CYP51 structures and structure-based development of novel, pathogen-specific inhibitory scaffolds

被引:44
作者
Hargrove, Tatiana Y. [1 ]
Kim, Kwangho [2 ]
Correia Soeiro, Maria de Nazare [3 ]
da Silva, Cristiane Franca [3 ]
Jaen Batista, Denise da Gama [3 ]
Batista, Marcos Meuser [3 ]
Yazlovitskaya, Eugenia M. [4 ]
Waterman, Michael R. [1 ]
Sulikowski, Gary A. [2 ]
Lepesheva, Galina I. [1 ]
机构
[1] Vanderbilt Univ, Dept Biochem, Sch Med, Nashville, TN 37232 USA
[2] Vanderbilt Univ, Dept Chem, Vanderbilt Inst Chem Biol, Nashville, TN 37232 USA
[3] Fiocruz MS, Inst Oswaldo Cruz, Lab Cellular Biol, BR-21045900 Rio De Janeiro, Brazil
[4] Vanderbilt Univ, Sch Med, Dept Med, Vanderbilt Ingram Canc Ctr, Nashville, TN 37232 USA
来源
INTERNATIONAL JOURNAL FOR PARASITOLOGY-DRUGS AND DRUG RESISTANCE | 2012年 / 2卷
关键词
Sterol; 14; alpha-demethylase; CYP51; Inhibition; Crystal structure; STEROL 14-ALPHA-DEMETHYLASE CYP51; TRYPANOSOMA-BRUCEI; SUBSTRATE PREFERENCES; CRYSTAL-STRUCTURES; IN-VIVO; TARGET; CRUZI; FLUORINE;
D O I
10.1016/j.ijpddr.2012.06.001
中图分类号
R38 [医学寄生虫学]; Q [生物科学];
学科分类号
07 ; 0710 ; 09 ; 100103 ;
摘要
CYP51 (sterol 14 alpha-demethylase) is a cytochrome P450 enzyme essential for sterol biosynthesis and the primary target for clinical and agricultural antifungal azoles. The azoles that are currently in clinical use for systemic fungal infections represent modifications of two basic scaffolds, ketoconazole and fluconazole, all of them being selected based on their antiparasitic activity in cellular experiments. By studying direct inhibition of CYP51 activity across phylogeny including human pathogens Trypanosoma brucei, Trypanosoma cruzi and Leishmania infantum, we identified three novel protozoa-specific inhibitory scaffolds, their inhibitory potency correlating well with antiprotozoan activity. VNI scaffold (carboxamide containing beta-phenyl-imidazoles) is the most promising among them: killing T. cruzi amastigotes at low nanomolar concentration, it is also easy to synthesize and nontoxic. Oral administration of VNI (up to 400 mg/kg) neither leads to mortality nor reveals significant side effects up to 48 h post treatment using an experimental mouse model of acute toxicity. Trypanosomatidae CYP51 crystal structures determined in the ligand-free state and complexed with several azole inhibitors as well as a substrate analog revealed high rigidity of the CYP51 substrate binding cavity, which must be essential for the enzyme strict substrate specificity and functional conservation. Explaining profound potency of the VNI inhibitory scaffold, the structures also outline guidelines for its further development. First steps of the VNI scaffold optimization have been undertaken; the results presented here support the notion that CYP51 structure-based rational design of more efficient, pathogen-specific inhibitors represents a highly promising direction. (C) 2012 Australian Society for Parasitology Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:178 / 186
页数:9
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