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Mechanisms of Compartmentalized cAMP Signaling

Mechanisms of Compartmentalized cAMP Signaling
区室化 cAMP 信号传导机制
批准号:
9201476
负责人:
Jin Zhang
金额:
$7.01万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-01-15 至 2016-06-30

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中文摘要
翻译
描述(由申请人提供):通过环AMP (cAMP)及其效应分子,如cAMP依赖性蛋白激酶(PKA)和cAMP激活的交换蛋白(Epac),调节多种细胞功能,包括细胞生长、增殖、代谢、存活和移动,以及胰腺的胰岛素分泌。细胞。我们研究的总体目标是阐明时空区隔化在实现cAMP信号高特异性中的分子机制和功能作用。cAMP信号通路的异常对肥胖和2型糖尿病等临床疾病有影响,特别是在?细胞的功能。了解cAMP信号特异性的机制对于制定针对这些临床疾病的治疗策略至关重要。cAMP效应空间区隔的概念早在20年前就提出了,但直到最近几年,才有创新的方法来研究细胞背景下的cAMP信号传导,从而提供直接的机制证据。然而,尽管最近取得了这些进展,但我们对cAMP及其效应物的时空调节机制的理解仍然存在很大差距。此外,人们对活动时空模式中编码的信号信息如何转化为特定的功能反应知之甚少。在我们的初步研究中,我们开发了用于监测Epac作用的荧光生物传感器,用于跟踪多种信号活动的联合成像方法,以及用于亚细胞位置的酶操纵cAMP水平的方法。此外,我们最近的研究发现了一个由cAMP、PKA和Ca2+组成的振荡电路。细胞。在目前的提案中,基于这些初步发现,我们将重点关注这些具体目标,以验证我们的中心假设,即cAMP, PKA和Epac的活性是时空划分的,以特异性调节该途径的功能效应:1)进一步开发测量cAMP, PKA和Epac动力学的分子工具;2)阐明min6b细胞振荡回路的调控机制和功能作用。
英文摘要
DESCRIPTION (provided by applicant): Signaling through cyclic AMP (cAMP) and its effector molecules, such as cAMP-dependent protein kinase (PKA) and exchange proteins activated by cAMP (Epac), regulates a variety of cellular functions including cell growth, proliferation, metabolism, survival and mobility, as well as insulin secretion in the case of pancreatic ? cells. The overall goal of our research is to elucidate the molecular mechanisms and functional roles of spatiotemporal compartmentalization in achieving high specificity in cAMP signaling. Aberrations in the cAMP signaling pathway have implications for clinical conditions such as obesity and type 2 diabetes mellitus, particularly in the context of ?-cell functions. A mechanistic understanding of cAMP signaling specificity is crucial to developing therapeutic strategies for these clinical conditions. The concept of spatial compartmentalization of cAMP effects was proposed 20 years ago, but only in recent years have innovative approaches to studying cAMP signaling in the cellular context become available to provide direct mechanistic evidence. However, despite these recent advances, there are still large gaps in our understanding about the mechanisms underlying the spatiotemporal regulation of cAMP and its effectors. Furthermore, little is known about how the signaling information encoded in the spatiotemporal patterns of activities is translated into specific functional responses. In our preliminary studies, we have developed fluorescent biosensors for monitoring Epac action, co-imaging approaches for tracking multiple signaling activities and a method for enzymatic manipulation of cAMP levels at subcellular locations. Furthermore, our recent studies have discovered an oscillatory circuit that consists of cAMP, PKA and Ca2+ in MIN6 ? cells. In the current proposal, building upon these preliminary findings, we will focus on these specific aims to test our central hypothesis that the activities of cAMP, PKA and Epac are spatiotemporally compartmentalized to specifically regulate functional effects of this pathway: 1) further develop molecular tools for measuring cAMP, PKA and Epac dynamics; 2) elucidate the regulatory mechanisms and functional roles of the oscillatory circuit in MIN6 b cells.
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  • 财政年份:
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