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首页> 外文期刊>Molecular informatics >Key Structural Features of Azanaphthoquinone Annelated Pyrrole Derivative as Anticancer Agents Based on the Rational Drug Design Approaches
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Key Structural Features of Azanaphthoquinone Annelated Pyrrole Derivative as Anticancer Agents Based on the Rational Drug Design Approaches

机译:基于合理药物设计方法的氮杂萘醌退火吡咯衍生物作为抗癌药的关键结构特征

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Azanaphthoquinone annelated pyrrole derivatives have been developed and synthesized with a continuous attempt to develop novel DNA intercalating agents as anti-cancer compounds with lower organ toxicity. With the remarkable antiproliferative activity of synthesized azanaphthoquinone annelated pyrrole derivatives, a structurally novel scaffold of these compounds is appropriated for further development of novel anti-cancer agents. Therefore, in the present study, 3D QSAR study (CoMSIA) was applied on 28 azanaphthoquinone annelated pyrrole derivatives to evaluate the structural requirement of these compounds. The resulting CoMSIA model is satisfied with r2 of 0.99 and q~2 of 0.65. The interpretation of CoMSIA contours reveals the significant importance of steric, electrostatic, hydropho-bic and hydrogen acceptor descriptors on the activities of azanaphthoquinone annelated pyrrole derivatives. Remarkably, the structural requirement of six substituent positions on the azanaphthoquinone annelated pyrrole scaffold was elucidated here. This result is the useful concept for design of new and more active azanaphthoquinone annelated pyrrole derivatives. Moreover, MD simulations using AMBER program were performed to model the binding of azanaphthoquinone annelated pyrrole derivatives in the intercalation site of the DNA duplex. Based on MD simulations, the information in terms of ligand-DNA interaction, complex structure and binding free energy was provided in this work. Therefore, the integrated results are informative for further modification of azanaphthoquinone annelated pyrrole scaffold leading to gain novel azanaphthoquinone annelated pyrrole derivatives possessing better antiproliferative activity.
机译:已经开发并合成了氮杂萘醌退火的吡咯衍生物,并不断尝试开发新的DNA嵌入剂作为具有较低器官毒性的抗癌化合物。具有合成的氮杂萘醌退火的吡咯衍生物的显着的抗增殖活性,这些化合物的结构新颖的支架适合于进一步开发新颖的抗癌剂。因此,在本研究中,将3D QSAR研究(CoMSIA)用于28种氮杂萘醌退火的吡咯衍生物,以评估这些化合物的结构要求。所得的CoMSIA模型满足r2为0.99和q〜2为0.65。 CoMSIA轮廓的解释揭示了空间,静电,疏水和氢受体描述符对氮杂萘醌退火吡咯衍生物活性的重要作用。显着地,在此阐明了氮杂萘醌退火的吡咯支架上六个取代基位置的结构要求。该结果对于设计新的和活性更高的氮杂萘醌退火的吡咯衍生物是有用的概念。此外,使用AMBER程序进行了MD模拟,以模拟氮杂萘醌退火的吡咯衍生物在DNA双链体插入位点的结合。基于MD模拟,在这项工作中提供了有关配体-DNA相互作用,复杂结构和结合自由能的信息。因此,综合结果为进一步修饰氮杂萘醌退火的吡咯支架提供了信息,从而获得了具有更好的抗增殖活性的新型氮杂萘醌退火的吡咯衍生物。

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