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Purinergic Signaling in Cultured Heart Cells

Purinergic Signaling in Cultured Heart Cells
培养心脏细胞中的嘌呤能信号传导
批准号:
6535906
负责人:
BRUCE T LIANG
金额:
$2.56万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1993
资助国家:
美国
项目状态:
已结题
起止时间:
1993-09-01 至 2002-09-02

项目摘要

项目成果

BRUCE T LIANG的其他基金

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中文摘要
翻译
描述(由申请人提供):本研究的总体目标是阐明腺苷A1和A3受体途径的基本信号机制,定义A1R、A3R和A2AR在肌细胞上的相互作用,并描述这些潜在重要相互作用的机制。将使用药理学、功能和细胞方法以及基于转染的鸡心脏细胞和完整小鼠心脏制剂的新型心脏模型。具体来说,这项研究将1)测试的假设通过Ga12或Ga13激活RhoA A3R信号,进而刺激磷脂酶D(骑士,可能PLD1)和导致心脏保护,2)确定ADP-ribosylation因子的函数(ARF)及其潜在的相互作用与RhoA在调解这些A3响应完整的心脏细胞,3)测试ρ激酶的作用,PIP2水平和细胞骨架以及直接RhoA-PLD1交互的中介A3反应,4)表征A2AR在调节A1和A3受体介导的保护作用中的作用,并确定这种调节发生的机制;5)研究A1和A3受体之间协同作用的机制基础;6)确定A1R的激活是否增强了A3R通路的信号传导,还是激活A3R对A1R信号传导的促进作用产生了协同作用。7)验证磷脂酰肌醇衍生的二酰基甘油(来自A1R偶联磷脂酶C)及其随后对PKC的激活在增强A3R -RhoA-PLD信号传导中发挥重要作用的假设,以及二酰基甘油启动的PKC- katp阳性通道反馈回路也是介导两种受体之间协同作用的重要机制。编码各种信号分子的组成活性和显性负突变体的cdna,以及这些分子的选择性激活剂和抑制剂,将用于描述完整肌细胞中的信号级联。将利用磷脂酶CBeta2-、Beta3和Beta2/Beta3缺失小鼠,结合PLD药理抑制剂和腺苷受体选择性药物,进一步描述磷脂酶C在介导A1和A3受体的心脏保护作用中的信号作用。这些研究应该为腺苷的心脏作用以及基本的信号传导机制提供新的见解。它们也有助于我们理解信号通路和心脏保护和缺血预处理发生的机制。
英文摘要
DESCRIPTION (provided by applicant): The overall objectives of the present study are to elucidate basic signaling mechanisms in the adenosine A1 and A3 receptor pathways, to define the interaction between A1R, A3R and A2AR on the myocyte, and to delineate the mechanisms underlying these potentially important interactions. Pharmacological, functional and cellular approaches as well as novel cardiac models based on transfected chick cardiac cells and intact mouse heart preparations will be used. Specifically, the study will 1) test the hypothesis that the A3R signals via Ga12 or Ga13 to activate RhoA, which in turn stimulates phospholipase D (PLD, likely PLD1) and causes cardioprotection, 2) determine the function of ADP-ribosylation factor (ARF) and its potential interaction with RhoA in mediating these A3 responses in intact cardiac myocytes, 3) test the role of Rho kinase, PIP2 level and cytoskeleton as well as that of a direct RhoA-PLD1 interaction in mediating the A3 responses, 4) characterize the role of A2AR in modulating the protective effects mediated via A1 and A3 receptors and determine the mechanism by which this modulation occurs, 5) investigate the mechanistic basis of the synergistic interaction between the A1 and A3 receptors, 6) determine whether activation of the A1R enhances the signaling in the A3R pathway or whether the synergism arises from a facilitating effect of activated A3R on the A1R signaling, 7) test the hypotheses that the phosphatidylinositol-derived diacylglycerol (from the A1R coupled phospholipase C) and its subsequent activation of PKC play an important role in enhancing the A3R -RhoA-PLD signaling and that a diacylglycerol-initiated positive PKC-KATP channel feedback Ioop is also an important mechanism in mediating the synergism between the two receptors. The cDNAs encoding constitutively active and dominant negative mutants of the various signaling molecules as well as selective activators and inhibitors at these molecules will be used in delineating the signaling cascades in the intact myocyte. Phospholipase CBeta2-, Beta3 and Beta2/Beta3-null mice, in conjunction with pharmacological inhibitors of PLD and adenosine receptor-selective agents, will be used to further delineate the signaling role of phospholipase C in mediating the cardioprotective effect of A1 and A3 receptors. The studies should provide novel insights into the cardiac actions of adenosine as well as the basic signaling mechanism(s). They should also contribute to our understanding of the signaling pathway and the mechanism by which cardioprotection and ischemic preconditioning occur.
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