STOPPED-FLOW KINETIC-STUDY OF THE REGENERATION REACTION OF TOCOPHEROXYL RADICAL BY REDUCED UBIQUINONE-10 IN SOLUTION

被引:108
作者
MUKAI, K [1 ]
KIKUCHI, S [1 ]
URANO, S [1 ]
机构
[1] TOKYO METROPOLITAN GERIATR HOSP & INST GERONTOL,TOKYO 173,JAPAN
关键词
Reaction rate; Reduced ubiquinone; Stopped flow; Tocopheroxyl radical;
D O I
10.1016/0304-4165(90)90176-W
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
Kinetic study of the reaction between tocopheroxyl (vitamin E radical) and reduced ubiquinone, n = 10) has been performed. The rates of reaction of ubiquinol with α-tocopheroxyl 1 and seven kinds of alkyl substituted tocopheroxyl radicals 2-8 in solution have been determined spectrophotometrically, using a stopped-flow technique. The result shows that the rate constants decrease as the total electron-donating capacity of the alkyl substituents on the aromatic ring of tocopheroxyls increases. For the tocopheroxyls with two alkyl substituents at ortho positions (C-5 and C-7), the second-order rate constants, k1, obtained vary i n the order of 102, and decrease predominantly, as the size of two ortho-alkyl groups (methyl, ethyl, isopropyl and tert-buty) in tocopheroxyl increases. On the other hand, the reaction between tocopheroxyl and ubiquinone-10 (oxidized ubiquinone) has not been observed. The result indicates that ubiquinol-10 regenerates tocopherol by donating a hydrogen atom of the 1-OH and/or 4-OH group to the tocopheroxyl radical. For instance, the k1 values obtained for α-tocopheroxyl are 3.74 · 105 M-1 · s-1 and 2.15 · 5 M-1 · s-1 in benzene and ethanol solution at 25°C, respectively. The above reaction rates, k1, obtained were compared with those of vitamin C with α-tocopheroxyl reported by Packer et al. (k2 = 1.55 · 106 M-1 · s-1) and Scarpa et al. (K2 = 2 · 105 105 M-1 · s-1), which is well known as a usual regeneration reaction of tocopheroxyl in biomembrane systems. The result suggests that ubiquinol-10 also regenerates the tocopheroxyl to tocopherol and prevents lipid peroxidation in various tissues and mitochondria. © 1990.
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页码:77 / 82
页数:6
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