Cheesman Matthew J, Baer Brian R, Zheng Yi-Min, Gillam Elizabeth M J, Rettie Allan E
Department of Medicinal Chemistry, University of Washington, Seattle, WA 98195, USA.
Arch Biochem Biophys. 2003 Aug 1;416(1):17-24. doi: 10.1016/s0003-9861(03)00278-9.
Modifications at the N-terminus of the rabbit CYP4B1 gene resulted in expression levels in Escherichia coli of up to 660 nmol/L. Solubilization of the enzyme from bacterial membranes led to substantial conversion to cytochrome P420 unless alpha-naphthoflavone was added as a stabilizing ligand. Mass spectrometry analysis and Edman sequencing of purified enzyme preparations revealed differential N-terminal post-translational processing of the various constructs expressed. Notably, bacterial expression of CYP4B1 produced a holoenzyme with >98.5% of its heme prosthetic group covalently linked to the protein backbone. The near fully covalently linked hemoproteins exhibited similar rates and regioselectivities of lauric acid hydroxylation to that observed previously for the partially heme processed enzyme expressed in insect cells. These studies shed new light on the consequences of covalent heme processing in CYP4B1 and provide a facile system for future mechanistic and structural studies with the enzyme.
对兔CYP4B1基因N端的修饰使得其在大肠杆菌中的表达水平高达660 nmol/L。从细菌膜中溶解该酶会导致大量转化为细胞色素P420,除非添加α-萘黄酮作为稳定配体。对纯化酶制剂的质谱分析和埃德曼测序揭示了所表达的各种构建体的N端翻译后加工存在差异。值得注意的是,CYP4B1在细菌中的表达产生了一种全酶,其血红素辅基>98.5%与蛋白质主链共价连接。这种几乎完全共价连接的血红蛋白对月桂酸羟基化的速率和区域选择性与之前在昆虫细胞中表达的部分血红素加工酶所观察到的相似。这些研究为CYP4B1中共价血红素加工的后果提供了新的见解,并为该酶未来的机制和结构研究提供了一个简便的系统。