McGarry J D, Takabayashi Y, Foster D W
J Biol Chem. 1978 Nov 25;253(22):8294-300.
Fatty acid synthesis and fatty acid oxidation were examined in rat hepatocytes under a variety of experimental conditions. In cells from fed animals, glucagon acutely switched the direction of fatty acid metabolism from synthesis to oxidation. Addition of lactate plus pyruvate had the opposite effect. The inhibitory action of glucagon on fatty acid synthesis and its stimulatory effect on fatty acid oxidation were largely, but not completely, offset by the simultaneous addition of lactate plus pyruvate. Changes in cellular citrate and malonyl-CoA levels indicated that glucagon exerted its inhibitory effect on fatty acid synthesis at two levels: (i) blockade of glycolysis; and (ii) partial inhibition of a more distal step, probably acetyl-CoA carboxylase. Under all conditions, fatty acid oxidation was related in a linear and reciprocal fashion to the rate of fatty acid synthesis and the tissue malonyl-CoA content. The latter fluctuated through a range of 1 to 6 nmol per g wet weight of cells. Since malonyl-CoA inhibits carnitine acyltransferase I of liver mitochondria with a Ki in the region of 1 to 2 micron, the present studies support the concept that this compound plays a pivotal role in the coordination of hepatic fatty acid synthesis and oxidation. The ketogenic effect of glucagon on liver appears to be manifested in large part through the ability of the hormone to reduce the tissue malonyl-CoA concentration.
在多种实验条件下,对大鼠肝细胞中的脂肪酸合成和脂肪酸氧化进行了检测。在来自喂食动物的细胞中,胰高血糖素迅速将脂肪酸代谢的方向从合成转变为氧化。添加乳酸盐加丙酮酸盐则产生相反的效果。同时添加乳酸盐加丙酮酸盐在很大程度上,但并非完全抵消了胰高血糖素对脂肪酸合成的抑制作用及其对脂肪酸氧化的刺激作用。细胞中柠檬酸和丙二酰辅酶A水平的变化表明,胰高血糖素在两个水平上对脂肪酸合成发挥抑制作用:(i)阻断糖酵解;(ii)部分抑制更下游的步骤,可能是乙酰辅酶A羧化酶。在所有条件下,脂肪酸氧化与脂肪酸合成速率和组织丙二酰辅酶A含量呈线性且相反的关系。后者在每克细胞湿重1至6纳摩尔的范围内波动。由于丙二酰辅酶A抑制肝线粒体的肉碱脂酰转移酶I,其抑制常数(Ki)在1至2微摩尔范围内,本研究支持这一观点,即该化合物在肝脏脂肪酸合成和氧化的协调中起关键作用。胰高血糖素对肝脏的生酮作用似乎很大程度上是通过该激素降低组织丙二酰辅酶A浓度的能力来体现的。