Rabelo Vitor W, Santos Taísa F, Terra Luciana, Santana Marcos V, Castro Helena C, Rodrigues Carlos R, Abreu Paula A
Laboratório de Modelagem Molecular e Pesquisa em Ciências Farmacêuticas (LAMCIFAR), Universidade Federal do Rio de Janeiro, Campus Macaé Professor Aloísio Teixeira, Avenida São José do Barreto 767, CEP 27965-045, Macaé, RJ, Brazil.
Laboratório de Antibióticos, Bioquímica, Ensino e Modelagem Molecular (LabiEMol), Instituto de Biologia, Universidade Federal Fluminense, Campus Valonguinho Outeiro de São João Baptista s/n, Centro, CEP 24210130, Niterói, RJ, Brazil.
Fundam Clin Pharmacol. 2017 Feb;31(1):37-53. doi: 10.1111/fcp.12230. Epub 2016 Aug 24.
CYP51 is an enzyme of sterol biosynthesis pathway present in animals, plants, protozoa and fungi. This enzyme is described as an important drug target that is still of interest. Therefore, in this work, we reviewed the structure and function of CYP51 and explored the molecular modeling approaches for the development of new antifungal and antiprotozoans that target this enzyme. Crystallographic structures of CYP51 of some organisms have already been described in the literature, which enable the construction of homology models of other organisms' enzymes and molecular docking studies of new ligands. The binding mode and interactions of some new series of azoles with antifungal or antiprotozoan activities has been studied and showed important residues of the active site. Molecular modeling is an important tool to be explored for the discovery and optimization of CYP51 inhibitors with better activities, pharmacokinetics, and toxicological profiles.
细胞色素P450 51(CYP51)是存在于动物、植物、原生动物和真菌中的固醇生物合成途径的一种酶。这种酶被认为是一个仍受关注的重要药物靶点。因此,在本研究中,我们综述了CYP51的结构和功能,并探索了针对该酶开发新型抗真菌和抗原生动物药物的分子建模方法。一些生物体的CYP51晶体结构已在文献中有所描述,这有助于构建其他生物体酶的同源模型以及对新配体进行分子对接研究。已经研究了一些具有抗真菌或抗原生动物活性的新型唑类化合物的结合模式和相互作用,并揭示了活性位点的重要残基。分子建模是一种重要工具,可用于发现和优化具有更好活性、药代动力学和毒理学特征的CYP51抑制剂。