Okumura Satoshi, Suzuki Sayaka, Ishikawa Yoshihiro
Cardiovascular Research Institute, Yokohama City University Graduate School of Medicine, Japan.
J Pharmacol Sci. 2009 Mar;109(3):354-9. doi: 10.1254/jphs.08r26fm. Epub 2009 Mar 7.
Cyclic AMP (cAMP) is known to play a major role in regulating cardiac function. Difference in adenylyl cyclase (AC) isoforms is a potential mechanism by which the cAMP signal, a common second messenger signal, can be regulated in a tissue-specific manner. However, the physiological significance of expressing multiple AC isoforms in a tissue and how each specific isoform regulates the cAMP signal remains poorly understood. In a genetically engineered mouse model in which the expression of the type 5 AC is knocked out (AC5KO), we identified the attenuation of autonomic regulation and calcium-mediated inhibition of cardiac function. We also identified that disruption of type 5 AC preserves cardiac function in response to chronic pressure-overload and catecholamine stress, at least in part, through the inhibition of cardiac apoptosis, which plays a major role in the development of heart failure. The protection against both apoptosis and development of cardiac dysfunction induced by left ventricular pressure overload in AC5KO makes this molecule potentially important for developing future pharmacotherapy, where suppressing the activity of type 5 AC, and not the entire beta-adrenergic signaling (beta-AR) signaling pathway, may have an advantage over the current beta-AR-blockade therapy in the treatment of heart failure.
环磷酸腺苷(cAMP)在调节心脏功能中发挥着重要作用。腺苷酸环化酶(AC)同工型的差异是一种潜在机制,通过该机制,作为常见第二信使信号的cAMP信号能够以组织特异性方式受到调节。然而,在一个组织中表达多种AC同工型的生理意义以及每种特定同工型如何调节cAMP信号仍知之甚少。在一种基因工程小鼠模型中,5型AC的表达被敲除(AC5KO),我们发现自主调节减弱以及钙介导的心脏功能抑制。我们还发现,5型AC的破坏至少部分通过抑制心脏细胞凋亡来维持心脏功能以应对慢性压力超负荷和儿茶酚胺应激,而心脏细胞凋亡在心力衰竭的发展中起主要作用。AC5KO对左心室压力超负荷诱导的细胞凋亡和心脏功能障碍发展的保护作用使得该分子对于未来药物治疗的开发可能具有重要意义,即抑制5型AC的活性而非整个β-肾上腺素能信号(β-AR)信号通路,在治疗心力衰竭方面可能比当前的β-AR阻断疗法更具优势。