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2-氨基-3-(1H-吲哚-3-基)-N-取代丙酰胺作为一类新型的恶性疟原虫蛋白酶-2抑制剂。1. 设计、合成、生物学评价及结合模式研究。

2-amido-3-(1H-indol-3-yl)-N-substituted-propanamides as a new class of falcipain-2 inhibitors. 1. Design, synthesis, biological evaluation and binding model studies.

作者信息

Zhu Jin, Chen Tong, Chen Lili, Lu Weiqiang, Che Peng, Huang Jin, Li Honglin, Li Jian, Jiang Hualiang

机构信息

School of Pharmacy, East China University of Science and Technology, 130 Mei Long Road, Shanghai 200237, PR China.

出版信息

Molecules. 2009 Jan 21;14(1):494-508. doi: 10.3390/molecules14010494.

Abstract

The Plasmodium falciparum cysteine protease falcipain-2 (FP-2) is an important cysteine protease and an essential hemoglobinase of erythrocytic P. falciparum trophozoites. The discovery of new FP-2 inhibitors is now a hot topic in the search for potential malaria treatments. In this study, a series of novel small molecule FP-2 inhibitors have been designed and synthesized based on three regional optimizations of the lead (R)-2-phenoxycarboxamido-3-(1H-indol-3-yl)-N-benzylpropanamide(1), which was identified using structure-based virtual screening in conjunction with surface plasmon resonance (SPR)-based binding assays. Four compounds--1, 2b, 2k and 2l--showed moderate FP-2 inhibition activity, with IC(50) values of 10.0-39.4 microM, and the inhibitory activity of compound 2k was approximately 3-fold better than that of the prototype compound 1 and may prove useful for the development of micromolar level FP-2 inhibitors. Preliminary SAR data was obtained, while molecular modeling revealed that introduction of H-bond donor or/and acceptor atoms to the phenyl ring moiety in the C region would be likely to produce some additional H-bond interactions, which should consequently enhance molecular bioactivity.

摘要

恶性疟原虫半胱氨酸蛋白酶恶性疟原虫蛋白酶-2(FP-2)是一种重要的半胱氨酸蛋白酶,也是红细胞内恶性疟原虫滋养体必需的血红蛋白酶。新型FP-2抑制剂的发现是目前寻找潜在疟疾治疗方法的热门话题。在本研究中,基于先导化合物(R)-2-苯氧基甲酰胺基-3-(1H-吲哚-3-基)-N-苄基丙酰胺(1)的三个区域优化设计并合成了一系列新型小分子FP-2抑制剂,该先导化合物是通过基于结构的虚拟筛选结合表面等离子体共振(SPR)结合试验鉴定出来的。四种化合物——1、2b、2k和2l——表现出中等程度的FP-2抑制活性,IC(50)值为10.0 - 39.4 microM,化合物2k的抑制活性比原型化合物1约高3倍,可能对开发微摩尔水平的FP-2抑制剂有用。获得了初步的构效关系数据,同时分子模拟表明,在C区域的苯环部分引入氢键供体或/和受体原子可能会产生一些额外的氢键相互作用,从而增强分子生物活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e3d/6253880/ff9037b5337e/molecules-14-00494-g001.jpg

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