. To the best of our knowledge, the present work is the first structure-based high throughput virtual screening study reported using recently revealed crystal structure of SERT for screening inhibitors from chemical databases on S1 and S2 binding sites. Small molecule library screening study yielded candidate compounds both at central and allosteric binding site of SERT, and further experimentation may pave the way for developing novel strong inhibitors. (C) 2017 Elsevier Inc. All rights reserved.
机译:血清素(5-羟基 - 羟基胺,5HT)转运蛋白(SERT)是神经递质钠交响者(NSS)家族的成员,其通过重新制作5HT来维持神经递质。据报道,突触裂解中的血清素浓度降低造成心理和神经障碍。因此,抑制SERT是治疗相关疾病如抑郁症的有效策略。在本研究中,在SERT的中央和变构粘合位点几乎筛选了来自可用的化学数据库的大约260,000个小分子,以鉴定有效的新型候选SERT抑制剂。使用一组对接算法预测化合物的结合模式和能量。筛选分析LED三次排名击中化合物(160234,OTAVA ID:7118020138; 159166,OTAVA ID:7117171303;和69419,OTAVA ID:118671819)用于中央结合位点(S1)和一种化合物(93507,OTAVA ID:6248262)颠覆结合位点(S2)。然后对这些有希望的化合物进行长多个分子动力学(MD)模拟,以在SERT的结合腔中阐明它们的结构和动态曲线。与参考中心和变构结合位点,帕罗西汀(8Pr)和杂志(68P)相比,还通过结合自由能量计算(MM / GBSA)确认所鉴定的化合物的更高预测的结合亲和力。据我们所知,本作本作是第一种基于结构的高通量虚拟筛选研究,所述高通量虚拟筛选研究报告使用最近显示SERT的晶体结构,用于筛选来自S1和S2结合位点的化学数据库的抑制剂。小分子文库筛查研究在SERT的中央和变构粘合位点产生候选化合物,并且进一步的实验可以为发展新颖的强抑制剂铺平道路。 (c)2017年Elsevier Inc.保留所有权利。

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