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A gene trap approach to isolate mammalian genes involved in the cellular response to genotoxic stress

机译:一种基因陷阱方法,用于分离涉及细胞对遗传毒性胁迫的哺乳动物基因

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摘要

Treatment of cells with DNA damaging agents leads to induction of a variety of genes involved in different cellular processes. We have applied a lacZ-based gene trap strategy to search for new mammalian genes induced by genotoxic stress. A population of 32 x 10(3) neo r clones stably transfected with a gene trap vector was obtained, stained with fluorescein di-beta-d-galactopyranoside and analyzed by flow activated cell sorting and replica plating. This strategy allowed isolation of 30 neo r 'putative inducible' cell lines expressing lacZ only after a DNA damaging treatment. For three clones the site of integration and the degree of inducibility after UV treatment were determined by Southern blot and beta-galactosidase measurement respectively. One cell line (clone VI) showed a single integration site and a reproducible 3-fold induction of beta-galactosidase activity following UV irradiation. Fused transcripts were isolated from induced cells and a portion of the trapped gene was amplified by rapid amplification of cDNA ends. Sequence analysis and comparison with available gene and protein databanks revealed that the gene was novel.
机译:用DNA破坏剂处理细胞会诱导涉及不同细胞过程的多种基因。我们已应用基于lacZ的基因陷阱策略来搜索由遗传毒性胁迫诱导的新哺乳动物基因。获得了用基因陷阱载体稳定转染的32 x 10(3)neor克隆种群,并用荧光素di-β-d-吡喃半乳糖苷进行了染色,并通过流激活细胞分选和复制平板进行了分析。该策略仅在DNA损伤处理后才分离出表达lacZ的30种新的“假定诱导型”细胞系。对于三个克隆,分别通过Southern印迹和β-半乳糖苷酶测量来确定UV处理后的整合位点和诱导度。一个细胞系(VI克隆)显示了单个整合位点,并且在紫外线照射后可重复产生3倍的β-半乳糖苷酶活性。从诱导细胞中分离融合转录本,并通过快速扩增cDNA末端扩增一部分捕获的基因。序列分析和与可用的基因和蛋白质数据库的比较表明该基因是新的。

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