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首页> 外文期刊>Journal of Medicinal Chemistry >Novel Dihydrofolate Reductase Inhibitors. Structure-Based versus Diversity-Based Library Design and High-Throughput Synthesis and Screening
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Novel Dihydrofolate Reductase Inhibitors. Structure-Based versus Diversity-Based Library Design and High-Throughput Synthesis and Screening

机译:新型二氢叶酸还原酶抑制剂。基于结构与基于多样性的库设计以及高通量合成和筛选

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摘要

Novel 2,4-diaminopyrimidines bearing N,N-disubstituted aminomethyl residues at the 5-position were designed as dihydrofolate reductase (DHFR) inhibitors. These compounds were obtained by treatment of 1-[(2,4-diamino-5-pyrimidinyl)methyl]pyridinium bromide with secondary amines in a polar solvent and in the presence of triethylamine at room temperature. The procedure was found to be very efficient and suitable for application in high-throughput synthesis. In addition, we found that high-throughput screening for enzymatic and in vitro antibacterial activity could be performed on crude reaction mixtures, thus avoiding any purification step. Over 1200 proprietary secondary amines were selected for high-throughput synthesis, based on structural and diversity-related criteria, and the resulting products were submitted to high-throughput screening. A greater number of hits, and significantly more active compounds, were obtained through structure-based library design than through diversity-based library design. Different classes of inhibitors of DHFR were identified in this way, including compounds derived from di-, tri-, and tetracyclic amines. In general, these products showed high activity against the enzymes derived from both TMP-sensitive and TMP-resistant Streptococcus pneumoniae. Some compounds possessed appreciable selectivity for the bacterial over the human enzyme, whereas other compounds were not at all selective. In most cases, active enzyme inhibitors also displayed antibacterial activity.
机译:将在5-位带有N,N-二取代的氨基甲基残基的新型2,4-二氨基嘧啶设计为二氢叶酸还原酶(DHFR)抑制剂。这些化合物是通过在极性溶剂中和在三乙胺存在下于室温下用仲胺处理1-[(2,4-二氨基-5-嘧啶基)甲基]溴化吡啶鎓而获得的。发现该方法非常有效并且适用于高通量合成。此外,我们发现可以对粗制反应混合物进行酶促和体外抗菌活性的高通量筛选,从而避免了任何纯化步骤。根据与结构和多样性相关的标准,选择了1200多种专有仲胺用于高通量合成,然后将所得产物进行高通量筛选。通过基于结构的文库设计比通过基于多样性的文库设计获得更多的命中数和明显更多的活性化合物。以此方式鉴定了不同种类的DHFR抑制剂,包括衍生自二,三和四环胺的化合物。通常,这些产品对源自TMP敏感和TMP耐药的肺炎链球菌的酶显示出高活性。一些化合物对细菌具有比人类酶明显的选择性,而其他化合物则完全没有选择性。在大多数情况下,活性酶抑制剂也显示出抗菌活性。

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