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Blood Platelet Thromboxane Receptors

Blood Platelet Thromboxane Receptors
血小板血栓素受体
批准号:
6999378
负责人:
GUY C LEBRETON
金额:
$33.51万
依托单位国家:
美国
项目类别:
财政年份:
1987
资助国家:
美国
项目状态:
已结题
起止时间:
1987-09-30 至 2007-12-31

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中文摘要
翻译
描述(由申请人提供):本申请提出了解决血小板中TXA2受体(TPR)信号传导的三个基本方面的实验:1。血小板tpr与其他gpcr之间的交叉信号传导。我们的假设是,GPCR- g蛋白(GP)复合物的形成过程是基于质量作用原理的,这一原理定义并优先考虑血小板GPCR信号传导和交叉信号传导。该模型预测血小板GPCR信号的动态状态,该状态可能受到包括心血管疾病在内的许多因素的干扰。我们认为这一原理形成了一种分子机制,通过该机制血小板可以整合其单独的GPCR信号通路,并通过该机制建立血小板GPCR信号偏好。现在提出了进一步研究这一动态过程的基本原理的实验。2. 绘制TPR配体结合袋。我们的假设是配体停靠在c端ED3,并与TM5和/或n端ED4中的残基相互作用。我们之前证明了ED3中的c183 - d193形成了tpr的关键配体结合域,这些结果最近被NMR证实。我们现在将识别ED3中的残基,它们参与配体结合。基于TPR配体的有效配位半径,我们还将研究邻近残基(来自TM5和n端ED4)在对接/信号转导过程中的参与。利用定点诱变和PG受体嵌合体,实验将测量激动剂/拮抗剂配体的亲和力和功能反应,作为配体对接和疗效的指标。此外,使用一种新的功能抗体的兔模型将被用来确定TPR ED3对体内血小板反应性的贡献。3. camp介导的G-alpha12/13磷酸化的分子和功能后果。我们的假设是G-alpha12/13构象敏感开关I区(SRI)的磷酸化在通过G-alpha12/13通路调节信号传导中起重要作用。我们最近证实了pka介导的SW1中G13的Thr(203)磷酸化。我们现在将进一步定义这种磷酸化对血小板活化和抑制的分子/功能后果。位点定向肽/诱变和诱导小基因将用于定义PKA对静止/活化血小板中G12/13-Rho信号的调节。后续实验将确定g12 /13介导的血小板功能反应,以及g - α磷酸化如何调节这些反应。总的来说,所提出的实验应该为TPR信号转导提供新的和重要的信息。反过来,这些信息应该有助于开发控制txa2介导的血栓栓塞的治疗方法
英文摘要
DESCRIPTION (provided by applicant): The present application proposes experiments which address three fundamental aspects of TXA2 receptor (TPR) signaling in platelets: 1.Cross-signaling between platelet TPRs and other GPCRs. Our hypothesis is that the process of GPCR-G protein (GP) complex formation is based on the principles of mass action, and that this principle defines and prioritizes platelet GPCR signaling and cross-signaling. This model predicts a dynamic state of platelet GPCR signaling, which can be perturbed by numerous factors including cardiovascular disease. We believe that this principle forms a molecular mechanism by which platelets can integrate their separate GPCR signaling pathways and by which platelet GPCR signaling preferences are established. Experiments are now proposed to further investigate the underlying principles of this dynamic process. 2. Map the TPR ligand-binding pocket. Our hypothesis is that ligands dock at C-terminal ED3 and interact with residues in TM5 and/or N-terminal ED4. We previously demonstrated that C183-D193in ED3 form a critical ligand binding domain of TPRs, and these results have recently been confirmed by NMR. We will now identify the residues in ED3, which participate in this ligand binding. Based on the effective coordination radius of TPR ligands, we will also examine the participation of neighboring residues (from TM5 and N-terminal ED4) in the docking/signal transduction process. Using site-directed mutagenesis and PG receptor chimeras, experiments will measure agonist/antagonist ligand affinity and functional responses as indices ligand docking and efficacy. In addition, a rabbit model using a new functional antibody will be employed to determine the contribution of TPR ED3 to platelet reactivity in vivo. 3. The molecular and functional consequences of cAMP-mediated G-alpha12/13 phosphorylation. Our hypothesis is that phosphorylation of the conformationally sensitive Switch I Region (SRI) of G-alpha12/13 plays an important role in modulating signaling through the G-alpha12/13 pathway. We recently demonstrated PKA-mediated phosphorylation within SW1 at Thr (203) of G13. We will now further define the molecular/functional consequences of such phosphorylation on platelet activation and inhibition. Site-directed peptides/mutagenesis and inducible minigenes will be used to define PKA modulation of G12/13-Rho signaling in resting/activated platelets. Subsequent experiments will identify G12/13-mediated platelet functional responses, and how these responses are modulated by G-alpha phosphorylation. Collectively, the proposed experiments should provide new and important information regarding TPR signal transduction. This information should, in turn, aid in the development of therapeutic approaches for controlling TXA2-mediated thromboembolism
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BLOOD PLATELET THROMBOXANE RECEPTORS
DIRECT ANTAGONISM OF THE TXA2 BLOOD PLATELET RECEPTOR
DIRECT ANTAGONISM OF THE TXA2 BLOOD PLATELET RECEPTOR
BLOOD PLATELET THROMBOXANE RECEPTORS
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