Yoshida Y, Fujii M, Brown F R, Singh I
Department of Pediatrics, Medical University of South Carolina, Charleston 29425.
Pediatr Res. 1988 Mar;23(3):338-41. doi: 10.1203/00006450-198803000-00021.
To understand the possible role of salicylic acid in the pathogenesis of Reye's syndrome, we examined its effect on the oxidative metabolism of fatty acids in the rat liver mitochondrial-peroxisomal fraction. Fatty acids of different chain lengths are oxidized in different organelles. Octanoic acid is oxidized in mitochondria, lignoceric acid in peroxisomes, and palmitic acid in both mitochondria and peroxisomes. Salicylic acid (up to 1 mM concentration) had no effect on the oxidation of [1-14C]lignoceric acid. However, at the same concentration it inhibited the oxidation of [1-14C]palmitic acid by 26% and [1-14C] octanoic acid by 42%. The apparent Ki for the oxidation of [1-14C] octanoic acid, [1-14C]palmitic acid and [1-14C]lignoceric acid were 0.27, 6.0, and 14.8 mM, respectively. This selective inhibition of mitochondrial oxidation of medium-chain (octanoic acid) and long-chain (palmitic acid) fatty acids by salicylic acid may potentiate the accumulation of fatty acids in plasma in Reye's syndrome patients.
为了解水杨酸在瑞氏综合征发病机制中的可能作用,我们研究了其对大鼠肝线粒体 - 过氧化物酶体组分中脂肪酸氧化代谢的影响。不同链长的脂肪酸在不同细胞器中氧化。辛酸在线粒体中氧化,二十四烷酸在过氧化物酶体中氧化,而棕榈酸在线粒体和过氧化物酶体中均能氧化。水杨酸(浓度高达1 mM)对[1-14C]二十四烷酸的氧化没有影响。然而,在相同浓度下,它抑制[1-14C]棕榈酸氧化26%,抑制[1-14C]辛酸氧化42%。[1-14C]辛酸、[1-14C]棕榈酸和[1-14C]二十四烷酸氧化的表观抑制常数(Ki)分别为0.27、6.0和14.8 mM。水杨酸对中链(辛酸)和长链(棕榈酸)脂肪酸线粒体氧化的这种选择性抑制可能会增强瑞氏综合征患者血浆中脂肪酸的积累。