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法尼基蛋白转移酶强效非硫醇抑制剂的设计与体内分析

Design and in vivo analysis of potent non-thiol inhibitors of farnesyl protein transferase.

作者信息

Anthony N J, Gomez R P, Schaber M D, Mosser S D, Hamilton K A, O'Neil T J, Koblan K S, Graham S L, Hartman G D, Shah D, Rands E, Kohl N E, Gibbs J B, Oliff A I

机构信息

Department of Medicinal Chemistry, Merck Research Laboratories, West Point, Pennsylvania 19486, USA.

出版信息

J Med Chem. 1999 Aug 26;42(17):3356-68. doi: 10.1021/jm990080l.

Abstract

Inhibitors of farnesyl protein transferase (FPTase) based upon a pseudotripeptide template are described that comprise an imidazole group substituted with a hydrophobic substituent. (1, 5)-Disubstitution of the imidazole group is shown to be the optimal array that leads to potent and selective inhibitors of FPTase. A variety of aryl and isoprenyl substituents are shown to afford effective inhibitors, and the mechanism by which these compounds inhibit FPTase has been investigated. The biochemical behavior of these compounds suggests that they bind to FPTase at the site usually occupied by the protein substrate. In experiments in cell culture, the methyl ester prodrugs of these inhibitors are cell permeant and potently inhibit the posttranslational modification of H-Ras protein. Additionally, these molecules revert the phenotype of ras transformed cells as evidenced by their ability to slow the growth of ras transformed cell lines in soft agar. One of the inhibitors, as its methyl prodrug, was evaluated in two in vivo models of tumor growth. The compound selectively inhibited the growth of tumors derived from H-ras transformed cells, in nude mice, and caused the regression of preexisting tumors in an H-ras transgenic animal model.

摘要

描述了基于假三肽模板的法尼基蛋白转移酶(FPTase)抑制剂,其包含被疏水取代基取代的咪唑基团。已表明咪唑基团的(1,5)-二取代是产生强效和选择性FPTase抑制剂的最佳排列方式。已表明多种芳基和异戊二烯基取代基可提供有效的抑制剂,并且已对这些化合物抑制FPTase的机制进行了研究。这些化合物的生化行为表明它们在通常被蛋白质底物占据的位点与FPTase结合。在细胞培养实验中,这些抑制剂的甲酯前药可透过细胞,并有效抑制H-Ras蛋白的翻译后修饰。此外,这些分子可使ras转化细胞的表型恢复正常,这可通过它们在软琼脂中减缓ras转化细胞系生长的能力得到证明。其中一种抑制剂作为其甲基前药,在两种肿瘤生长的体内模型中进行了评估。该化合物在裸鼠中选择性抑制源自H-ras转化细胞的肿瘤生长,并在H-ras转基因动物模型中使已有的肿瘤消退。

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