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Metabolomic analysis and identification of a role for the orphan humancytochrome P450 2W1 in selective oxidation of lysophospholipids

机译:代谢组学分析和鉴定孤儿的作用细胞色素P450 2W1在溶血磷脂的选择性氧化中

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摘要

Human cytochrome P450 (P450) 2W1 is still considered an “orphan” because its physiological function is not characterized. To identify its substrate specificity, the purified recombinant enzyme was incubated with colorectal cancer extracts for untargeted substrate searches using an LC/MS-based metabolomic and isotopic labeling approach. In addition to previously reported fatty acids, oleyl (18:1) lysophosphatidylcholine (LPC, lysolecithin) was identified as a substrate for P450 2W1. Other human P450 enzymes tested showed little activity with 18:1 LPC. In addition to the LPCs, P450 2W1 acted on a series of other lysophospholipids, including lysophosphatidylinositol, lysophosphatidylserine, lysophosphatidylglycerol, lysophosphatidylethanolamine, and lysophosphatidic acid but not diacylphospholipids. P450 2W1 utilized sn-1 18:1 LPC as a substrate much more efficiently than the sn-2 isomer; we conclude that the sn-1 isomers of lysophospholipids are preferred substrates. Chiral analysis was performed on the 18:1 epoxidation products and showed enantio-selectivity for formation of (9R,10S) over (9S,10R). The kinetics and position specificities of P450 2W1-catalyzed oxygenation of lysophospholipids (16:0 LPC and18:1 LPC) and fatty acids (C16:0 and C18:1) were also determined. Epoxidation andhydroxylation of 18:1 LPC are considerably more efficient than for the C18:1 freefatty acid.
机译:人类细胞色素P450(P450)2W1仍被认为是“孤儿”,因为其生理功能尚未鉴定。为了鉴定其底物特异性,使用基于LC / MS的代谢组学和同位素标记方法,将纯化的重组酶与大肠癌提取物一起进行无靶底物搜索。除先前报道的脂肪酸外,油基(18:1)溶血磷脂酰胆碱(LPC,溶血卵磷脂)被鉴定为P450 2W1的底物。测试的其他人类P450酶对18:1 LPC几乎没有活性。除LPC之外,P450 2W1还作用于一系列其他溶血磷脂,包括溶血磷脂酰肌醇,溶血磷脂酰丝氨酸,溶血磷脂酰甘油,溶血磷脂酰乙醇胺和溶血磷脂酸,但不包括二酰基磷脂。 P450 2W1比sn-2异构体更有效地利用sn-1 18:1 LPC作为底物。我们得出的结论是,溶血磷脂的sn-1异构体是优选的底物。对18:1环氧化产物进行了手性分析,结果表明与(9S,10R)相比,形成(9R,10S)的对映选择性。 P450 2W1催化溶血磷脂氧化的动力学和位置特异性(16:0 LPC和还确定了18:1 LPC)和脂肪酸(C16:0和C18:1)。环氧化和18:1 LPC的羟基化效率比不含C18:1的LPC明显更高脂肪酸。

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