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首页> 外文期刊>Biologica Nyssana >Coumarin structure as a lead scaffold for antibacterial agents - molecular docking
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Coumarin structure as a lead scaffold for antibacterial agents - molecular docking

机译:香豆素结构作为抗菌剂的铅支架-分子对接

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摘要

Coumarins owe their class name to “Coumarou”, the vernacular name of the tonka bean (Dipteryx odorata Willd, Fabaceae), from which coumarin was isolated in 1820. Many molecules based on the coumarin structure have been synthesized utilizing innovative synthetic techniques. Various synthetic routes have led to interesting derivatives including the furanocoumarins, pyranocoumarins and coumarinsulfamates which have been found to be useful in photochemotherapy, antitumor and anti-HIV therapy, as stimulants for central nervous system, antiinflammatory therapy, as anti-coagulants, etc. One of important pharmacological activity of coumarin molecules is their potential as antibacterial agents since they show inhibitory activity toward isoleucyl-transfer RNA (tRNA) synthetase. In the presented research molecular docking studies of selected coumarin compounds inside isoleucyltransfer RNA (tRNA) synthetase active site were performed. Molecular docking scores of all studied compounds were obtained through score functions. Presented results indicate that from all studied coumarin compounds the strongest interactions with studied enzyme has 7,8-dihydroxy-4-phenyl coumarin followed by 5,7-dihydroxy-4-phenyl coumarin. Presented results are in accordance with in vitro obtained results for their antibacterial activity. Presented findings suggest that 4-phenyl hydroxycoumarins may be considered as good molecular templates for potential antibacterial agents and can be used for further chemical modifications for improving their antibacterial activity.
机译:香豆素的类别名称为“香豆粉”(Coumarou),是零陵香豆的名称(Dipteryx odorata Willd,Fabaceae),香豆素于1820年从中分离出来。许多基于香豆素结构的分子已通过创新的合成技术合成。各种合成途径已导致有趣的衍生物,包括呋喃香豆素,吡喃香豆素和香豆素磺酸盐,已发现它们可用于光化学疗法,抗肿瘤和抗HIV疗法,用作中枢神经系统的刺激物,抗炎疗法,抗凝剂等。香豆素分子的重要药理活性是其作为抗菌剂的潜力,因为它们显示出对异亮氨酰转移RNA(tRNA)合成酶的抑制活性。在本研究中,进行了对选定的香豆素化合物在异亮基转移RNA(tRNA)合成酶活性位点内的分子对接研究。通过得分函数获得所有研究化合物的分子对接得分。提出的结果表明,在所有研究的香豆素化合物中,与研究的酶最强的相互作用是7,8-二羟基-4-苯基香豆素,其次是5,7-二羟基-4-苯基香豆素。给出的结果与体外获得的抗菌活性结果一致。提出的发现表明4-苯基羟基香豆素可被认为是潜在抗菌剂的良好分子模板,并可用于进一步的化学修饰以改善其抗菌活性。

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