首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Expression profiling with arrays of randomly disrupted genes in mouse embryonic stem cells leads to in vivo functional analysis
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Expression profiling with arrays of randomly disrupted genes in mouse embryonic stem cells leads to in vivo functional analysis

机译:用小鼠胚胎干细胞中的随机破坏基因阵列进行表达谱分析可进行体内功能分析

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摘要

DNA arrays are capable of profiling the expression patterns of many genes in a single experiment. After finding a gene of interest in a DNA array, however, labor-intensive gene-targeting experiments sometimes must be performed for the in vivo analysis of the gene function. With random gene trapping, on the other hand, it is relatively easy to disrupt and retrieve hundreds of genes/gene candidates in mouse embryonic stem (ES) cells, but one could overlook potentially important gene-disruption events if only the nucleotide sequences and not the expression patterns of the trapped DNA segments are analyzed. To combine the benefits of the above two experimental systems, we first created ≈900 genetrapped mouse ES cell clones and then constructed arrays of cDNAs derived from the disrupted genes. By using these arrays, we identified a novel gene predominantly expressed in the mouse brain, and the corresponding ES cell clone was used to produced mice homozygous for the disrupted allele of the gene. Detailed analysis of the knockout mice revealed that the gene trap vector completely abolished gene expression downstream of its integration site. Therefore, identification of a gene or novel gene candidate with an interesting expression pattern by using this type of DNA array immediately allows the production of knockout mice from an ES cell clone with a disrupted allele of the sequence of interest.
机译:DNA阵列能够在一个实验中分析许多基因的表达模式。但是,在DNA阵列中找到感兴趣的基因后,有时必须进行劳动密集型的基因靶向实验才能对基因功能进行体内分析。另一方面,通过随机基因捕获,在小鼠胚胎干(ES)细胞中破坏和检索数百种基因/基因候选物相对容易,但是如果仅核苷酸序列而不是核苷酸序列,则可以忽略潜在的重要基因破坏事件。分析捕获的DNA片段的表达模式。为了结合上述两个实验系统的优势,我们首先创建了约900个基因捕获的小鼠ES细胞克隆,然后构建了来自破坏基因的cDNA阵列。通过使用这些阵列,我们确定了一个主要在小鼠脑中表达的新基因,并使用相应的ES细胞克隆产生了纯合的小鼠,其基因被破坏了。对基因敲除小鼠的详细分析显示,基因捕获载体完全消除了其整合位点下游的基因表达。因此,通过使用这种类型的DNA阵列鉴定具有有趣表达模式的基因或新基因候选物,可以立即从具有感兴趣序列等位基因破坏的ES细胞克隆中产生敲除小鼠。

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