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大鼠心脏中的儿茶酚胺、胰高血糖素、能量代谢与蛋白质降解

Catecholamines, glucagon, energy metabolism and protein degradation in rat heart.

作者信息

Chua B H, Siehl D L, Morgan H E

机构信息

Department of Physiology, Milton S. Hershey Medical Center, Pennsylvania State University, Hershey 17033.

出版信息

Cardioscience. 1990 Mar;1(1):19-28.

PMID:1966372
Abstract

Isoproterenol, epinephrine, phenylephrine and glucagon inhibited proteolysis in isolated perfused rat hearts. All of these agents had a positive inotropic effect, while isoproterenol and glucagon were shown to increase cyclic AMP content. The catecholamines, but not glucagon, partially depleted the adenine nucleotide pool, but the creatine-phosphate/creatine ratio was unchanged or increased. Isoproterenol markedly increased lactate production and caused release of lactate dehydrogenase. The effects of isoproterenol on these parameters, including proteolysis, were blocked by propranolol and verapamil. Isoproterenol also inhibited proteolysis when perfusate calcium was reduced from 2.5 to 0.5 mM; but, in this circumstance, isoproterenol did not deplete ATP. In hearts arrested with tetrodotoxin, neither isoproterenol nor glucagon inhibited proteolysis and neither of them depleted ATP. Both hormones still increased cyclic AMP content. These findings suggest that cyclic AMP may not be involved in the control of proteolysis, and that the effects of isoproterenol and glucagon are mediated via effects on contractility. The studies stress the importance of preventing adenine nucleotide depletion and controlling contractility in experiments on the mechanisms of inotropic agents on cardiac protein turnover.

摘要

异丙肾上腺素、肾上腺素、去氧肾上腺素和胰高血糖素可抑制离体灌注大鼠心脏的蛋白水解。所有这些药物都具有正性肌力作用,而异丙肾上腺素和胰高血糖素可使环磷酸腺苷(cAMP)含量增加。儿茶酚胺类药物(而非胰高血糖素)可使腺嘌呤核苷酸池部分耗竭,但磷酸肌酸/肌酸比值未变或升高。异丙肾上腺素显著增加乳酸生成并导致乳酸脱氢酶释放。异丙肾上腺素对包括蛋白水解在内的这些参数的作用可被普萘洛尔和维拉帕米阻断。当灌注液中的钙浓度从2.5 mM降至0.5 mM时,异丙肾上腺素也可抑制蛋白水解;但在这种情况下,异丙肾上腺素不会消耗三磷酸腺苷(ATP)。在被河豚毒素阻滞的心脏中,异丙肾上腺素和胰高血糖素均不会抑制蛋白水解,也不会消耗ATP。两种激素仍可增加cAMP含量。这些发现提示,cAMP可能不参与蛋白水解的调控,而异丙肾上腺素和胰高血糖素的作用是通过对收缩性的影响介导的。这些研究强调了在关于正性肌力药物对心脏蛋白质周转机制的实验中,防止腺嘌呤核苷酸耗竭和控制收缩性的重要性。

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