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首页> 外文期刊>Journal of biosciences >Developmental regulation and complex organization of the promoter of the non-coding hsre??” gene of Drosophila melanogaster
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Developmental regulation and complex organization of the promoter of the non-coding hsre??” gene of Drosophila melanogaster

机译:非编码hsre启动子的发育调控和复杂组织?”果蝇的基因

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摘要

The nucleus-limited large non-coding hsr?‰-n RNA product of the 93D or the hsr?‰ gene of Drosophila melanogaster binds to a variety of RNA-binding proteins involved in nuclear RNA processing. We examined the developmental and heat shock induced expression of this gene by in situ hybridization of nonradioactively labelled riboprobe to cellular transcripts in intact embryos, larval and adult somatic tissues of wild type and an enhancer-trap line carrying the hsr?‰05241 allele due to insertion of a P-LacZ-rosy+ transposon at a€” 130 bp position of the hsr?‰ promoter. We also examined LacZ expression in the enhancer-trap line and in two transgenic lines carrying different lengths of the hsr?‰ promoter upstream of the LacZ reporter. The hsr?‰ gene is expressed widely at all developmental stages; in later embryonic stages, its expression in the developing central nervous system was prominent. In spite of insertion of a big transposon in the promoter, expression of the hsr?‰05241 allele in the enhancer-trap line, as revealed by in situ hybridization to hsr?‰ transcripts in cells, was similar to that of the wild type allele in all the embryonic, larval and adult somatic tissues examined. Expression of the LacZ gene in this enhancer-trap line was similar to that of the hsr?‰ RNA in all diploid cell types in embryos and larvae but in the polytene cells, the LacZ gene did not express at all, neither during normal development nor after heat shock. Comparison of the expression patterns of hsr?‰ gene and those of the LacZ reporter gene under its various promoter regions in the enhancer-trap and transgenic lines revealed a complex pattern of regulation, which seems to be essential for its dynamically varying expression in diverse cell types.
机译:93D的果核受限的大型非编码hsr?-n RNA产物或果蝇的hsr?‰基因与参与核RNA加工的各种RNA结合蛋白结合。我们通过非放射性标记的核糖核酸探针与野生型完整胚胎,幼体和成年体细胞组织中的细胞转录物原位杂交,研究了该基因的发育和热休克诱导表达。在hsrβ启动子的130bp位置插入一个P-LacZ-rosy +转座子。我们还检查了LacZ在增强子-捕获系和两个携带LacZ报告基因上游不同长度的hsr?‰启动子的转基因系中的表达。 hsrβ基因在所有发育阶段均广泛表达。在胚胎后期,其在发育中的中枢神经系统中的表达是突出的。尽管在启动子中插入了一个大的转座子,但通过与细胞中hsr?‰转录物的原位杂交显示,hsr?‰05241等位基因在增强子-捕获系中的表达与野生型等位基因相似在检查的所有胚胎,幼虫和成年体细胞组织中。 LacZ基因在该增强子捕获系中的表达与hsr?RNA在胚胎和幼虫的所有二倍体细胞类型中的表达相似,但在多烯细胞中,LacZ基因根本不表达,无论是在正常发育还是在正常发育中热冲击后。 hsr?‰基因和LacZ报道基因在增强子-捕获和转基因品系的不同启动子区域下的表达模式的比较揭示了复杂的调控模式,这似乎是其在不同细胞中动态变化表达所必需的类型。

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