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首页> 外文期刊>Advanced Science, Engineering and Medicine >Unveiling the Antimicrobial Activities of Dicationic Carbazoles and Related Analogs Through Computational Docking
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Unveiling the Antimicrobial Activities of Dicationic Carbazoles and Related Analogs Through Computational Docking

机译:通过计算对接揭示Daticic Carbazoles及相关类似物的抗微生物活性

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摘要

Computational docking is a globally used tool now-a-days in bioinformatics. All the drugs/ligands generate their effect only when they interact/bind with the target molecule, here DNA. The potential drugs/ligands can only be identified by the study of their relative binding energiesand preferential binding modes. Due to availability of huge numbers of such drugs/ligands; the evaluation of their relative potency is a challenging task. In the present work, carbazoles and its derivatives were studied for their DNA binding abilities using computational molecular docking.All the docked ligands had planar structures which allowed them to adopt crescent shape and thus minor groove binding to DNA was preferred by most of them. Computational docking revealed that DNA binding energies of carbazoles and its analogs followed the same trend as their thermal meltingvalues. Also the drugs/ligands preferred themselves to bind at AT-rich regions of the minor groove of the selected DNA sequences.
机译:计算对接是现在的全球使用的工具 - 在生物信息学中为期。 所有药物/配体才产生它们的效果,只有当它们与靶分子相互作用/结合,此处都是DNA。 潜在的药物/配体只能通过研究其相对结合能和优先结合模式的研究来鉴定。 由于巨大数量的此类药物/配体; 对其相对效力的评估是一个具有挑战性的任务。 在目前的工作中,使用计算分子对接研究了咔唑及其衍生物的DNA结合能力。停顿配体具有平面结构,使它们允许它们采用新月形,因此大部分大部分较小的沟槽与DNA的较小槽合结合。 计算对接显示咔唑的DNA结合能量及其类似物伴随着与热熔熔化值相同的趋势。 此外,药物/配体优选自己在所选择的DNA序列的少量凹槽的富槽的富含区域中结合。

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