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首页> 外文期刊>Journal of molecular modeling >Computer simulation based selection of optimal monomer for imprinting of tri-O-acetiladenosine in polymer matrix: Vacuum calculations
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Computer simulation based selection of optimal monomer for imprinting of tri-O-acetiladenosine in polymer matrix: Vacuum calculations

机译:基于计算机模拟的最佳单体的选择,用于在聚合物基质中印迹三邻乙酰基腺苷:真空计算

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Molecularly imprinted polymers can be anticipated as synthetic imitation of natural antibodies, receptors and enzymes. In case of successful imprinting the selectivity and affinity of the imprint for substrate molecules are comparable with those of natural counterparts. The selection of the optimal functional monomer, monomer/template ratio as well as choosing of polymerization solvent is crucial determinants of the successful imprinting. In the present study the simulation approach to the development of molecular imprinting polymers for the extraction of new protein kinase ATP-competitive inhibitors is presented. By imprinting tri-O-acetyladenosine into polymer matrix the synthetic reproduction of adenosine triphosphate binding site to protein kinases can be fabricated and further used for adenosine triphosphate analogs screening in different sources. The optimized geometrical structure and energy of the pre-polymerization complexes of tri-O-acetyladenosine (template) with three different monomers - methacrylic acid, 3-vinyl benzoic acid and acrylamide in vacuum were calculated using hybrid quantum mechanical/molecular mechanical (QM/MM) approach. These calculations demonstrate that methacrylic acid forms the most stable complex with template, the next is 3-vinyl benzoic acid complex and the third - acrylamide one. The bond energies of the complexes are shown to increase monotonically as more monomers are linked to the template. The same conclusions are made from purely quantum self-consistent field calculations of pre-polymerization complex energy and structure. Hybrid calculation is shown to be effective and can substantially accelerate the development of the imprinting technology. [Figure not available: see fulltext.]
机译:分子印迹聚合物可以预期是天然抗体,受体和酶的合成模仿。在成功印迹的情况下,印迹对底物分子的选择性和亲和性可与天然对应物相比。最佳功能性单体的选择,单体/模板的比例以及聚合溶剂的选择是成功印记的关键因素。在本研究中,提出了一种用于开发分子印迹聚合物以提取新的蛋白激酶ATP竞争性抑制剂的模拟方法。通过将三-O-乙酰基腺苷印迹到聚合物基质中,可以制备三磷酸腺苷与蛋白激酶结合位点的合成复制品,并进一步用于不同来源的三磷酸腺苷类似物的筛选。使用混合量子力学/分子力学(QM /),计算了三邻乙酰基腺苷(模板)与三种不同单体(甲基丙烯酸,3-乙烯基苯甲酸和丙烯酰胺)在真空中的预聚合配合物的最佳几何结构和能量MM)的方法。这些计算表明,甲基丙烯酸与模板形成最稳定的配合物,其次是3-乙烯基苯甲酸配合物,第三种是丙烯酰胺。随着更多单体与模板的连接,络合物的键能显示出单调增加。从预聚合复杂能量和结构的纯量子自洽场计算得出相同的结论。混合计算被证明是有效的,并且可以大大加速压印技术的发展。 [图不可用:请参见全文。]

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