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山梨酸喂养对小鼠肝脏过氧化物酶体和山梨酰辅酶A代谢酶的影响。2,4-二烯酰辅酶A水合酶的选择性诱导。

Effect of sorbic acid feeding on peroxisomes and sorboyl-CoA metabolizing enzymes in mouse liver. Selective induction of 2,4-dienoyl-CoA hydratase.

作者信息

Nishimaki-Mogami T, Tanaka A, Minegishi K, Takahashi A

机构信息

National Institute of Hygienic Sciences, Tokyo, Japan.

出版信息

Biochem Pharmacol. 1991 Jul 5;42(2):239-46. doi: 10.1016/0006-2952(91)90709-e.

DOI:10.1016/0006-2952(91)90709-e
PMID:1859445
Abstract

On the basis of the finding that sorbic acid (SA)-induced hepatoma was correlated with the depletion of reduced glutathione (GSH) in mouse liver (Tsuchiya et al., Mutation Res 130: 267-262, 1984), the possible conversion of SA to a metabolite which is reactive with SH-compounds was studied. Sorboyl-CoA was hydrated and then reduced to 3-keto-4-hexenoyl-CoA by the combined actions of mitochondrial hydratase (crotonase) and L-3-hydroxyacyl-CoA dehydrogenase. Upon the addition of GSH or coenzyme A, 3-keto-4-hexenoyl-CoA was nonenzymatically converted to another 3-ketoacyl-CoA derivative, possibly a Michael type adduct, in a time- and concentration-dependent manner. Alternatively, sorboyl-CoA can be reduced by 2,4-dienoyl-CoA reductase and completely beta-oxidized without the generation of 3-keto-4-hexenoyl-CoA. Two-week feeding of mice of 15% SA caused a 2.0-fold induction of peroxisome beta-oxidation in the liver. SA caused a marked induction (3.6-fold) of hydratase toward sorboyl-CoA but a less pronounced induction (1.3-fold) of 2,4-dienoyl-CoA reductase, leading to about a 3-fold elevation in the hydratase: reductase ratio. The elevated ratio was sustained throughout the period of SA feeding up to 12 weeks. Thus, a large amount of SA could be converted to 3-keto-4-hexenoyl-CoA during this period. Oxidative stress caused by a depleted cellular SH-pool together with the induction of peroxisome proliferation by SA-feeding may implicate the mechanism by which non-mutagenic SA caused hepatoma.

摘要

基于山梨酸(SA)诱导的肝癌与小鼠肝脏中还原型谷胱甘肽(GSH)耗竭相关这一发现(Tsuchiya等人,《突变研究》130: 267 - 262, 1984),研究了SA可能转化为与SH化合物发生反应的代谢产物的情况。山梨酰辅酶A经水合作用,然后通过线粒体水合酶(巴豆酸酶)和L - 3 - 羟基酰基辅酶A脱氢酶的联合作用还原为3 - 酮 - 4 - 己烯酰辅酶A。加入GSH或辅酶A后,3 - 酮 - 4 - 己烯酰辅酶A以时间和浓度依赖的方式非酶促转化为另一种3 - 酮酰基辅酶A衍生物,可能是一种迈克尔型加合物。或者,山梨酰辅酶A可被2,4 - 二烯酰辅酶A还原酶还原并完全β - 氧化,而不生成3 - 酮 - 4 - 己烯酰辅酶A。给小鼠喂食15% SA两周导致肝脏中过氧化物酶体β - 氧化诱导了2.0倍。SA对山梨酰辅酶A的水合酶有明显诱导作用(3.6倍),但对2,4 - 二烯酰辅酶A还原酶的诱导作用较弱(1.3倍),导致水合酶与还原酶的比例升高约3倍。在SA喂食长达12周的整个期间,升高的比例一直维持。因此,在此期间大量的SA可转化为3 - 酮 - 4 - 己烯酰辅酶A。细胞SH池耗竭引起的氧化应激以及SA喂食诱导的过氧化物酶体增殖可能暗示了非致突变性SA导致肝癌的机制。

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引用本文的文献

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Induction of peroxisomal beta-oxidation by a microbial catabolite of cholic acid in rat liver and cultured rat hepatocytes.胆酸的一种微生物分解代谢产物对大鼠肝脏和培养的大鼠肝细胞中过氧化物酶体β-氧化的诱导作用。
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