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Small Molecule AKAP-Protein Kinase A (PKA) Interaction Disruptors That Activate PKA Interfere with Compartmentalized cAMP Signaling in Cardiac Myocytes*

机译:激活PKA的小分子AKAP-蛋白激酶A(PKA)相互作用干扰物干扰心肌细胞内的区室cAMP信号传导*

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摘要

A-kinase anchoring proteins (AKAPs) tether protein kinase A (PKA) and other signaling proteins to defined intracellular sites, thereby establishing compartmentalized cAMP signaling. AKAP-PKA interactions play key roles in various cellular processes, including the regulation of cardiac myocyte contractility. We discovered small molecules, 3,3′-diamino-4,4′-dihydroxydiphenylmethane (FMP-API-1) and its derivatives, which inhibit AKAP-PKA interactions in vitro and in cultured cardiac myocytes. The molecules bind to an allosteric site of regulatory subunits of PKA identifying a hitherto unrecognized region that controls AKAP-PKA interactions. FMP-API-1 also activates PKA. The net effect of FMP-API-1 is a selective interference with compartmentalized cAMP signaling. In cardiac myocytes, FMP-API-1 reveals a novel mechanism involved in terminating β-adrenoreceptor-induced cAMP synthesis. In addition, FMP-API-1 leads to an increase in contractility of cultured rat cardiac myocytes and intact hearts. Thus, FMP-API-1 represents not only a novel means to study compartmentalized cAMP/PKA signaling but, due to its effects on cardiac myocytes and intact hearts, provides the basis for a new concept in the treatment of chronic heart failure.
机译:A激酶锚定蛋白(AKAP)拴系蛋白激酶A(PKA)和其他信号蛋白到定义的细胞内位点,从而建立分隔的cAMP信号。 AKAP-PKA相互作用在各种细胞过程中起关键作用,包括调节心肌细胞的收缩力。我们发现了3,3'-二氨基-4,4'-二羟基二苯甲烷(FMP-API-1)及其衍生物的小分子,它们在体外和培养的心肌细胞中均会抑制AKAP-PKA相互作用。该分子与PKA调节亚基的变构位点结合,从而确定了迄今无法识别的控制AKAP-PKA相互作用的区域。 FMP-API-1还可以激活PKA。 FMP-API-1的净效应是对间隔cAMP信号的选择性干扰。在心肌细胞中,FMP-API-1揭示了一种涉及终止β-肾上腺素受体诱导的cAMP合成的新机制。另外,FMP-API-1导致培养的大鼠心肌细胞和完整心脏的收缩力增加。因此,FMP-API-1不仅代表研究间隔cAMP / PKA信号传导的新颖手段,而且由于其对心肌细胞和完整心脏的影响,为治疗慢性心力衰竭的新概念提供了基础。

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