Otto D A, Chatzidakis C, Kasziba E, Cook G A
Arch Biochem Biophys. 1985 Oct;242(1):23-31. doi: 10.1016/0003-9861(85)90475-8.
Under certain incubation conditions 5-(tetradecyloxy)-2-furoic acid (TOFA) stimulated the oxidation of palmitate by hepatocytes, as observed by others. A decrease in malonyl-CoA concentration accompanied the stimulation of oxidation. Under other conditions, however, TOFA inhibited fatty acid oxidation. The observed effects of TOFA depended on the TOFA and fatty acid concentrations, the cell concentration, the time of TOFA addition relative to the addition of fatty acid, and the nutritional state of the animal (fed or starved). The data indicate that only under limited incubation conditions may TOFA be used as an inhibitor of fatty acid synthesis without inhibition of fatty acid oxidation. When rat liver mitochondria were preincubated with TOFA, ketogenesis from palmitate was slightly inhibited (up to 20%) at TOFA concentrations that were less than that of CoA, but the inhibition became almost complete (up to 90%) when TOFA was greater than or equal to the CoA concentration. TOFA had only slight or no inhibitory effects on the oxidation of palmitoyl-CoA, palmitoyl(-)carnitine, or butyrate. Since TOFA can be converted to TOFyl-CoA, the data suggest that the inhibition of fatty acid oxidation from palmitate results from the decreased availability of CoA for extramitochondrial activation of fatty acids. These data, along with previous data of others, indicate that inhibition of fatty acid oxidation by CoA sequestration is a common mechanism of a group of carboxylic acid inhibitors. A general caution is appropriate with regard to the interpretation of results when using TOFA in studies of fatty acid oxidation.
在特定的孵育条件下,如其他人所观察到的,5-(十四烷氧基)-2-呋喃甲酸(TOFA)可刺激肝细胞对棕榈酸的氧化。氧化作用增强的同时丙二酰辅酶A浓度降低。然而,在其他条件下,TOFA会抑制脂肪酸氧化。TOFA所观察到的效应取决于TOFA和脂肪酸的浓度、细胞浓度、相对于脂肪酸添加时间的TOFA添加时间以及动物的营养状态(喂食或饥饿)。数据表明,只有在有限的孵育条件下,TOFA才可作为脂肪酸合成的抑制剂而不抑制脂肪酸氧化。当大鼠肝线粒体与TOFA预孵育时,在TOFA浓度低于辅酶A时,棕榈酸的生酮作用略有抑制(高达20%),但当TOFA浓度大于或等于辅酶A浓度时,抑制作用几乎完全(高达90%)。TOFA对棕榈酰辅酶A、棕榈酰(-)肉碱或丁酸的氧化仅有轻微或无抑制作用。由于TOFA可转化为TOFyl-辅酶A,数据表明棕榈酸脂肪酸氧化的抑制是由于用于线粒体外脂肪酸活化的辅酶A可用性降低所致。这些数据以及其他人之前的数据表明,通过辅酶A螯合抑制脂肪酸氧化是一组羧酸抑制剂的常见机制。在使用TOFA进行脂肪酸氧化研究时,对结果的解释应谨慎。