DNA Nanotags: Bright Fluorescent Labels and Sensors for Intracellular Imaging
DNA Nanotags: Bright Fluorescent Labels and Sensors for Intracellular Imaging
批准号:
7818598
负责人:
Bruce A. ARMITAGE
金额:
$37.23万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-30 至 2012-02-29
关键词:
AntibodiesBehaviorBindingBiochemicalBiologyCell Culture TechniquesCell surfaceCellsChemistryCommunitiesComplexCytoplasmic ProteinDNADNA SequenceDataDetectionDevelopmentDrosophila genusDyesElementsEmbryoEnergy TransferEnzymesExtinction (Psychology)Flow CytometryFluorescenceFluorescence MicroscopyFluorescence Resonance Energy TransferFluorescent DyesFluorescent ProbesFundingGene ExpressionGenomicsGoalsGrantHarvestImageImaging TechniquesIn VitroIncubatedInjection of therapeutic agentIntercalating AgentsLabelLengthLifeMethodsMicroscopyMonitorNamesNanostructuresOligonucleotidesOpticsPatternPhotobleachingPredispositionPrincipal InvestigatorPropertyProtein AnalysisProteinsRNARecoveryResearchResearch DesignResistanceSignal TransductionSiteSolutionsStagingTechnologyTimeTranslatingUnited States National Institutes of HealthWorkantibody conjugatebasedensitydesignfluorescence imaginghuman diseasein vivointerestnanoscalenanostructurednucleaseparent grantprogramsprotein complexpublic health relevanceresearch studyscaffoldself assemblysensorsingle moleculetool
中文摘要
说明(由申请人提供):本竞争性修订提案以通知编号(NOT-OD-09-058)和通知标题“NIH宣布可为竞争性修订申请提供恢复法案资金”提交。父母资助的主要目标是创造一种新的明亮的荧光标记,可以用于活细胞中超灵敏的蛋白质检测和跟踪。该标记的荧光成分由大量共价连接到纳米结构DNA支架上的荧光染料组成,因此得名DNA纳米标记。这种结构的高消光系数将转化为明亮的荧光。然后,这些纳米标签将被附加到抗体等识别元件上,以允许对显微注射的果蝇胚胎中的蛋白质进行特定标记。这次修订保留了最初拨款的具体目标,但增加了两个新目标,将把纳米标记的用途扩展到RNA标记。纳米标签将在一条链上有一个延伸的单链区域,允许与感兴趣的RNA进行序列特异性杂交。携带能量受体染料的第二个探针将杂交到相邻的位置,只有当两条链杂交到相同的RNA时,才能实现从捕光纳米标签到受体探针的能量转移。然后,将通过检测两个具有已知定位模式的mRNA,在合胞体阶段的果蝇胚胎中验证纳米标签检测策略。提案中增加的两个目标适用于这次修订的两年供资周期。
与公共卫生相关:拟议的研究将为检测和跟踪体内的RNA分子提供新的工具。RNA是基因组DNA和表达蛋白质之间的重要中介,但越来越多的人认识到它参与调控基因的表达。能够在低水平检测RNA的方法对于了解RNA在细胞中的功能以及这与人类疾病的关系是至关重要的。
英文摘要
DESCRIPTION (provided by applicant): This competitive revision proposal is submitted under Notice Number (NOT-OD-09-058) and Notice Title "NIH Announces the Availability of Recovery Act Funds for Competitive Revision Applications". The primary goal of the parent grant is to create a new class of bright fluorescent labels that can be used for ultrasensitive protein detection and tracking in live cells. The fluorescent component of the label consists of a large number of fluorescent dyes covalently attached to a nanostructured DNA scaffold, hence the name DNA nanotags. The high extinction coefficient of this construct will translate into bright fluorescence. The nanotags will then be attached to recognition elements such as antibodies to allow specific labeling of proteins in microinjected Drosophila embryos. This revision retains the specific aims of the original grant, but adds two new aims that will extend the utility of nanotags to RNA labeling. The nanotags will have an extended, single stranded region on one strand, allowing sequence specific hybridization to the RNA of interest. A second probe bearing an energy acceptor dye will hybridize to an adjacent site, allowing energy transfer from the light-harvesting nanotag to the acceptor probe to occur only when the two strands have hybridized to the same RNA. The nanotag detection strategy will then be validated in syncytial stage Drosophila embryos by detecting two mRNAs with known localization patterns. The two aims added to the proposal are appropriate for the two-year funding cycle for this revision.
PUBLIC HEALTH RELEVANCE: The proposed research will provide new tools for detecting and tracking RNA molecules in vivo. RNA is an important intermediate between genomic DNA and expressed proteins, but it is increasingly understood to be involved in regulating gene expression. Methods that allow detection of RNA at low levels is essential for understanding how RNA functions in the cell and how this is related to human disease.
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国内基金
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依托单位: