Gao M H, Lai N C, Roth D M, Zhou J, Zhu J, Anzai T, Dalton N, Hammond H K
Department of Medicine, VAMC-San Diego, Calif. 92161, USA.
Circulation. 1999 Mar 30;99(12):1618-22. doi: 10.1161/01.cir.99.12.1618.
The cellular content of cAMP generated by activation of adenylylcyclase (AC) through the beta-adrenergic receptor (betaAR) is a key determinant of a cell's response to catecholamine stimulation. We tested the hypothesis that increased AC content, independently of betaAR number, increases responsiveness to catecholamine stimulation in vivo.
Transgenic mice with cardiac-directed expression of ACVI showed increased transgene AC expression but no change in myocardial betaAR number or G-protein content. When stimulated through the betaAR, cardiac function was increased, and cardiac myocytes showed increased cAMP production. In contrast, basal cAMP and cardiac function were normal, and long-term transgene expression was not associated with abnormal histological findings or deleterious changes in cardiac function.
The amount of AC sets a limit on cardiac beta-adrenergic signaling in vivo, and increased AC, independent of betaAR number and G-protein content, provides a means to regulate cardiac responsiveness to betaAR stimulation. Overexpressing an effector (AC) does not alter transmembrane signaling except when receptors are activated, in contrast to receptor/G-protein overexpression, which yields continuous activation and has detrimental consequences. Our findings establish the importance of AC content in modulating beta-adrenergic signaling in the heart, suggesting a new target for safely increasing cardiac responsiveness to betaAR stimulation.
通过β肾上腺素能受体(βAR)激活腺苷酸环化酶(AC)所产生的环磷酸腺苷(cAMP)的细胞含量是细胞对儿茶酚胺刺激反应的关键决定因素。我们检验了以下假设:在体内,AC含量增加(与βAR数量无关)会增强对儿茶酚胺刺激的反应性。
心脏定向表达ACVI的转基因小鼠显示转基因AC表达增加,但心肌βAR数量或G蛋白含量无变化。通过βAR刺激时,心脏功能增强,心肌细胞显示cAMP生成增加。相比之下,基础cAMP和心脏功能正常,长期转基因表达与异常组织学发现或心脏功能的有害变化无关。
AC的量在体内对心脏β肾上腺素能信号传导设定了限制,AC增加(与βAR数量和G蛋白含量无关)提供了一种调节心脏对βAR刺激反应性的方法。与受体/G蛋白过表达会导致持续激活并产生有害后果不同,过表达效应器(AC)除了在受体激活时外不会改变跨膜信号传导。我们的研究结果确立了AC含量在调节心脏β肾上腺素能信号传导中的重要性,提示了一个安全增加心脏对βAR刺激反应性的新靶点。