首页> 外文期刊>Journal of Medicinal Chemistry >Structural studies on bioactive compounds. 34. Design, synthesis, and biological evaluation of triazenyl-substituted pyrimethamine inhibitors of Pneumocystis carinii dihydrofolate reductase.
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Structural studies on bioactive compounds. 34. Design, synthesis, and biological evaluation of triazenyl-substituted pyrimethamine inhibitors of Pneumocystis carinii dihydrofolate reductase.

机译:生物活性化合物的结构研究。 34.卡氏肺孢子虫二氢叶酸还原酶的三氮烯基取代的乙胺嘧啶抑制剂的设计,合成和生物学评估。

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The triazenyl-pyrimethamine derivative 3a (TAB), a potent and selective inhibitor of Pneumocystis carinii DHFR, was selected as the starting point for a lead optimization study. Molecular modeling studies, corroborated by a recent crystal structure determination of the ternary complex of P. carinii DHFR--NADPH bound to TAB, predicted that modifications to the acetoxy residue of the lead inhibitor could exploit binding opportunities in the vicinity of an active site pocket bounded by residues Ile33, Lys37, and Leu72. Substitutions in the benzyl moiety with electron-donating and electron-withdrawing groups were predicted to probe face-edge interactions with amino acid Phe69 unique to the P. carinii enzyme. New triazenes 10a--v and 12a--f were prepared by coupling the diazonium tetrafluoroborate salt 6b of aminopyrimethamine with substituted benzylamines or phenethylamines. The most potent of the new inhibitors against P. carinii DHFR was the naphthylmethyl-substituted triazene 10t (IC(50): 0.053 microM), but a more substantial increase in potency against the rat liver DHFR led to a reduction in selectivity (ratio rat liver DHFR IC(50)/P. carinii DHFR IC(50): 5.36) compared to the original lead structure 3a (ratio rat liver DHFR IC(50)/P. carinii DHFR IC(50): 114).
机译:选择了三氮烯基-乙胺嘧啶衍生物3a(TAB)(一种有效的选择性卡氏肺孢子虫DHFR抑制剂)作为前导优化研究的起点。分子建模研究得到了最近对TAB结合的Carinii DHFR-NADPH三元复合物晶体结构测定的证实,预测对铅抑制剂乙酰氧基残基的修饰可以利用活性位点附近的结合机会由残基Ile33,Lys37和Leu72结合。预测用给电子基团和吸电子基团取代苄基部分可探测与卡氏疟原虫酶独特的氨基酸Phe69的面缘相互作用。新的三氮烯10a-v和12a-f是通过将氨基乙胺的四氟硼酸重氮盐6b与取代的苄胺或苯乙胺偶联而制得的。在新的抗卡氏疟原虫DHFR抑制剂中,最有效的是萘基甲基取代的三氮烯10t(IC(50):0.053 microM),但对大鼠肝脏DHFR的效价更大幅度的升高导致选择性降低(比率为大鼠肝脏DHFR IC(50)/卡氏毕赤酵母DHFR IC(50):5.36)与原始铅结构3a的比率(大鼠肝脏DHFR IC(50)/卡氏毕赤酵母DHFR IC(50):114)。

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