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首页> 外文期刊>Combinatorial Chemistry _High Throughput Screening >Comparative Molecular Surface Analysis (CoMSA) for Virtual Combinatorial Library Screening of Styrylquinoline HIV-1 Blocking Agents
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Comparative Molecular Surface Analysis (CoMSA) for Virtual Combinatorial Library Screening of Styrylquinoline HIV-1 Blocking Agents

机译:比较分子表面分析(CoMSA)用于虚拟组合图书馆筛选苯乙烯基喹啉HIV-1阻断剂

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摘要

We used comparative molecular surface analysis to design molecules for the synthesis as part of the search for new HIV-1 integrase inhibitors. We analyzed the virtual combinatorial library (VCL) constituted from various moieties of styrylquinoline and styrylquinazoline inhibitors. Since imines can be applied in a strategy of dynamic combinatorial chemistry (DCC), we also tested similar compounds in which the -C=N- or -N=C- linker connected the heteroaromatic and aromatic moieties. We then used principal component analysis (PCA) or self-organizing maps (SOM), namely, the Kohonen neural networks to obtain a clustering plot analyzing the diversity of the VCL formed. Previously synthesized compounds of known activity, used as molecular probes, were projected onto this plot, which provided a set of promising virtual drugs. Moreover, we further modified the above mentioned VCL to include the single bond linker -C-N- or -N-C-. This allowed increasing compound stability but expanded also the diversity between the available molecular probes and virtual targets. The application of the CoMSA with SOM indicated important differences between such compounds and active molecular probes. We synthesized such compounds to verify the computational predictions.
机译:我们使用比较分子表面分析法来设计用于合成的分子,作为寻找新的HIV-1整合酶抑制剂的一部分。我们分析了由苯乙烯基喹啉和苯乙烯基喹唑啉抑制剂的各个部分组成的虚拟组合库(VCL)。由于亚胺可用于动态组合化学(DCC)策略,因此我们还测试了类似的化合物,其中-C = N-或-N = C-接头连接杂芳族和芳族部分。然后,我们使用主成分分析(PCA)或自组织映射(SOM),即Kohonen神经网络来获得聚类图,以分析形成的VCL的多样性。以前合成的已知活性的化合物,用作分子探针,被投影到该图上,提供了一组有希望的虚拟药物。此外,我们进一步修改了上述VCL,使其包含单键连接子-C-N-或-N-C-。这样既可以提高化合物的稳定性,又可以扩大可用分子探针与虚拟靶标之间的多样性。 CoMSA与SOM的应用表明此类化合物与活性分子探针之间存在重要差异。我们合成了此类化合物以验证计算预测。

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