Department of Pharmacology and Physiology, University of Rochester Medical School, Rochester, New York 14642, USA.
J Biol Chem. 2010 Nov 26;285(48):37927-38. doi: 10.1074/jbc.M110.168989. Epub 2010 Sep 27.
Ca(2+) release through inositol 1,4,5-trisphosphate receptors (InsP(3)R) can be modulated by numerous factors, including input from other signal transduction cascades. These events shape the spatio-temporal characteristics of the Ca(2+) signal and provide fidelity essential for the appropriate activation of effectors. In this study, we investigate the regulation of Ca(2+) release via InsP(3)R following activation of cyclic nucleotide-dependent kinases in the presence and absence of expression of a binding partner InsP(3)R-associated cGMP kinase substrate (IRAG). cGMP-dependent kinase (PKG) phosphorylation of only the S2+ InsP(3)R-1 subtype resulted in enhanced Ca(2+) release in the absence of IRAG expression. In contrast, IRAG bound to each InsP(3)R subtype, and phosphorylation of IRAG by PKG attenuated Ca(2+) release through all InsP(3)R subtypes. Surprisingly, simply the expression of IRAG attenuated phosphorylation and inhibited the enhanced Ca(2+) release through InsP(3)R-1 following cAMP-dependent protein kinase (PKA) activation. In contrast, IRAG expression did not influence the PKA-enhanced activity of the InsP(3)R-2. Phosphorylation of IRAG resulted in reduced Ca(2+) release through all InsP(3)R subtypes during concurrent activation of PKA and PKG, indicating that IRAG modulation is dominant under these conditions. These studies yield mechanistic insight into how cells with various complements of proteins integrate and prioritize signals from ubiquitous signaling pathways.
钙(Ca2+)通过肌醇 1,4,5-三磷酸受体(InsP3R)释放可以受到许多因素的调节,包括来自其他信号转导级联的输入。这些事件塑造了 Ca2+信号的时空特征,并提供了适当激活效应器所必需的保真度。在这项研究中,我们研究了在存在和不存在结合伴侣 InsP3R 相关 cGMP 激酶底物(IRAG)的情况下,激活环核苷酸依赖性激酶后,通过 InsP3R 释放 Ca2+的调节。仅 cGMP 依赖性激酶(PKG)对 S2+InsP3R-1 亚型的磷酸化导致在没有 IRAG 表达的情况下增强 Ca2+释放。相比之下,IRAG 与每个 InsP3R 亚型结合,PKG 对 IRAG 的磷酸化减弱了通过所有 InsP3R 亚型的 Ca2+释放。令人惊讶的是,仅表达 IRAG 就减弱了磷酸化并抑制了 cAMP 依赖性蛋白激酶(PKA)激活后通过 InsP3R-1 的增强的 Ca2+释放。相比之下,IRAG 表达并不影响 InsP3R-2 的 PKA 增强活性。IRAG 的磷酸化导致在同时激活 PKA 和 PKG 时,通过所有 InsP3R 亚型的 Ca2+释放减少,表明在这些条件下,IRAG 调节占主导地位。这些研究为细胞如何整合和优先处理来自普遍存在的信号通路的信号提供了机制上的见解。