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Green Synthesis, Experimental and Theoretical Studies to Discover Novel Binders of Exosomal Tetraspanin CD81 Protein

机译:绿色合成,实验和理论研究,探索外泌体四蛋白CD81蛋白的新型粘合剂

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A new class of benzothiazole-appended quinoline derivatives (6 –8 ) was synthesized via one-pot TPGS micellar-mediated acid-catalyzed nucleophilic addition, followed by aerobic oxidative cyclization of 3-formylquinoline-2-one (2 ), 3-formylquinoline-2-thione (3 ), and 2-azidoquinoline-3-carbaldehyde (4 ) individually with 2-amino thiophenol (5 ). The structures of the prepared compounds were confirmed using suitable spectroscopic methods complemented with single-crystal X-ray diffraction analysis. Time-dependent density functional theory-based optimization of molecular structures, bond lengths, bond angles, HOMO–LUMO energy gaps, and molecular electrostatic potential maps was theoretically computed at the B3LYP/6-311++g(d) level. The molecular docking studies recommended that 6 –8 bound to the active site cavity of CD81 effectively with the binding energies of ?6.9, ?6.3, and ?6.5 kcal mol~(–1), respectively. Further, MD simulation studies of compound 6 suggested that the binding resulted in the stabilization of the CD81 molecule. Thus, all theoretical predictions associated with the experimental verifications motivated to discover novel approaches for cancer therapy.
机译:通过单壶TPGS介导的酸催化的亲核添加合成了一类新的苯并噻唑附加的喹啉衍生物( 6 - 8),然后通过3-甲酰基喹啉-2-一度的有氧氧化环化(用2-氨基噻吩酚( 5)单独用3-甲酰基喹啉-2-倍硫基( 3)和2-氮杂喹啉-3-丙醛( 4)。使用合适的光谱方法确认制备的化合物的结构,互补的单晶X射线衍射分析。在B3LYP / 6-311 ++ G(D)水平上理论上计算了分子结构的时间依赖性密度的优化分子结构,键合长度,键角,同源漏洞和分子静电潜在地图。分子对接研究推荐使用α6.6,β6.3和α6.3和α6.6,〜6.5kcal〜(-1)的结合能,有效地结合到CD81的活性部位腔。此外,化合物 6的MD模拟研究表明,结合导致CD81分子的稳定化。因此,与实验性试验相关的所有理论预测,激发了癌症治疗的新方法。

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