Gomaa Mohamed Sayed, Yee Sook Wah, Milbourne Ceri Elizabeth, Barbera Maria Chiara, Simons Claire, Brancale Andrea
Medicinal Chemistry, Welsh School of Pharmacy, Cardiff University, King Edward VII Avenue, Cardiff CF10 3XF, UK.
J Enzyme Inhib Med Chem. 2006 Aug;21(4):361-9. doi: 10.1080/14756360600742014.
Homology models of cytochrome P450 RA1 (CYP26A1) were constructed using three human P450 structures, CYP2C8, CYP2C9 and CYP3A4 as templates for the model building. Using MOE software the lowest energy CYP26A1 model was then assessed for stereochemical quality and side chain environment. Further active site optimisation of the CYP26A1 model built using the CYP3A4 template was performed by molecular dynamics to generate a final CYP26A1 model. The natural substrate, all-trans-retinoic acid (atRA), and inhibitor R 15866, were docked into the model allowing further validation of the active site architecture. Using the docking studies structurally and functionally important residues were identified with subsequent characterisation of secondary structure. Multiple hydrophobic interactions, including the side chains of TRP112, PHE299, PHE222, PHE84, PHE374 and PRO371, are important for binding of atRA and R115866. Additional hydrogen bonding interactions were noted as follows: atRA-- C==O of the atRA carboxylate group and ARG86; R115866--benzothiazole nitrogen and the backbone NH of SER115.
使用三种人类细胞色素P450结构(CYP2C8、CYP2C9和CYP3A4)作为模板构建细胞色素P450 RA1(CYP26A1)的同源模型。然后使用MOE软件评估能量最低的CYP26A1模型的立体化学质量和侧链环境。通过分子动力学对使用CYP3A4模板构建的CYP26A1模型进行进一步的活性位点优化,以生成最终的CYP26A1模型。将天然底物全反式维甲酸(atRA)和抑制剂R 15866对接至该模型,以进一步验证活性位点结构。通过对接研究确定了在结构和功能上重要的残基,并随后对二级结构进行了表征。包括色氨酸112、苯丙氨酸299、苯丙氨酸222、苯丙氨酸84、苯丙氨酸374和脯氨酸371侧链在内的多种疏水相互作用,对于atRA和R115866的结合很重要。还发现了其他氢键相互作用如下:atRA——atRA羧基的C==O与精氨酸86;R115866——苯并噻唑氮与丝氨酸115的主链NH。