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The mechanism of the hormonal activation of respiration in isolated hepatocytes and its importance in the regulation of gluconeogenesis.

机译:激素在分离的肝细胞中激活呼吸的机制及其在糖异生调节中的重要性。

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摘要

The effects of hormones on the cytochrome spectra of isolated hepatocytes were recorded under conditions of active gluconeogenesis from L-lactate. Glucagon, phenylephrine, vasopressin and valinomycin, at concentrations that caused stimulation of gluconeogenesis, increased the reduction of the components of the cytochrome bc1 complex, just as has been observed in liver mitochondria isolated from glucagon-treated rats [Halestrap (1982) Biochem. J. 204, 37-47]. The effects of glucagon and phenylephrine were additive. The time courses of the increased reduction of cytochrome c/c1 and NAD(P)H/NAD(P)+ caused by hormones, valinomycin, A23187 and ethanol were measured by dual-beam spectrophotometry and fluorescence respectively. Ethanol (14 mM) produced a substantial rise in NAD(P)H fluorescence, beta-hydroxybutyrate/acetoacetate and lactate/pyruvate ratios, no change in cytochrome c/c1 reduction, a 10% decrease in O2 consumption and a 60% decrease in gluconeogenesis. Glucagon, phenylephrine and vasopressin caused a substantial and transient rise in NAD(P)H fluorescence, but a sustained increase in cytochrome c/c1 reduction and the rates of O2 consumption and gluconeogenesis. The transience of the fluorescence response was greater in the absence of Ca2+, when the cytochrome c/c1 response also became transient. The fluorescence response was smaller and less transient, but the cytochrome c/c1 response was greater, in the presence of fatty acids. Both responses were greatly decreased by the presence of 1 mM-pent-4-enoate. Valinomycin (2.5 nM) caused a decrease in NAD(P)H fluorescence coincident with an increase in cytochrome c/c1 reduction and the rate of gluconeogenesis and O2 consumption. A23187 (7.5 mM) caused increases in both NAD(P)H fluorescence and cytochrome c/c1 reduction. The effects of hormones and valinomycin on the time courses of NAD(P)H fluorescence, cytochrome c/c1 reduction and light-scattering by hepatocytes were compared with those of 0.5 microM-Ca2+ or 1 nM-valinomycin on the same parameters of isolated liver mitochondria. It is concluded that hormones increase respiration by hepatocytes in a biphasic manner. An initial Ca2+-dependent activation of mitochondrial dehydrogenases rapidly increases the mitochondrial [NADH], which is followed by a volume-mediated stimulation of fatty acid oxidation and electron flow between NADH and cytochrome c. 10. Amytal (0.5 mM) was able to reverse the effects of hormones on the reduction of cytochromes c/c1 and the rates of gluconeogenesis and O2 consumption without significantly lowering tissue [ATP].(ABSTRACT TRUNCATED AT 400 WORDS)
机译:在L-乳酸盐的活性糖异生的条件下,记录了激素对分离的肝细胞的细胞色素谱的影响。胰高血糖素,去氧肾上腺素,加压素和缬氨霉素的浓度可引起糖异生的刺激,增加了细胞色素bc1复合物成分的减少,正如在从胰高血糖素治疗的大鼠中分离出的肝线粒体中所观察到的那样(Halestrap(1982)Biochem。 J. 204,37-47]。胰高血糖素和去氧肾上腺素的作用是累加的。用双光束分光光度法和荧光法分别测定了激素,缬霉素,A23187和乙醇引起的细胞色素c / c1和NAD(P)H / NAD(P)+减少的增加的时程。乙醇(14 mM)使NAD(P)H荧光,β-羟基丁酸酯/乙酰乙酸酯和乳酸酯/丙酮酸酯的比率显着增加,细胞色素c / c1的减少没有变化,O2的消耗减少了10%,O2的消耗减少了60%。糖异生。胰高血糖素,去氧肾上腺素和血管加压素引起NAD(P)H荧光的大量且短暂的增加,但细胞色素c / c1减少以及O2消耗和糖异生的速率持续增加。在不存在Ca2 +的情况下,当细胞色素c / c1反应也变为瞬时时,荧光反应的瞬变更大。在存在脂肪酸的情况下,荧光响应较小且瞬态较少,但细胞色素c / c1响应较大。 1 mM-pent-4-enoate的存在大大降低了这两种反应。 Valinomycin(2.5 nM)导致NAD(P)H荧光减少,同时细胞色素c / c1减少,糖异生率和O2消耗增加。 A23187(7.5 mM)导致NAD(P)H荧光增加和细胞色素c / c1减少。在分离肝脏的相同参数下,比较了激素和缬氨霉素对NAD(P)H荧光,细胞色素c / c1还原和肝细胞光散射的时间进程的影响,以及0.5 microM-Ca2 +或1 nM-缬霉素对肝细胞的NAD(P)H荧光变化的影响。线粒体。结论是,激素以双相方式增加了肝细胞的呼吸作用。最初的Ca2 +依赖的线粒体脱氢酶激活迅速增加了线粒体[NADH],随后是脂肪酸介导的脂肪酸氧化和NADH与细胞色素c之间的电子流的体积介导刺激。 10. Amytal(0.5 mM)能够逆转激素对细胞色素c / c1减少以及糖异生和O2消耗速率的影响,而不会显着降低组织[ATP]。(摘要截短了400字)

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