Halestrap A P
Biochem J. 1978 Jun 15;172(3):389-98. doi: 10.1042/bj1720389.
Glucagon treatment of rats allowed the isolation of liver mitochondria with enhanced rates of pyruvate metabolism measured in either sucrose or KCl media. No change in the activity of the pyruvate carrier itself was apparent, but under metabolizing conditions, use of the inhibitor of pyruvate transport, alpha-cyano-4-hydroxycinnamate, demonstrated that pyruvate transport limited the rate of pyruvate metabolism. The maximum rate of transport under metabolizing conditions was enhanced by glucagon treatment. Problems involved in measuring the transmembrane pH gradient under metabolizing conditions are discussed and a variety of techniques are used to estimate the matrix pH. From the distribution of methylamine, ammonia and D-lactate and the Ki for inhibition by alpha-cyano-4-hydroxycinnamate it is concluded that the matrix is more acid than the medium and that the pH of the matrix rises after glucagon treatment. The increase in matrix pH stimulates pyruvate transport. The membrane potential, ATP concentration and O2 uptake were also increased under metabolizing conditions in glucagon-treated mitochondria. These changes were correlated with a stimulation of the respiratory chain which can be observed in uncoupled mitochondria [Yamazaki (1975) J. Biol. Chem. 250, 7924--7930]. The mitochondrial Mg2+ content (mean +/- S.E.M.) was increased from 38.8 +/- 1.2 (n = 26) to 47.5 +/- 2.0 (n = 26) ng-atoms/mg by glucagon and the K+ content from 126.7 +/- 10.3 (n = 19) ng-atoms/mg. This may represent a change in membrane potential induced by glucagon in vivo. The physiological significance of these results in the control of gluconeogenesis is discussed.
用胰高血糖素处理大鼠后,可分离出在蔗糖或氯化钾培养基中丙酮酸代谢速率加快的肝线粒体。丙酮酸载体本身的活性没有明显变化,但在代谢条件下,使用丙酮酸转运抑制剂α-氰基-4-羟基肉桂酸表明,丙酮酸转运限制了丙酮酸代谢的速率。胰高血糖素处理可提高代谢条件下的最大转运速率。讨论了在代谢条件下测量跨膜pH梯度所涉及的问题,并使用了多种技术来估计基质pH。根据甲胺、氨和D-乳酸的分布以及α-氰基-4-羟基肉桂酸抑制的Ki值,可以得出结论,基质比介质酸性更强,且胰高血糖素处理后基质pH升高。基质pH的升高刺激了丙酮酸转运。在代谢条件下,胰高血糖素处理的线粒体的膜电位、ATP浓度和氧气摄取也增加了。这些变化与呼吸链的刺激相关,这在解偶联线粒体中也可以观察到[山崎(1975年)《生物化学杂志》250, 7924 - 7930]。胰高血糖素使线粒体镁离子含量(平均值±标准误)从38.8±1.2(n = 26)增加到47.5±2.0(n = 26)纳摩尔/毫克,钾离子含量从126.7±10.3(n = 19)纳摩尔/毫克增加。这可能代表了胰高血糖素在体内诱导的膜电位变化。讨论了这些结果在糖异生控制中的生理意义。