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Expression cloning screening of a unique and full-length set of cDNA clones is an efficient method for identifying genes involved in Xenopus neurogenesis

机译:独特且全长的cDNA克隆集的表达克隆筛选是鉴定涉及非洲爪蟾神经发生的基因的有效方法

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Functional screens, where a large numbers of cDNA clones are assayed for certain biological activity, are a useful tool in elucidating gene function. In Xenopus, gain of function screens are performed by pool screening, whereby RNA transcribed in vitro from groups of cDNA clones, ranging from thousands to a hundred, are injected into early embryos. Once an activity is detected in a pool, the active clone is identified by sib-selection. Such screens are intrinsically biased towards potent genes, whose RNA is active at low quantities. To improve the sensitivity and efficiency of a gain of function screen we have bioinformatically processed an arrayed and EST sequenced set of 100,000 gastrula and neurula cDNA clones, to create a unique and full-length set of approximately 2500 clones. Reducing the redundancy and excluding truncated clones from the starting clone set reduced the total number of clones to be screened, in turn allowing us to reduce the pool size to just eight clones per pool. We report that the efficiency of screening this clone set is five-fold higher compared to a redundant set derived from the same libraries. We have screened 960 cDNA clones from this set, for genes that are involved in neurogenesis. We describe the overexpression phenotypes of 18 single clones, the majority of which show a previously uncharacterised phenotype and some of which are completely novel. In situ hybridisation analysis shows that a large number of these genes are specifically expressed in neural tissue. These results demonstrate the effectiveness of a unique full-length set of cDNA clones for uncovering players in a developmental pathway.
机译:在筛选大量cDNA克隆的某些生物学活性的功能筛选中,它是阐明基因功能的有用工具。在非洲爪蟾中,通过池筛选进行功能筛选,将成千上百个成百上千的cDNA克隆体外转录的RNA注入早期胚胎。一旦在池中检测到活性,就通过同胞选择来鉴定活性克隆。这种筛选本质上偏向于有效基因,这些基因的RNA活性很低。为了提高获得功能筛选的灵敏度和效率,我们用生物信息学方法处理了100,000个gastrula和neurula cDNA克隆的阵列和EST序列集,以创建约2500个克隆的独特且全长的集。减少冗余并从起始克隆集中排除截短的克隆,将减少要筛选的克隆总数,从而使我们可以将池大小减少到每个池只有八个克隆。我们报告说,与从相同文库衍生的冗余集相比,筛选此克隆集的效率高五倍。我们从该组中筛选了960个cDNA克隆,寻找涉及神经发生的基因。我们描述了18个单个克隆的过表达表型,其中大多数显示了以前未表征的表型,其中一些是完全新颖的。原位杂交分析表明大量这些基因在神经组织中特异性表达。这些结果证明了独特的全长cDNA克隆集对于发现发育途径中的球员的有效性。

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