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首页> 外文期刊>Combinatorial Chemistry _High Throughput Screening >Parallel Analysis of v-Src Mutant Protein Function Using Reverse Transfection Cell Arrays
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Parallel Analysis of v-Src Mutant Protein Function Using Reverse Transfection Cell Arrays

机译:使用反向转染细胞阵列的v-Src突变蛋白功能的并行分析

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摘要

The conversion of the genomic information produced by the recent sequencing projects into a comprehensive understanding of the human proteome has yet to occur. A new technology that represents a potential bridge between genomics and proteomics is reverse transfection. Reverse transfection cell microarrays are produced by overlaying cDNA arrays with mammalian cells, generating localized clusters of transfected cells with each cluster overexpressing a unique protein. This miniaturized cell-based microarray format affords parallel functional analysis of thousands of cDNA constructs in a high throughput format. In this report we document the development of a co-transfection methodology for reverse transfection applications. The demonstrated high co-transfection efficiency with a “marker “ plasmid encoding for GFP enables the identification of transfected cells and eliminates the need for epitope-tagged constructs in cell-based high throughput screening applications using reverse transfection. This co-transfection method was used to study in parallel the structure/function of multiple versions of the v-Src protein using automated fluorescence microscopy. The wild-type v-Src protein and four mutants having insertions or deletions in the SH2 or SH3 domains displayed high levels of tyrosine kinase activity in HEK293T cells. Three other mutated v-Src proteins, including a kinase-dead version, were shown to be defective for tyrosine kinase activity. This reverse co-transfection approach is applicable for high throughput screening of both cDNA libraries and positional scanning recombinant protein libraries.
机译:将最近的测序项目产生的基因组信息转换为对人类蛋白质组的全面了解尚未发生。代表基因组学和蛋白质组学之间潜在桥梁的一项新技术是反向转染。反向转染细胞微阵列是通过将cDNA阵列与哺乳动物细胞重叠,产生转染细胞的局部簇而产生的,每个簇都过表达独特的蛋白质。这种基于细胞的微型化微阵列格式以高通量格式提供了数千种cDNA构建体的并行功能分析。在本报告中,我们记录了用于逆转染应用的共转染方法学的发展。与编码GFP的“标记”质粒一起证明的高共转染效率使得能够鉴定转染的细胞,并消除了在使用反向转染的基于细胞的高通量筛选应用中对表位标记的构建体的需求。使用自动荧光显微镜技术,该共转染方法用于并行研究v-Src蛋白多个版本的结构/功能。野生型v-Src蛋白和在SH2或SH3域中具有插入或缺失的四个突变体在HEK293T细胞中显示出高水平的酪氨酸激酶活性。其他三个突变的v-Src蛋白,包括激酶死亡的版本,显示酪氨酸激酶活性存在缺陷。这种反向共转染方法适用于cDNA文库和位置扫描重组蛋白文库的高通量筛选。

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