首页> 美国卫生研究院文献>The Journal of Nutrition >Loss of Carotene-9′10’-Monooxygenase Expression Increases Serum and Tissue Lycopene Concentrations in Lycopene-Fed Mice
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Loss of Carotene-9′10’-Monooxygenase Expression Increases Serum and Tissue Lycopene Concentrations in Lycopene-Fed Mice

机译:番茄红素喂养的小鼠中胡萝卜素910-单加氧酶表达的缺失会增加血清和组织中番茄红素的浓度

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摘要

Two enzymes have been identified for the oxidative metabolism of carotenoids in mammals. Carotene-15,15’-monooxygenase (CMO-I) primarily centrally cleaves β,β-carotene to form vitamin A. We hypothesize that carotene-9′,10’-monooxygenase (CMO-II) plays a key role in metabolism of acyclic nonprovitamin A carotenoids such as lycopene. We investigated carotenoid bioaccumulation in young adult, male, wild-type (WT) mice or mice lacking CMO-II (CMO-II KO). Mice were fed an AIN-93G diet or identical diets supplemented with 10% tomato powder, 130 mg lycopene/kg diet (10% lycopene beadlets), or placebo beadlets for 4 or 30 d. Lycopene preferentially accumulated in CMO-II KO mouse tissues and serum compared with WT mouse tissues. β-Carotene preferentially accumulated in some CMO-II KO mouse tissues compared with WT mouse tissues. Relative tissue mRNA expression of CMO-I and CMO-II was differentially expressed in mouse tissues, and CMO-II, but not CMO-I, was expressed in mouse prostate. In conclusion, the loss of CMO-II expression leads to increased serum and tissue concentrations of lycopene in tomato-fed mice.
机译:已经鉴定出两种酶用于哺乳动物中类胡萝卜素的氧化代谢。胡萝卜素15,15'-单加氧酶(CMO-I)主要集中切割β,β-胡萝卜素以形成维生素A。我们假设胡萝卜素9',10'-单加氧酶(CMO-II)在代谢过程中起关键作用无环非维生素原A类胡萝卜素,如番茄红素。我们调查了年轻成年,雄性,野生型(WT)小鼠或缺乏CMO-II(CMO-II KO)的小鼠中类胡萝卜素的生物蓄积。给小鼠喂食AIN-93G饮食或补充10%番茄粉,130 mg番茄红素/ kg饮食(10%番茄红素微珠)或安慰剂微珠的相同饮食4或30天。与野生型小鼠组织相比,番茄红素优先在CMO-II KO小鼠组织和血清中积累。与野生型小鼠组织相比,β-胡萝卜素优先在某些CMO-II KO小鼠组织中积累。 CMO-I和CMO-II的相对组织mRNA表达在小鼠组织中差异表达,而CMO-II而非CMO-I在小鼠前列腺中表达。总之,在番茄喂养的小鼠中,CMO-II表达的丧失导致番茄红素的血清和组织浓度增加。

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