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首页> 外文期刊>Development >Differential cytoplasmic mRNA localisation adjusts pair-rule transcription factor activity to cytoarchitecture in dipteran evolution.
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Differential cytoplasmic mRNA localisation adjusts pair-rule transcription factor activity to cytoarchitecture in dipteran evolution.

机译:胞浆中的差异性mRNA定位可调节二叉骨进化过程中成对规则转录因子的活性使其具有细胞结构。

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摘要

Establishment of segmental pattern in the Drosophila syncytial blastoderm embryo depends on pair-rule transcriptional regulators. mRNA transcripts of pair-rule genes localise to the apical cytoplasm of the blastoderm via a selective dynein-based transport system and signals within their 3'-untranslated regions. However, the functional and evolutionary significance of this process remains unknown. We have analysed subcellular localisation of mRNAs from multiple dipteran species both in situ and by injection into Drosophila embryos. We find that although localisation of wingless transcripts is conserved in Diptera, localisation of even-skipped and hairy pair-rule transcripts is evolutionarily labile and correlates with taxon-specific changes in positioning of nuclei. We show in Drosophila that localised pair-rule transcripts target their proteins in close proximity to the nuclei and increase the reliability of the segmentation process by augmenting gene activity. Our data suggest that mRNA localisation signals in pair-rule transcripts affect nuclear protein uptake and thereby adjust gene activity to a variety of dipteran blastoderm cytoarchitectures.
机译:果蝇合胞体胚盘胚胎中节段模式的建立取决于成对规则的转录调节因子。成对规则基因的mRNA转录物通过基于选择性动力蛋白的转运系统定位在胚盘顶端细胞质中,并在其3'非翻译区域内传递信号。但是,此过程的功能和进化意义仍然未知。我们已经分析了来自多种二萜物种的mRNA的亚细胞定位,无论是原位还是注射到果蝇胚胎中。我们发现,尽管双翅目中无翅转录本的定位是保守的,但偶数和多毛的成对规则转录本的定位在进化上是不稳定的,并且与细胞核定位中的分类群特异性变化相关。我们在果蝇中显示,定位对规则的转录本将其蛋白质定位在紧邻核的位置,并通过增强基因活性来增加分割过程的可靠性。我们的数据表明,成对规则转录本中的mRNA定位信号会影响核蛋白的摄取,从而调节基因的活性,以适应各种二倍体胚盘细胞的细胞结构。

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