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High throughput design of Bacterial Artificial Chromosomes (BACs) for cell type specific gene expression in transgenic mice

机译:转基因小鼠细胞类型特异性基因表达的细菌人工染色体(BACS)的高通量设计

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Recent advances in homologue recombination based Bacterial Artificial Chromosome (BAC) engineering have greatly simplified knock-in, knock-out and random integration based transgenic mice technologies. Despite the rapid advances in "wet" BAC engineering, efficient bioinformatics tools for choosing the appropriate BACs and designing the targeting construct with gene specific homology arms has not been described. Here we introduce a novel bioinformatics tool called eBAC (electronic BAC) that designs, in a high throughput way, all the necessary constructs for BAC engineering. The input to eBAC is a list of genes. eBAC automatically locates and analyzes the BACs containing the genes of interest, finds the appropriate homology arms and designs all necessary primers for BAC engineering as well as tests the BAC for critical restriction sites. eBAC shortens the time for designing BAC recombination from many hours to seconds.
机译:同源物重组基基细菌人工染色体(BAC)工程的最新进展具有很大简化的敲入,敲除和随机整合基转基因小鼠技术。尽管“湿”BAC工程中的快速进展,但尚未描述用于选择适当的BAC和设计具有基因特异性同源臂的靶向构建体的有效生物信息学工具。在这里,我们介绍一种名为EBAC(电子BAC)的新型生物信息工具,以高吞吐量的方式设计,以高吞吐量,所有必要的BAC工程构造。 EBAC的输入是基因列表。 EBAC自动定位并分析含有感兴趣基因的BAC,找到适当的同源臂,并为BAC工程设计所有必要的引物,以及测试临界限制性位点的BAC。 EBAC缩短了从数小时到几秒钟设计BAC重组的时间。

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