Sassi Yassine, Ahles Andrea, Truong Dong-Jiunn Jeffery, Baqi Younis, Lee Sang-Yong, Husse Britta, Hulot Jean-Sébastien, Foinquinos Ariana, Thum Thomas, Müller Christa E, Dendorfer Andreas, Laggerbauer Bernhard, Engelhardt Stefan
J Clin Invest. 2014 Dec;124(12):5385-97. doi: 10.1172/JCI74349. Epub 2014 Nov 17.
Acute stimulation of cardiac β-adrenoceptors is crucial to increasing cardiac function under stress; however, sustained β-adrenergic stimulation has been implicated in pathological myocardial remodeling and heart failure. Here, we have demonstrated that export of cAMP from cardiac myocytes is an intrinsic cardioprotective mechanism in response to cardiac stress. We report that infusion of cAMP into mice averted myocardial hypertrophy and fibrosis in a disease model of cardiac pressure overload. The protective effect of exogenous cAMP required adenosine receptor signaling. This observation led to the identification of a potent paracrine mechanism that is dependent on secreted cAMP. Specifically, FRET-based imaging of cAMP formation in primary cells and in myocardial tissue from murine hearts revealed that cardiomyocytes depend on the transporter ABCC4 to export cAMP as an extracellular signal. Extracellular cAMP, through its metabolite adenosine, reduced cardiomyocyte cAMP formation and hypertrophy by activating A1 adenosine receptors while delivering an antifibrotic signal to cardiac fibroblasts by A2 adenosine receptor activation. Together, our data reveal a paracrine role for secreted cAMP in intercellular signaling in the myocardium, and we postulate that secreted cAMP may also constitute an important signal in other tissues.
在应激状态下,急性刺激心脏β-肾上腺素能受体对于增强心脏功能至关重要;然而,持续的β-肾上腺素能刺激与病理性心肌重塑和心力衰竭有关。在此,我们证明了心肌细胞中cAMP的输出是一种应对心脏应激的内在心脏保护机制。我们报告称,向小鼠输注cAMP可避免在心脏压力超负荷疾病模型中出现心肌肥大和纤维化。外源性cAMP的保护作用需要腺苷受体信号传导。这一观察结果导致了一种依赖于分泌型cAMP的强大旁分泌机制的发现。具体而言,基于荧光共振能量转移(FRET)的原代细胞和小鼠心脏心肌组织中cAMP形成的成像显示,心肌细胞依赖转运蛋白ABCC4将cAMP作为细胞外信号输出。细胞外cAMP通过其代谢产物腺苷,激活A1腺苷受体减少心肌细胞cAMP形成和肥大,同时通过激活A2腺苷受体向心脏成纤维细胞传递抗纤维化信号。总之,我们的数据揭示了分泌型cAMP在心肌细胞间信号传导中的旁分泌作用,并且我们推测分泌型cAMP在其他组织中可能也构成重要信号。