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通过阻断α受体功能,葡萄糖抑制肾上腺素对肝糖异生的刺激作用。

Glucose inhibition of epinephrine stimulation of hepatic gluconeogenesis by blockade of the alpha-receptor function.

作者信息

Kneer N M, Bosch A L, Clark M G, Lardy H A

出版信息

Proc Natl Acad Sci U S A. 1974 Nov;71(11):4523-7. doi: 10.1073/pnas.71.11.4523.

Abstract

For isolated rat hepatocytes, glucagon, 3':5'-cyclic AMP, 3':5'-cyclic GMP, and epinephrine stimulate the rate of gluconeogenesis from substrates not involving pathways of mitochondrial metabolism. From estimation of the rates of glucose formation, fructose 6-phosphate phosphorylation, and lactate and pyruvate formation it is concluded that epinephrine and 3':5'-cyclic GMP stimulate gluconeogenesis from either galactose or fructose by influencing the rate of reactions involving fructose 6-phosphate in a manner similar to that already reported for glucagon and 3':5'-cyclic AMP. Each agent acts to inhibit flux through phosphofructokinase (EC 2.7.1.11) and enhance flux through fructose diphosphatase (EC 3.1.3.11), resulting in the re-direction of carbon from lactate and pyruvate formation to glucose synthesis. In addition to 3':5'-cyclic GMP, dibutyryl 3':5'-cyclic GMP, 8-bromo 3':5'-cyclic GMP, 8-benzyl-thio 3':5'-cyclic GMP and 8-(4-chlorophenyl)thio 3':5'-cyclic GMP stimulate glucose formation and inhibit lactate and pyruvate formation from galactose. Guanosine monophosphate and 2':3'-cyclic GMP are inactive. As the stimulatory effect of epinephrine is inhibited by phenoxybenzamine and not by propranolol, and is not simulated by isoproterenol, it is concluded that catecholamine activity is expressed through the alpha-receptor. Increased extracellular glucose concentration (>10 mM) decreases the stimulatory effect of epinephrine, 3':5'-cyclic GMP, and partially that of 3':5'-cyclic AMP but does not alter the efficacy of glucagon.

摘要

对于分离的大鼠肝细胞,胰高血糖素、3':5'-环磷酸腺苷、3':5'-环磷酸鸟苷和肾上腺素可刺激不涉及线粒体代谢途径的底物的糖异生速率。通过估计葡萄糖生成速率、6-磷酸果糖磷酸化速率以及乳酸和丙酮酸生成速率,得出结论:肾上腺素和3':5'-环磷酸鸟苷通过以类似于已报道的胰高血糖素和3':5'-环磷酸腺苷的方式影响涉及6-磷酸果糖的反应速率,从而刺激半乳糖或果糖的糖异生。每种试剂都通过抑制磷酸果糖激酶(EC 2.7.1.11)的通量并增强果糖二磷酸酶(EC 3.1.3.11)的通量来发挥作用,导致碳从乳酸和丙酮酸生成转向葡萄糖合成。除了3':5'-环磷酸鸟苷外,二丁酰3':5'-环磷酸鸟苷、8-溴3':5'-环磷酸鸟苷、8-苄基硫代3':5'-环磷酸鸟苷和8-(4-氯苯基)硫代3':5'-环磷酸鸟苷可刺激葡萄糖生成并抑制半乳糖生成乳酸和丙酮酸。鸟苷单磷酸和2':3'-环磷酸鸟苷无活性。由于肾上腺素的刺激作用被苯氧苄胺抑制而不被普萘洛尔抑制,且异丙肾上腺素不能模拟这种作用,因此得出结论:儿茶酚胺活性是通过α受体表达的。细胞外葡萄糖浓度升高(>10 mM)会降低肾上腺素、3':5'-环磷酸鸟苷的刺激作用,并部分降低3':5'-环磷酸腺苷的刺激作用,但不会改变胰高血糖素的效力。

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