Disruption of P450-mediated vitamin E hydroxylase activities alters vitamin E status in tocopherol supplemented mice and reveals extra-hepatic vitamin E metabolism

被引:42
作者
Bardowell, Sabrina A. [1 ]
Ding, Xinxin [2 ,3 ]
Parker, Robert S. [1 ]
机构
[1] Cornell Univ, Div Nutr Sci, Ithaca, NY 14853 USA
[2] New York State Dept Hlth, Wadsworth Ctr, Albany, NY USA
[3] SUNY, Sch Publ Hlth, New York, NY USA
基金
美国国家卫生研究院;
关键词
omega-oxidation; CYP4F14; CYP4F2; cytochrome P450 reductase; knockout mouse; liver; intestine; fecal elimination; diet; metabolites; GAMMA-TOCOPHEROL; ALPHA-TOCOPHEROL; CELL-DEATH; CYTOCHROME-P450; TOCOTRIENOLS; OXIDATION; DELETION; GENE;
D O I
10.1194/jlr.M030734
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The widely conserved preferential accumulation of alpha-tocopherol (alpha-TOH) in tissues occurs, in part, from selective postabsorptive catabolism of non-alpha-TOH forms via the vitamin E-omega-oxidation pathway. We previously showed that global disruption of CYP4F14, the major but not the only mouse TOH-omega-hydroxylase, resulted in hyper-accumulation of gamma-TOH in mice fed a soybean oil diet. In the current study, supplementation of Cyp4f14(-/-) mice with high levels of delta- and gamma-TOH exacerbated tissue enrichment of these forms of vitamin E. However, at high dietary levels of TOH, mechanisms other than omega-hydroxylation dominate in resisting diet-induced accumulation of non-alpha-TOH. These include TOH metabolism via omega-1/omega-2 oxidation and fecal elimination of unmetabolized TOH. The omega-1 and omega-2 fecal metabolites of gamma- and alpha-TOH were observed in human fecal material. Mice lacking all liver microsomal CYP activity due to disruption of cytochrome P450 reductase revealed the presence of extra-hepatic omega-, omega-1, and omega-2 TOH hydroxylase activities. TOH-omega-hydroxylase activity was exhibited by microsomes from mouse and human small intestine; murine activity was entirely due to CYP4F14. These findings shed new light on the role of TOH-omega-hydroxylase activity and other mechanisms in resisting diet-induced accumulation of tissue TOH and further characterize vitamin E metabolism in mice and humans.-Bardowell, S. A., X. Ding, and R. S. Parker. Disruption of P450-mediated vitamin E hydroxylase activities alters vitamin E status in tocopherol supplemented mice and reveals extra-hepatic vitamin E metabolism. J. Lipid Res. 2012. 53: 2667-2676.
引用
收藏
页码:2667 / 2676
页数:10
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