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Paused Pol II coordinates tissue morphogenesis in the drosophila embryo

机译:暂停的Pol II协调果蝇胚胎中的组织形态发生

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摘要

Paused RNA polymerase (Pol II) is a pervasive feature of Drosophila embryos and mammalian stem cells, but its role in development is uncertain. Here, we demonstrate that a spectrum of paused Pol II determines the "time to synchrony" - the time required to achieve coordinated gene expression across the cells of a tissue. To determine whether synchronous patterns of gene activation are significant in development, we manipulated the timing of snail expression, which controls the coordinated invagination of ~1,000 mesoderm cells during gastrulation. Replacement of the strongly paused snail promoter with moderately paused or nonpaused promoters causes stochastic activation of snail expression and increased variability of mesoderm invagination. Computational modeling of the dorsal-ventral patterning network recapitulates these variable and bistable gastrulation profiles and emphasizes the importance of timing of gene activation in development. We conclude that paused Pol II and transcriptional synchrony are essential for coordinating cell behavior during morphogenesis.
机译:暂停的RNA聚合酶(Pol II)是果蝇胚胎和哺乳动物干细胞的普遍特征,但其在发育中的作用尚不确定。在这里,我们证明了暂停的Pol II谱确定了“同步时间”,即在整个组织细胞中实现协调基因表达所需的时间。为了确定基因激活的同步模式是否在发育中很重要,我们操纵了蜗牛表达的时间,该时间控制了在成胃过程中约1,000个中胚层细胞的协同内陷。用中度暂停或未暂停的启动子替换强暂停的蜗牛启动子会导致蜗牛表达的随机激活和中胚层内陷的变异性增加。背腹模式网络的计算模型概括了这些可变的和双稳态的胃动分布,并强调了基因激活时机在发育中的重要性。我们得出的结论是,停顿的Pol II和转录同步对于形态发生过程中协调细胞行为至关重要。

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