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胰高血糖素对肝脏线粒体钙代谢及呼吸速率的快速作用。

Rapid action of glucagon on hepatic mitochondrial calcium metabolism and respiratory rates.

作者信息

Yamazaki R K, Mickey D L, Story M

出版信息

Biochim Biophys Acta. 1980 Aug 5;592(1):1-12. doi: 10.1016/0005-2728(80)90109-7.

Abstract

The time course for the effects of acute, in vivo glucagon treatment on energy-linked functions of isolated hepatic mitochondria has been studied. After 1 min of glucagon treatment, two changes are observed in mitochondrial function. State 4 (nonphosphorylating) respiratory rates with L-glutamate as substrate are decreased. No significant change is observed in the State 4 respiratory rates with succinate as substrate at 1 min of treatment. Concurrent with the change in nonphosphorylating respiratory rates is a decrease in the half time of spontaneous calcium release from mitochondria preloaded with calcium in a phosphate-containing medium. After 2-4 min of treatment, the previously reported stimulations in rates of State 3 (phosphorylating) respiration and calcium influx into mitochondria are observed. After approximately 6 min of treatment, these changes have reached their maxima. The combined effects of increased calcium uptake rate and decreased calcium efflux rate leads to a decrease in the calcium cycling rate of mitochondria. This decrease in the cycling rate should lead to the increased efficiency of mitochondrial energy transduction and may be responsible, in part, for the increased functional capability of mitochondria isolated from glucagon-treated animals. A correlate of the reduced cycling rate is a decrease in the steady-state concentration at which the mitochondria can buffer the calcium concentration of the incubation medium. The changes observed in calcium efflux rates and respiratory rates exhibit a time course consistent with possible intermediates in the glucagon-induced stimulation of hepatic gluconeogenesis.

摘要

已研究了急性体内胰高血糖素治疗对分离的肝线粒体能量相关功能的影响的时间进程。胰高血糖素治疗1分钟后,线粒体功能出现两个变化。以L-谷氨酸为底物时,状态4(非磷酸化)呼吸速率降低。治疗1分钟时,以琥珀酸为底物的状态4呼吸速率未观察到显著变化。与非磷酸化呼吸速率的变化同时发生的是,在含磷酸盐培养基中预加载钙的线粒体中,自发钙释放的半衰期缩短。治疗2 - 4分钟后,观察到先前报道的状态3(磷酸化)呼吸速率和钙流入线粒体速率的刺激。治疗约6分钟后,这些变化达到最大值。钙摄取速率增加和钙流出速率降低的综合作用导致线粒体钙循环速率降低。这种循环速率的降低应导致线粒体能量转导效率提高,并且可能部分负责从胰高血糖素治疗的动物分离的线粒体功能能力的增加。循环速率降低的一个相关因素是线粒体能够缓冲孵育培养基钙浓度的稳态浓度降低。在钙流出速率和呼吸速率中观察到的变化呈现出与胰高血糖素诱导的肝糖异生刺激中可能的中间产物一致的时间进程。

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