Biggs Bradley Walters, Rouck John Edward, Kambalyal Amogh, Arnold William, Lim Chin Giaw, De Mey Marjan, O'Neil-Johnson Mark, Starks Courtney M, Das Aditi, Ajikumar Parayil Kumaran
Manus Biosynthesis , 1030 Massachusetts Avenue, Suite 300, Cambridge, Massachusetts 02138, United States.
Department of Chemical and Biological Engineering (Masters in Biotechnology Program), Northwestern University , Evanston, Illinois 60208, United States.
ACS Chem Biol. 2016 May 20;11(5):1445-51. doi: 10.1021/acschembio.5b00968. Epub 2016 Mar 16.
Natural product metabolic engineering potentially offers sustainable and affordable access to numerous valuable molecules. However, challenges in characterizing and assembling complex biosynthetic pathways have prevented more rapid progress in this field. The anticancer agent Taxol represents an excellent case study. Assembly of a biosynthetic pathway for Taxol has long been stalled at its first functionalization, putatively an oxygenation performed by the cytochrome P450 CYP725A4, due to confounding characterizations. Here, through combined in vivo (Escherichia coli), in vitro (lipid nanodisc), and metabolite stability assays, we verify the presence and likely cause of this enzyme's inherent promiscuity. Thereby, we remove the possibility that promiscuity simply existed as an artifact of previous metabolic engineering approaches. Further, spontaneous rearrangement and the stabilizing effect of a hydrophobic overlay suggest a potential role for nonenzymatic chemistry in Taxol's biosynthesis. Taken together, this work confirms taxadiene-5α-ol as a primary enzymatic product of CYP725A4 and provides direction for future Taxol metabolic and protein engineering efforts.
天然产物代谢工程有望为获取众多有价值的分子提供可持续且经济实惠的途径。然而,在表征和组装复杂生物合成途径方面存在的挑战阻碍了该领域取得更快的进展。抗癌药物紫杉醇就是一个很好的案例研究。由于表征结果令人困惑,紫杉醇生物合成途径的组装长期以来一直停滞在其首次官能化步骤,据推测这一步骤是由细胞色素P450 CYP725A4进行的氧化反应。在此,我们通过体内(大肠杆菌)、体外(脂质纳米盘)和代谢物稳定性测定相结合的方法,验证了这种酶固有混杂性的存在及其可能原因。由此,我们排除了混杂性仅仅是先前代谢工程方法假象的可能性。此外,自发重排以及疏水覆盖层的稳定作用表明非酶化学在紫杉醇生物合成中可能发挥作用。综上所述,这项工作证实了紫杉二烯-5α-醇是CYP725A4的主要酶促产物,并为未来紫杉醇代谢和蛋白质工程研究提供了方向。