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首页> 外文期刊>Journal of Medicinal Chemistry >Design and synthesis of potent inhibitors of plasmepsin I and II: X-ray crystal structure of inhibitor in complex with plasmepsin II
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Design and synthesis of potent inhibitors of plasmepsin I and II: X-ray crystal structure of inhibitor in complex with plasmepsin II

机译:纤溶酶I和II的有效抑制剂的设计与合成:与纤溶酶II复合的抑制剂的X射线晶体结构

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摘要

New and potent inhibitors of the malarial aspartic proteases plasmepsin (Plm) I and II, from the deadliest malaria parasite Plasmodium falciparum, have been synthesized utilizing Suzuki coupling reactions on previously synthesized bromobenzyloxy-substituted statine-like inhibitors. The enzyme inhibition activity has been improved up to eight times by identifying P1 substituents that effectively bind to the continuous S1-S3 crevice of Plasmepsin I and II. By replacement of the bromo atom in the P1 p-bromobenzyloxy-substituted inhibitors with different aryl substituents, several inhibitors exhibiting K-i values in the low nanomolar range for both Plm I and II have been identified. Some of these inhibitors are also effective in attenuating parasite growth in red blood cells, with the best inhibitors, compounds 2 and 4, displaying 70% and 83% inhibition, respectively, at a concentration of 5 mu M. The design was partially guided by the X-ray crystal structure disclosed herein of the previously synthesized inhibitor I in complex with plasmepsin II.
机译:利用最先合成的溴苄氧基取代的他汀类抑制剂,利用Suzuki偶联反应合成了来自最致命的疟原虫恶性疟原虫的新型和有效的天冬氨酸蛋白酶纤溶酶(Plm)I和II抑制剂。通过鉴定可有效结合至纤溶酶I和II的连续S1-S3缝隙的P1取代基,酶抑制活性提高了八倍。通过用不同的芳基取代基取代P1对-溴苄氧基取代的抑制剂中的溴原子,已经鉴定出几种对Plm I和II都显示出低纳摩尔范围内K-i值的抑制剂。这些抑制剂中的某些也可有效减轻红细胞中的寄生虫生长,最好的抑制剂化合物2和4在5μM的浓度下分别表现出70%和83%的抑制作用。本文公开的先前合成的抑制剂I与纤溶酶II复合的X射线晶体结构。

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