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Novel marine-derived ligands for probing GluR function

Novel marine-derived ligands for probing GluR function
用于探测 GluR 功能的新型海洋衍生配体
批准号:
6531667
负责人:
GEOFFREY T SWANSON
金额:
$31.91万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-07-01 至 2006-06-30

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中文摘要
翻译
描述(由申请人提供):区分相似受体蛋白亚型的天然来源化合物是现代神经科学中的关键工具,通常作为治疗应用的有价值的先导分子。这对于离子型谷氨酸受体尤其如此,离子型谷氨酸受体是中枢神经系统中快速兴奋性神经传递的基础;已经从许多不同的生物体中分离出具有生物活性的谷氨酸受体化合物。最近,dysiherbbaine(DH),一种新的红藻氨酸(KA)和α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)型谷氨酸受体的配体,从海绵Dysidea herbacea中分离得到。DH被证明是一种有效的惊厥剂,对KA受体的一个子集具有异常高的亲和力;这种化合物,以及其天然和合成的类似物,代表了一套新的工具,用于研究兴奋性氨基酸受体的生物物理和生理特性。谷氨酸受体表达的多样性和复杂性,以及这些蛋白质在脑功能中的核心作用,强调了分离和表征具有独特选择性特征的新药理学工具的重要性。该项目将描述一套新的药理学工具- DH及其类似物-并使用这些化合物在生物物理和神经元水平上研究谷氨酸受体活性的功能方面。在第一个具体目标中,将确定DH的新型类似物的生物活性。在第二个具体目标中,我们将使用DH作为理解红藻氨酸受体的结构-功能关系的工具。红藻氨酸受体亚基在其对DH的反应中表现出高度的可变性,这提供了使用海洋毒素作为揭示受体蛋白的重要功能结构域的关键探针的机会。第三个具体目标将集中在确定亚基组成的神经元红藻氨酸受体使用相结合的药理学和遗传学的方法,与我们最重要的工具组成的基因靶向小鼠和亚基选择性海洋毒素。
英文摘要
DESCRIPTION (provided by applicant): Natural source compounds that differentiate between similar subtypes of receptor proteins are critical tools in modern neuroscience and often serve as valuable lead molecules for therapeutic applications. This has been particularly true with respect to lonotropic glutamate receptors, the receptors that underlie fast excitatory neurotransmission in the central nervous system; pharmacologically active glutamate receptor compounds have been isolated from a number of diverse organisms. Most recently, dysiherbaine (DH), a novel ligand for kainate (KA) and a-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) type glutamate receptors, was isolated from the marine sponge Dysidea herbacea. DH was shown to be a potent convulsant with an unusually high affinity for a subset of KA receptors; this compound, as well as its natural and synthetic analogues, represents a novel set of tools for investigating biophysical and physiological properties of excitatory amino acid receptors. The diversity and complexity of glutamate receptor expression, as well as the central role of these proteins in brain function, underscore the importance of isolation and characterization of new pharmacological tools with unique selectivity profiles. This project will characterize a new set of pharmacological tools - DH and its analogues - and use these compounds to examine functional aspects of glutamate receptor activity at the biophysical and neuronal level.In the first specific aim, the biological activity of novel analogues of DH will be determined. In the second specific aim, we will use DH as a tool for understanding structure-function relationships of kainate receptors. Kainate receptor subunits exhibit a high degree of variability in their responses to DH, which affords an opportunity to use the marine toxin as a key probe for uncovering important functional domains of the receptor proteins. The third specific aim will be focused on determining the subunitcomposition of neuronal kainate receptors using a combined pharmacological and genetic approach, with our most important tools consisting of gene-targeted mice and subunit-selective marine toxins.
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