Department of Biochemical Sciences "Alessandro Rossi Fanelli", Sapienza, University of Rome, P. le Aldo Moro, 5, 00185 Rome, Italy; Takis Biotech, Via di Castel Romano 100, 00128 Rome, Italy.
Institute of Molecular Biology and Pathology c/o Department of Biochemical Sciences "Alessandro Rossi Fanelli", Sapienza, University of Rome, National Research Council, P.le Aldo Moro, 5, 00185 Rome, Italy.
Structure. 2024 Sep 5;32(9):1465-1476.e3. doi: 10.1016/j.str.2024.06.005. Epub 2024 Jul 5.
OleP is a bacterial cytochrome P450 involved in oleandomycin biosynthesis as it catalyzes regioselective epoxidation on macrolide intermediates. OleP has recently been reported to convert lithocholic acid (LCA) into murideoxycholic acid through a highly regioselective reaction and to unspecifically hydroxylate testosterone (TES). Since LCA and TES mainly differ by the substituent group at the C17, here we used X-ray crystallography, equilibrium binding assays, and molecular dynamics simulations to investigate the molecular basis of the diverse reactivity observed with the two steroids. We found that the differences in the structure of TES and LCA affect the capability of these molecules to directly form hydrogen bonds with N-terminal residues of OleP internal helix I. The establishment of these contacts, by promoting the bending of helix I, fosters an efficient trigger of the open-to-closed structural transition that occurs upon substrate binding to OleP and contributes to the selectivity of the subsequent monooxygenation reaction.
OleP 是一种细菌细胞色素 P450,参与土霉素生物合成,因为它催化大环内酯中间体的区域选择性环氧化。最近有报道称,OleP 通过高度区域选择性反应将石胆酸(LCA)转化为鼠胆脱氧胆酸,并非特异性地羟化睾丸酮(TES)。由于 LCA 和 TES 主要区别在于 C17 上的取代基,因此我们使用 X 射线晶体学、平衡结合测定和分子动力学模拟来研究两种甾体化合物表现出不同反应性的分子基础。我们发现 TES 和 LCA 的结构差异影响这些分子与 OleP 内部螺旋 I 的 N 端残基直接形成氢键的能力。通过促进螺旋 I 的弯曲,建立这些接触促进了底物结合到 OleP 时发生的开-闭结构转变的有效触发,这有助于随后的单加氧反应的选择性。