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首页> 外文期刊>Journal of Medicinal Chemistry >Designing active template molecules by combining computational de novo design and human chemist's expertise.
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Designing active template molecules by combining computational de novo design and human chemist's expertise.

机译:结合计算从头设计和化学家的专业知识,设计活性模板分子。

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We used a new software tool for de novo design, the "Molecule Evoluator", to generate a number of small molecules. Explicit constraints were a relatively low molecular weight and otherwise limited functionality, for example, low numbers of hydrogen bond donors and acceptors, one or two aromatic rings, and a small number of rotatable bonds. In this way, we obtained a collection of scaffold- or templatelike molecules rather than fully "decorated" ones. We asked medicinal chemists to evaluate the suggested molecules for ease of synthesis and overall appeal, allowing them to make structural changes to the molecules for these reasons. On the basis of their recommendations, we synthesized eight molecules with an unprecedented (not patented) yet simple structure, which were subsequently tested in a screen of 83 drug targets, mostly G protein-coupled receptors. Four compounds showed affinity for biogenic amine targets (receptor, ion channel, and transport protein), reflecting the training of the medicinal chemists involved. Apparently the generation of leadlike solutions helped the medicinal chemists to select good starting points for future lead optimization, away from existing compound libraries.
机译:我们使用了一种新的软件工具“ Molecule Evoluator”进行从头设计,以生成许多小分子。明确的限制条件是相对低的分子量和其他受限制的功能,例如,氢键供体和受体的数量少,一个或两个芳环以及少量的可旋转键。这样,我们获得了支架或模板样分子的集合,而不是完全“装饰”的分子。我们要求药用化学家评估建议的分子的合成简便性和总体吸引力,基于这些原因,允许他们对分子进行结构更改。根据他们的建议,我们合成了八个具有前所未有的(未获得专利)但结构简单的分子,随后在83种药物靶标(主要是G蛋白偶联受体)的筛选中进行了测试。四种化合物显示出对生物胺目标(受体,离子通道和转运蛋白)的亲和力,反映了所涉药物化学家的训练。显然,类似铅的解决方案的产生帮助药用化学家从现有化合物库中选择了未来铅优化的良好起点。

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