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在分离的肝细胞中,胰高血糖素作用在线粒体水平的早期动力学。

Early kinetics of glucagon action in isolated hepatocytes at the mitochondrial level.

作者信息

Siess E A, Wieland O H

出版信息

Eur J Biochem. 1980 Sep;110(1):203-10. doi: 10.1111/j.1432-1033.1980.tb04856.x.

DOI:10.1111/j.1432-1033.1980.tb04856.x
PMID:7439159
Abstract

The temporal relationship between the effect of glucagon on respiratory functions and the changes in metabolites related to gluconeogenesis has been studied. Mitochondria prepared from hepatocytes after incubation with glucagon for 1 min already displayed a maximal stimulation of state-3 respiration. The increase in succinate dehydrogenase activity was almost fully expressed 3 min after glucagon. With respect to the utilization of pyruvate, 2-oxoglutarate and glutamate, glucagon produced a significant effect within 1 min. The rate of this decrease was linear for about 3 min slowing down thereafter. The stimulation of glucose production from lactate became significant within 1 min and remained constant up to 15 min. The influence of glucagon on the mitochondrial redox state also was an early event. It was maximally shifted to the more reduced state within 2 min and declined within 15 min. Under the conditions employed no effect of glucagon on urea synthesis or branched-chain amino acid release up to 15 min incubation time was discernible. Glucagon influenced the respiratory parameters virtually independent of Ca2+, in contrast to its action on intermediary metabolism. As to the hormone specificity, no enhancement of state-3 respiration and succinate dehydrogenase activity was caused by phenylephrine or isoproterenol. From the time course studies presented, it appears that the mitochondrial effects of glucagon might be causally interrelated with the regulation of gluconeogenesis. Moreover, our results indicate that the stimulation of state-3 respiration represents the earliest, specific action of glucagon at the mitochondrial level.

摘要

已对胰高血糖素对呼吸功能的影响与糖异生相关代谢物变化之间的时间关系进行了研究。用胰高血糖素孵育1分钟后从肝细胞制备的线粒体已显示出对状态3呼吸的最大刺激。胰高血糖素作用3分钟后,琥珀酸脱氢酶活性的增加几乎完全显现。关于丙酮酸、2-氧代戊二酸和谷氨酸的利用,胰高血糖素在1分钟内产生了显著影响。这种下降速率在约3分钟内呈线性,此后减缓。从乳酸生成葡萄糖的刺激在1分钟内变得显著,并持续到15分钟保持恒定。胰高血糖素对线粒体氧化还原状态的影响也是一个早期事件。它在2分钟内最大程度地转变为更还原的状态,并在15分钟内下降。在所采用的条件下,在长达15分钟的孵育时间内,未观察到胰高血糖素对尿素合成或支链氨基酸释放有影响。与胰高血糖素对中间代谢的作用相反,它对呼吸参数的影响实际上与Ca2+无关。关于激素特异性,去氧肾上腺素或异丙肾上腺素未引起状态3呼吸和琥珀酸脱氢酶活性的增强。从所呈现的时间进程研究来看,似乎胰高血糖素的线粒体效应可能与糖异生的调节存在因果关系。此外,我们的结果表明,状态3呼吸的刺激代表了胰高血糖素在线粒体水平上最早的特异性作用。

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1
Early kinetics of glucagon action in isolated hepatocytes at the mitochondrial level.在分离的肝细胞中,胰高血糖素作用在线粒体水平的早期动力学。
Eur J Biochem. 1980 Sep;110(1):203-10. doi: 10.1111/j.1432-1033.1980.tb04856.x.
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Evidence that glucagon stabilizes rather than activates mitochondrial functions in rat liver.胰高血糖素可稳定而非激活大鼠肝脏线粒体功能的证据。
Hoppe Seylers Z Physiol Chem. 1981 Dec;362(12):1643-51. doi: 10.1515/bchm2.1981.362.2.1643.

引用本文的文献

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Exercise-induced alterations of hepatic mitochondrial function.运动引起的肝脏线粒体功能改变。
Biochem J. 1982 Dec 15;208(3):695-701. doi: 10.1042/bj2080695.
2
Short-term regulation of hepatic triacylglycerol metabolism by insulin and glucagon.胰岛素和胰高血糖素对肝脏三酰甘油代谢的短期调节。
Vet Res Commun. 1982 May;5(3):223-36. doi: 10.1007/BF02214989.
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The stimulation of mitochondrial pyruvate carboxylation after dexamethasone treatment of rats.地塞米松处理大鼠后线粒体丙酮酸羧化作用的刺激。
Biochem J. 1984 Apr 1;219(1):107-15. doi: 10.1042/bj2190107.
4
Measurement of the intramitochondrial volume in hepatocytes without cell disruption and its elevation by hormones and valinomycin.在不破坏细胞的情况下测量肝细胞线粒体内的体积及其受激素和缬氨霉素的影响而增加的情况。
Biochem J. 1983 Aug 15;214(2):395-404. doi: 10.1042/bj2140395.
5
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Biochem J. 1983 Mar 15;210(3):819-27. doi: 10.1042/bj2100819.
6
A re-evaluation of the role of mitochondrial pyruvate transport in the hormonal control of rat liver mitochondrial pyruvate metabolism.对线粒体丙酮酸转运在大鼠肝脏线粒体丙酮酸代谢激素调控中作用的重新评估。
Biochem J. 1984 Nov 1;223(3):677-85. doi: 10.1042/bj2230677.
7
Quantitative analysis of intermediary metabolism in hepatocytes incubated in the presence and absence of glucagon with a substrate mixture containing glucose, ribose, fructose, alanine and acetate.在有和没有胰高血糖素存在的情况下,用含有葡萄糖、核糖、果糖、丙氨酸和乙酸盐的底物混合物培养肝细胞,对其中间代谢进行定量分析。
Biochem J. 1985 Feb 1;225(3):761-86. doi: 10.1042/bj2250761.
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