Microcantilever Biosensors Based on Ligand Gated Ion Channel Receptors
Microcantilever Biosensors Based on Ligand Gated Ion Channel Receptors
批准号:
7657430
负责人:
Marvin Kenneth Schulte
金额:
$33.96万
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-07-15 至 2011-06-30
关键词:
AcetylcholineBindingBinding ProteinsBiological AssayBiosensorBrainChemistryCoupledDataDetectionDiagnosticDrug EvaluationDrug ReceptorsEnvironmental MonitoringFamilyGated Ion ChannelGoalsHTR3A geneHistamineHumanIon Channel ProteinLaboratoriesLigandsModelingModificationMolecular ModelsMutateNeuronsNicotinic ReceptorsNoisePerformancePeripheral Nervous SystemPharmacologyPreclinical Drug EvaluationProtein FamilyProteinsProtocols documentationReproducibilityResearchScreening procedureSensitivity and SpecificitySeriesSerotoninSignal TransductionSite-Directed MutagenesisSpecificityStructureSurfaceSystemTechnologyTestingTherapeutic AgentsTimeVisionWorkbasecantileverdensitydesigndrug candidatedrug developmentdrug discoverygamma-Aminobutyric Acidimprovedknowledge basemembermolecular modelingnovelprotocol developmentreceptorresponsesensorserotonin receptorserotonin-binding proteinsimulation
中文摘要
描述(由申请人提供):该项目的主要目标是开发一种用于药物开发的传感器,该传感器模仿人类大脑受体。该传感器将能够在短时间内评估大量候选药物的结合;从而大大提高了潜在治疗剂的识别率。该项目的主要目标是利用基于最近发现的乙酰胆碱结合蛋白(AChBP)的受体蛋白开发改进的微悬臂生物传感器。AChBP是一种可溶性蛋白,其结构和药理学与存在于中枢和外周神经系统的烟碱乙酰胆碱受体(nAChR)惊人地相似。由于nAChR是一个大的配体门控离子通道(lgic)超家族的成员,该项目最终将开发传感器,用于高通量药物筛选和这类神经元受体的药物发现。具体来说,我们的目标是:1)利用AChBP及其衍生物作为生物传感器蛋白开发一种微悬臂生物传感器。2)研究基本的表面共轭化学,建立微悬臂传感的修饰方案。该项目充分利用了我们在LGIC结构和功能(Schulte博士)和微悬臂设计(Ji博士)方面的专业知识。目的1将评估AChBP本身作为一种潜在有用的生物传感器分子。我们将通过探索其与nAChR、GABAR、甘氨酸和5-HT3R配体的相互作用,初步展示该传感器在高通量药物筛选中的应用。由于AChBP可以突变以改变其配体特异性,因此也将开发通过位点定向突变和/或嵌合构建获得的衍生物。由于AChBP通常被用作配体门控离子通道受体建模的模板,因此这项工作的另一个好处将是扩大对这些重要受体的配体特异性基础的了解。Aim 2将利用AChBP和其他受体蛋白,通过结合Ji博士实验室开发的改进的微悬臂阵列技术改进偶联化学来改善传感器响应
英文摘要
DESCRIPTION (provided by applicant): The primary goal of this project is to develop a sensor for use in drug development that mimics human brain receptors. This sensor will be capable of evaluating the binding of large numbers of drug candidates in a short period of time; thus greatly enhancing the rate at which potential therapeutic agents can be identified. The primary goal of this project is to develop improved microcantilever-based biosensors using receptor proteins based on a recently discovered acetylcholine binding protein (AChBP). The AChBP is a soluble protein that displays structure and pharmacology that is strikingly similar to the nicotinic acetylcholine receptor (nAChR) present in the central and peripheral nervous systems. Since the nAChR is a member of a large super-family of ligand gated ion channels (LGICs), this project will ultimately develop sensors that will be useful in high throughput drug screening and drug discovery for this class of neuronal receptors. Specifically, we aim to: 1) Develop a microcantilever biosensor utilizing the AChBP and its derivatives as biological sensor proteins. 2) Investigate fundamental surface conjugation chemistries and establish modification protocols for microcantilever sensing. The project draws heavily on our combined expertise in LGIC structure and function (Dr. Schulte) and microcantilever design (Dr. Ji). Aim 1 will evaluate the AChBP itself as a potentially useful biosensor molecule. We will initially demonstrate the use of this sensor in high-throughput drug screening by exploring its interaction with nAChR, GABAR, glycineR and 5-HT3R ligands. Since the AChBP can be mutated to alter its ligand specificity, derivatives obtained via site directed mutagenesis and/or chimeric construction will also be developed. Since the AChBP is commonly used as a template for modeling of ligand gated ion channel receptors, an additional benefit of this work will be an expanded knowledge of the basis of ligand specificity at these important receptors. Aim 2 will utilize the AChBP and other receptor proteins to improve sensor response through improved conjugation chemistries in combination with improved microcantilever array technology developed in Dr. Ji's laboratory
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STRUCTURAL AND FUNCTIONAL FEATURES OF THE 5-HT3R BINDING SITE
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批准号:7960079
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项目类别:
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资助金额:$21.33万
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财政年份:2009
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负责人:Marvin Kenneth Schulte
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依托单位:
Novel, subtype selective potentiators of nicotinic acetycholine receptors
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批准号:7699276
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资助金额:$33.52万
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财政年份:2009
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STRUCTURAL AND FUNCTIONAL FEATURES OF THE 5-HT3R BINDING SITE
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批准号:7719954
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资助金额:$19.32万
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财政年份:2008
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负责人:Marvin Kenneth Schulte
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依托单位:
Microcantilever Biosensors Based on Ligand Gated Ion Channel Receptors
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批准号:7896486
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项目类别:
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资助金额:$32.18万
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财政年份:2008
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负责人:Marvin Kenneth Schulte
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依托单位:
Microcantilever Biosensors Based on Ligand Gated Ion Channel Receptors
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批准号:7797015
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项目类别:
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资助金额:$1.44万
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财政年份:2008
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负责人:Marvin Kenneth Schulte
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依托单位:
Microcantilever Biosensors Based on Ligand Gated Ion Channel Receptors
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批准号:7528646
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项目类别:
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资助金额:$29.34万
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财政年份:2008
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负责人:Marvin Kenneth Schulte
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依托单位:
STRUCTURAL AND FUNCTIONAL FEATURES OF THE 5-HT3R BINDING SITE
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批准号:7610105
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项目类别:
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资助金额:$20.8万
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财政年份:2007
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负责人:Marvin Kenneth Schulte
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依托单位:
STRUCTURAL AND FUNCTIONAL FEATURES OF THE 5-HT3R BINDING SITE
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批准号:7381475
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项目类别:
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资助金额:$20.08万
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财政年份:2006
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负责人:Marvin Kenneth Schulte
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依托单位:
STRUCTURAL AND FUNCTIONAL FEATURES OF THE 5-HT3R BINDING SITE
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批准号:7170698
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项目类别:
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资助金额:$22.87万
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财政年份:2005
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负责人:Marvin Kenneth Schulte
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依托单位:
STRUCTURAL STUDIES OF THE SEROTONIN 5HT3 RECEPTOR
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批准号:2261455
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项目类别:
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资助金额:$2.99万
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财政年份:1995
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负责人:Marvin Kenneth Schulte
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依托单位:
STRUCTURAL STUDIES OF THE SEROTONIN 5HT3 RECEPTOR
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批准号:2261454
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项目类别:
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资助金额:$2.86万
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财政年份:1995
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负责人:Marvin Kenneth Schulte
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依托单位:
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