Sato Motohiko, Cismowski Mary J, Toyota Eiji, Smrcka Alan V, Lucchesi Pamela A, Chilian William M, Lanier Stephen M
Department of Pharmacology and Experimental Therapeutics, Louisiana State University Health Sciences Center, New Orleans, LA 70112, USA.
Proc Natl Acad Sci U S A. 2006 Jan 17;103(3):797-802. doi: 10.1073/pnas.0507467103. Epub 2006 Jan 9.
As part of a broader effort to identify postreceptor signal regulators involved in specific diseases or organ adaptation, we used an expression cloning system in Saccharomyces cerevisiae to screen cDNA libraries from rat ischemic myocardium, human heart, and a prostate leiomyosarcoma for entities that activated G protein signaling in the absence of a G protein coupled receptor. We report the characterization of activator of G protein signaling (AGS) 8 (KIAA1866), isolated from a rat heart model of repetitive transient ischemia. AGS8 mRNA was induced in response to ventricular ischemia but not by tachycardia, hypertrophy, or failure. Hypoxia induced AGS8 mRNA in isolated adult ventricular cardiomyocytes but not in rat aortic smooth muscle cells, endothelial cells, or cardiac fibroblasts, suggesting a myocyte-specific adaptation mechanism involving remodeling of G protein signaling pathways. The bioactivity of AGS8 in the yeast-based assay was independent of guanine nucleotide exchange by Galpha, suggesting an impact on subunit interactions. Subsequent studies indicated that AGS8 interacts directly with Gbetagamma and this occurs in a manner that apparently does not alter the regulation of the effector PLC-beta(2) by Gbetagamma. Mechanistically, AGS8 appears to promote G protein signaling by a previously unrecognized mechanism that involves direct interaction with Gbetagamma.
作为确定参与特定疾病或器官适应性的受体后信号调节因子的更广泛努力的一部分,我们使用酿酒酵母中的表达克隆系统,从大鼠缺血心肌、人类心脏和前列腺平滑肌肉瘤的cDNA文库中筛选在没有G蛋白偶联受体的情况下激活G蛋白信号的实体。我们报告了从重复性短暂缺血的大鼠心脏模型中分离出的G蛋白信号激活剂(AGS)8(KIAA1866)的特性。AGS8 mRNA在心室缺血时被诱导,但在心动过速、肥大或心力衰竭时未被诱导。缺氧在分离的成年心室心肌细胞中诱导AGS8 mRNA,但在大鼠主动脉平滑肌细胞、内皮细胞或心脏成纤维细胞中未诱导,提示一种涉及G蛋白信号通路重塑的心肌细胞特异性适应机制。基于酵母的检测中AGS8的生物活性不依赖于Gα的鸟嘌呤核苷酸交换,提示对亚基相互作用有影响。随后的研究表明,AGS8直接与Gβγ相互作用,且这种相互作用显然不会改变Gβγ对效应器PLC-β2的调节。从机制上讲,AGS8似乎通过一种以前未被认识的机制促进G蛋白信号,该机制涉及与Gβγ的直接相互作用。