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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Identification of Circadian-Clock-Regulated Enhancers and Genes of Drosophila melanogaster by Transposon Mobilization and Luciferase Reporting of Cyclical Gene Expression
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Identification of Circadian-Clock-Regulated Enhancers and Genes of Drosophila melanogaster by Transposon Mobilization and Luciferase Reporting of Cyclical Gene Expression

机译:转座子动员和荧光素酶报告循环基因表达的鉴定昼夜节律调节的增强子和果蝇的基因。

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A new way was developed to isolate rhythmically expressed genes in Drosophila by modifying the classic enhancer-trap method. We constructed a P element containing sequences that encode firefly luciferase as a reporter for oscillating gene expression in live flies. After generation of 1176 autosomal insertion lines, bioluminescence screening revealed rhythmic reporter-gene activity in 6% of these strains. Rhythmically fluctuating reporter levels were shown to be altered by clock mutations in genes that specify various circadian transcription factors or repressors. Intriguingly, rhythmic luminescence in certain lines was affected by only a subset of the pacemaker mutations. By isolating genes near 13 of the transposon insertions and determining their temporal mRNA expression pattern, we found that four of the loci adjacent to the trapped enhancers are rhythmically expressed. Therefore, this approach is suitable for identifying genetic loci regulated by the circadian clock. One transposon insert caused a mutation in the rhythmically expressed gene numb . This novel numb allele, as well as previously described ones, was shown to affect the fly's rhythm of locomotor activity. In addition to its known role in cell fate determination, this gene and the phosphotyrosine-binding protein it encodes are likely to function in the circadian system.
机译:通过修改经典的增强子捕获方法,开发了一种新方法来分离果蝇中有节奏的表达基因。我们构建了一个P元件,该元件包含编码萤火虫荧光素酶的序列,作为在实蝇中振荡基因表达的报告基因。在生成1176个常染色体插入株后,生物发光筛选显示了这些菌株中6%的节律性报告基因活性。在指定各种昼夜节律转录因子或阻遏物的基因中,时钟波动显示出节律性波动的报告基因水平被改变。有趣的是,某些细胞系的节律性发光仅受起搏器突变的一部分影响。通过分离转座子插入附近的13个基因并确定其瞬时mRNA表达模式,我们发现与捕获的增强子相邻的四个基因座有节奏地表达。因此,该方法适用于鉴定由生物钟调节的遗传基因座。一个转座子插入导致节奏表达的基因麻木突变。该新的麻木等位基因以及先前描述的等位基因被证明会影响果蝇的自发活动节奏。除了其在细胞命运测定中的已知作用外,该基因及其编码的磷酸酪氨酸结合蛋白还可能在昼夜节律系统中起作用。

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