Kähönen M
Med Biol. 1979 Feb;57(1):58-65.
The oxidation of palmitoyl- and octanoylcarnitine in liver mitochondria from normal and clofibrate-treated male rats was studied by measuring the ADP-stimulated oxygen consumption and acetyl group production (the sum of formed ketone bodies, acetylcarnitine and citrate). In the absence of malate the treatment approximately doubled the rate of acylcarnitine oxidation. In normal mitochondria the acetyl groups consisted almost totally of ketone bodies. The clofibrate-induced increase in acetyl group production was attributable to enhanced rates of ketone body and acetylcarnitine formation. The observed increase in acylcarnitine oxidation was associated with an elevated beta-hydroxybutyrate: acetoacetate ratio, reflecting an increased mitochondrial NADH:NAD+ ratio. In normal mitochondria the addition of malate in the presence of fluorocitrate doubled the rate of beta oxidation by forming citrate. The beta oxidation in mitochondria from clofibrate-treated rats was virtually unresponsive to added malate. The clofibrate-induced increase in ketogenesis was confirmed in disintegrated mitochondria. The treatment approximately doubled the rate of ketone body production from acetyl-CoA in disrupted organelles. The enhanced capacity of ketogenesis was accompanied by increased activity of the specific acetoacetyl-CoA thiolase (EC 2.3.1.8), which is the first step enzyme of the pathway. Clofibrate administration also increased the activities of general oxoacyl-CoA thiolase (EC 2.3.1.16), palmitoyl-CoA dehydrogenase (EC 1.3.99.3), and butyryl-CoA dehydrogenase (EC 1.3.99.2), which all take part in the beta oxidation of fatty acids.
通过测量ADP刺激的氧气消耗和乙酰基生成量(生成的酮体、乙酰肉碱和柠檬酸的总和),研究了正常和氯贝丁酯处理的雄性大鼠肝脏线粒体中棕榈酰肉碱和辛酰肉碱的氧化情况。在没有苹果酸的情况下,处理使酰基肉碱氧化速率增加了约一倍。在正常线粒体中,乙酰基几乎完全由酮体组成。氯贝丁酯诱导的乙酰基生成增加归因于酮体和乙酰肉碱生成速率的提高。观察到的酰基肉碱氧化增加与β-羟基丁酸:乙酰乙酸比值升高有关,反映了线粒体NADH:NAD⁺比值增加。在正常线粒体中,在氟柠檬酸存在下添加苹果酸通过形成柠檬酸使β氧化速率增加一倍。氯贝丁酯处理的大鼠线粒体中的β氧化对添加的苹果酸几乎没有反应。在破碎的线粒体中证实了氯贝丁酯诱导的生酮作用增加。处理使破碎细胞器中乙酰辅酶A生成酮体的速率增加了约一倍。生酮能力的增强伴随着特定的乙酰乙酰辅酶A硫解酶(EC 2.3.1.8)活性增加,该酶是该途径的第一步酶。氯贝丁酯给药还增加了参与脂肪酸β氧化的一般氧代酰基辅酶A硫解酶(EC 2.3.1.16)、棕榈酰辅酶A脱氢酶(EC 1.3.99.3)和丁酰辅酶A脱氢酶(EC 1.3.99.2)的活性。