首页> 美国卫生研究院文献>Biochemical Journal >The rôle of mitochondrial pyruvate transport in the stimulation by glucagon and phenylephrine of gluconeogenesis from L-lactate in isolated rat hepatocytes.
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The rôle of mitochondrial pyruvate transport in the stimulation by glucagon and phenylephrine of gluconeogenesis from L-lactate in isolated rat hepatocytes.

机译:胰高血糖素和去氧肾上腺素刺激分离的大鼠肝细胞中L-乳酸的糖异生从而刺激线粒体丙酮酸的转运。

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摘要

The sensitivity of glucose production from L-lactate by isolated liver cells from starved rats to inhibition by alpha-cyano-4-hydroxycinnamate was studied. A small percentage of the maximal rate of gluconeogenesis was insensitive to inhibition by alpha-cyano-4-hydroxycinnamate, and evidence is presented to show that this is due to pyruvate entry into the mitochondria as alanine. After subtraction of this rate, Dixon plots of the reciprocal of the rate of gluconeogenesis against inhibitor concentration were linear both in the absence and presence of glucagon, phenylephrine or valinomycin, each of which stimulated gluconeogenesis by 30-50%. Pyruvate kinase activity was decreased by glucagon, but not by phenylephrine or valinomycin. Inhibition of gluconeogenesis by quinolinate (inhibitor of phosphoenolpyruvate carboxykinase) or monochloroacetate (probably inhibiting pyruvate carboxylation) caused a significant deviation from linearity of the Dixon plot obtained with alpha-cyano-4-hydroxycinnamate. Amytal, however, inhibited gluconeogenesis without affecting the linearity of this plot. These data, coupled with a computer simulation study, suggest that pyruvate transport may control gluconeogenesis from L-lactate and that hormones may stimulate this process through an effect on the respiratory chain. An additional role for pyruvate kinase and pyruvate carboxylase is quite compatible with the data presented.
机译:研究了饥饿的大鼠中分离的肝细胞从L-乳酸产生的葡萄糖对α-氰基-4-羟基肉桂酸酯抑制的敏感性。糖异生的最大速率的一小部分对α-氰基-4-羟基肉桂酸酯的抑制不敏感,并且证据表明这是由于丙酮酸作为丙氨酸进入线粒体。减去该速率后,在不存在和存在胰高血糖素,去氧肾上腺素或缬氨霉素的情况下,糖异生速率与抑制剂浓度的倒数的狄克森图是线性的,每种均刺激糖异生30-50%。胰高血糖素可降低丙酮酸激酶的活性,而去氧肾上腺素或缬氨霉素则不会降低。喹啉酸盐(磷酸烯醇丙酮酸羧激酶的抑制剂)或一氯乙酸盐(可能抑制丙酮酸羧化)对糖异生的抑制作用导致与用α-氰基-4-羟基肉桂酸酯获得的狄克逊图的线性显着偏离。但是,Amytal可以抑制糖异生,而不会影响该图的线性。这些数据,加上计算机模拟研究,表明丙酮酸转运可能控制L-乳酸的糖异生,激素可能通过影响呼吸链而刺激这一过程。丙酮酸激酶和丙酮酸羧化酶的其他作用与所提供的数据完全兼容。

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