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Enhanced gene trapping in mouse embryonic stem cells.

机译:增强小鼠胚胎干细胞中的基因捕获。

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摘要

Gene trapping is used to introduce insertional mutations into genes of mouse embryonic stem cells (ESCs). It is performed with gene trap vectors that simultaneously mutate and report the expression of the endogenous gene at the site of insertion and provide a DNA tag for rapid identification of the disrupted gene. Gene traps have been employed worldwide to assemble libraries of mouse ESC lines harboring mutations in single genes, which can be used to make mutant mice. However, most of the employed gene trap vectors require gene expression for reporting a gene trap event and therefore genes that are poorly expressed may be under-represented in the existing libraries. To address this problem, we have developed a novel class of gene trap vectors that can induce gene expression at insertion sites, thereby bypassing the problem of intrinsic poor expression. We show here that the insertion of the osteopontin enhancer into several conventional gene trap vectors significantly increases the gene trapping efficiency in high-throughput screens and facilitates the recovery of poorly expressed genes.
机译:基因捕获用于将插入突变引入小鼠胚胎干细胞(ESC)的基因中。它是用基因捕获载体进行的,该载体同时突变并报告内源基因在插入位点的表达,并提供DNA标签以快速鉴定破坏的基因。基因陷阱已在世界范围内用于组装具有单个基因突变的小鼠ESC系文库,可用于制造突变小鼠。然而,大多数采用的基因捕获载体需要基因表达来报告基因捕获事件,因此,表达不佳的基因在现有文库中可能不足。为了解决这个问题,我们开发了一种新型的基因陷阱载体,可以在插入位点诱导基因表达,从而绕过了内在表达不佳的问题。我们在这里显示将骨桥蛋白增强子插入几种常规基因捕获载体中可显着提高高通量筛选中的基因捕获效率,并有助于恢复表达较差的基因。

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