Podobnik Barbara, Stojan Jure, Lah Ljerka, Krasevec Nada, Seliskar Matej, Rizner Tea Lanisnik, Rozman Damjana, Komel Radovan
Lek Pharmaceuticals d d, Verovskova 57, SI-1000 Ljubljana, Slovenia.
J Med Chem. 2008 Jun 26;51(12):3480-6. doi: 10.1021/jm800030e.
A novel cytochrome P450, CYP53A15, was identified in the pathogenic filamentous ascomycete Cochliobolus lunatus. The protein, classified into the CYP53 family, was capable of para hydroxylation of benzoate. Benzoate is a key intermediate in the metabolism of aromatic compounds in fungi and yet basically toxic to the organism. To guide functional analyses, protein structure was predicted by homology modeling. Since many naturally occurring antifungal phenolic compounds are structurally similar to CYP53A15 substrates, we tested their putative binding into the active site of CYP53A15. Some of these compounds inhibited CYP53A15. Increased antifungal activity was observed when tested in the presence of benzoate. Some results suggest that CYP53A15 O-demethylation activity is important in detoxification of other antifungal substances. With the design of potent inhibitors, CYP53 enzymes could serve as alternative antifungal drug targets.
在致病性丝状子囊菌新月弯孢菌中鉴定出一种新型细胞色素P450,即CYP53A15。该蛋白被归类为CYP53家族,能够对苯甲酸进行对羟基化。苯甲酸是真菌中芳香族化合物代谢的关键中间体,但对生物体基本有毒。为指导功能分析,通过同源建模预测了蛋白质结构。由于许多天然存在的抗真菌酚类化合物在结构上与CYP53A15的底物相似,因此我们测试了它们与CYP53A15活性位点的假定结合情况。其中一些化合物抑制了CYP53A15。在苯甲酸存在下进行测试时,观察到抗真菌活性增强。一些结果表明,CYP53A15的O-去甲基化活性在其他抗真菌物质的解毒中很重要。通过设计强效抑制剂,CYP53酶可作为替代的抗真菌药物靶点。