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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Extensive polymerase pausing during Drosophila axis patterning enables high-level and pliable transcription
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Extensive polymerase pausing during Drosophila axis patterning enables high-level and pliable transcription

机译:果蝇轴构图过程中广泛的聚合酶暂停可实现高水平和柔韧性的转录

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摘要

Cascades of zygotic gene expression pattern the anterior-posterior (AP) and dorsal-ventral (DV) axes of the early Drosophila embryo. Here, we used the global run-on sequencing assay (GRO-seq) to map the genome-wide RNA polymerase distribution during early Drosophila embryogenesis, thus providing insights into how genes are regulated. We identify widespread promoter-proximal pausing yet show that the presence of paused polymerase does not necessarily equate to direct regulation through pause release to productive elongation. Our data reveal that a subset of early Zelda-activated genes is regulated at the level of polymerase recruitment, whereas other Zelda target and axis patterning genes are predominantly regulated through pause release. In contrast to other signaling pathways, we found that bone morphogenetic protein (BMP) target genes are collectively more highly paused than BMP pathway components and show that BMP target gene expression requires the pause-inducing negative elongation factor (NELF) complex. Our data also suggest that polymerase pausing allows plasticity in gene activation throughout embryogenesis, as transiently repressed and transcriptionally silenced genes maintain and lose promoter polymerases, respectively. Finally, we provide evidence that the major effect of pausing is on the levels, rather than timing, of transcription. These data are discussed in terms of the efficiency of transcriptional activation required across cell populations during developmental time constraints.
机译:合子基因表达的级联模式早期果蝇胚胎的前后(AP)和背腹(DV)轴。在这里,我们使用了全球连续测序法(GRO-seq)绘制了果蝇早期胚胎发生过程中全基因组RNA聚合酶分布图,从而提供了基因调控的见解。我们发现广泛的启动子近端暂停,但表明暂停的聚合酶的存在不一定等同于通过暂停释放到生产性延长的直接调控。我们的数据显示,早期Zelda激活基因的子集在聚合酶募集的水平受到调控,而其他Zelda目标和轴模式基因主要通过暂停释放进行调控。与其他信号通路相反,我们发现骨形态发生蛋白(BMP)靶基因比BMP通路组分总体上被更高程度地暂停,并且表明BMP靶基因表达需要暂停诱导的负伸长因子(NELF)复合体。我们的数据还表明,聚合酶暂停可以使整个胚胎发生过程中的基因激活具有可塑性,因为瞬时抑制和转录沉默的基因分别维持和丢失启动子聚合酶。最后,我们提供的证据表明,暂停的主要作用在于转录的水平而不是时间。就发育时间限制期间跨细胞群体所需的转录激活效率进行了讨论。

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