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Plasmid Delivery & Expression in Embryonic Eye Tissues

Plasmid Delivery & Expression in Embryonic Eye Tissues
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批准号:
6784231
负责人:
KATHY Kay SVOBODA
金额:
$14.55万
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-08-01 至 2006-07-31

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项目成果

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中文摘要
翻译
描述(由申请人提供):信号转导的研究依赖于对细胞或组织内蛋白质相互作用的理解。本提案的目标是开发试点数据、试剂和程序,为R01申请提供支持数据。本应用程序的直接目标是开发荧光共振能量转移(FRET)的使用研究,在一个完整的整个胚胎眼组织,蛋白质之间的相互作用发生在信号转导过程中。为了实现这一目标,我们将修改(1)荧光标记感兴趣的靶蛋白的表达载体,(2)开发将这些载体转染到完整的眼组织的方法。在潜在相互作用的靶蛋白中,一个用青色荧光蛋白(CFP)标签表达,另一个用黄色荧光蛋白(YFP)标签表达。(这些是绿色荧光蛋白的衍生物)。转染后的组织将受到刺激,信号转导蛋白相互作用之后将出现荧光变化,如FRET显微镜所见。对现有技术提出了两项改进。首先,在培养细胞中设计和测试在单一载体(二合一)中包含两种融合蛋白的结构。提出了几种二合一载体系统的替代设计,包括使用(1)内部酶切割位点,(2)具有内部核糖体进入位点(IRES)的载体,或(3)串联两个迷你基因。载体产生的蛋白质将在单个细胞中进行蛋白质功能和能量转移测试,然后将其用于整个组织。其次,将这两种融合蛋白在整个胚胎组织中进行转染和分析。这需要转染原代组织。已经提出了几种替代方法,包括商业渗透剂,电穿孔或病毒感染。转染效果将通过流式细胞术、GST下拉试验和Western blots进行评估。Rho和ROCK之间的蛋白相互作用与所有适当的对照将是FRET在整个角膜上皮中的第一个测试对。一旦程序开发完成,探针的数量将扩大到研究Rho激活-信号通路中的其他上游和下游蛋白质。这是一种将组织培养或单个细胞转移到整个胚胎组织的成熟技术。这些技术的发展将对未来的眼部发育研究产生重大影响,因为蛋白质之间的直接相互作用可能会被可视化。该项目风险很高,因为既没有“二合一”载体,也没有转染到整个组织中。
英文摘要
DESCRIPTION (provided by applicant): The study of signal transduction depends on understanding protein-protein interactions within the cell or tissue. The goal of this proposal is to develop pilot data, reagents and procedures that will provide supporting data for a R01 application. The immediate goal of this application is to develop the use of fluorescence resonance energy transfer (FRET) to study, in an intact whole embryonic eye tissue, the protein-protein interactions occurring during signal transduction. To accomplish this goal we will modify (1) expressing vectors that fluorescently tag target proteins of interest, and (2) develop methods for transfection of these vectors into intact eye tissues. Of potentially interacting target proteins, one will be expressed with a cyan fluorescent protein (CFP) tag, and the other expressed with a yellow fluorescent protein (YFP) tag. (These are derivatives of green fluorescent protein). A transfected tissue will be stimulated, and signal transduction protein interactions will be followed by fluorescence changes as visualized by FRET microscopy. Two advances to existing technology are proposed. First, designing and testing constructs that contain two fusion proteins in a single vector (two-in-one) in cultured cells. Several alternative designs for the two-in-one vector system are proposed including using (1) an internal enzyme cleavage site, (2) a vector with an internal ribosomal entry site (IRES), or (3) having two mini genes in tandem. The proteins produced by the vectors will be tested for protein function and energy transfer in single cells before using them in whole tissues. Secondly, the two fusion proteins will be transfected and analyzed in whole embryonic tissues. This will require transfecting primary tissues. Several alternative approaches have been proposed including commercial permeabilization agents, electroporation or viral infections. Transfection effectiveness will be assessed with flow cytometry, GST pull-down assays, and Western blots. The protein-protein interactions between Rho and ROCK with all appropriate controls will be the first test pair for FRET in whole corneal epithelia. Once the procedures are developed the number of probes will be expanded to study other upstream and down stream proteins in the Rho activation-signaling pathway in future grant applications. This is a transfer of an established technique for tissue culture or single cells into whole embryonic tissues. The development of these techniques will have a significant impact on future research in ocular development because direct protein-protein interactions may be visualized. This project has a high risk because neither "two-in-one" vectors, nor transfection into whole tissues has been accomplished.
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