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首页> 外文期刊>Journal of Molecular Biology >Biochemical Fractionation of Time-Resolved Drosophila Embryos Reveals Similar Transcriptomic Alterations in Replication Checkpoint and Histone mRNA Processing Mutants
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Biochemical Fractionation of Time-Resolved Drosophila Embryos Reveals Similar Transcriptomic Alterations in Replication Checkpoint and Histone mRNA Processing Mutants

机译:时间分离的果蝇胚胎的生化分馏显示了复制检查点和组蛋白mRNA加工突变体中类似的转录组改变

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Abstract In higher eukaryotes, maternally provided gene products drive the initial stages of embryogenesis until the zygotic transcriptional program takes over, a developmental process called the midblastula transition (MBT). In addition to zygotic genome activation, the MBT involves alterations in cell-cycle length and the implementation of DNA damage/replication checkpoints that serve to monitor genome integrity. Previous work has shown that mutations affecting histone mRNA metabolism or DNA replication checkpoint factors severely impact developmental progression through the MBT, prompting us to characterize and contrast the transcriptomic impact of these genetic perturbations. In this study, we define gene expression profiles that mark early embryogenesis in Drosophila through transcriptomic analyses of developmentally staged (early syncytial versus late blastoderm) and biochemically fractionated (nuclear versus cytoplasmic) wild-type (wt) embryos. We then compare the transcriptomic profiles of loss-of-function mutants of the Chk1/Grapes replication checkpoint kinase and the stem loop binding protein (SLBP), a key regulator of replication-dependent histone mRNAs. Our analysis of RNA spatial and temporal distribution during embryogenesis offers new insights into the dynamics of early embryogenesis. In addition, we find that grp and Slbp mutant embryos display profound and highly similar defects in gene expression, most strikingly in zygotic gene expression, compromising the transition from a maternal to a zygotic regulation of development. Graphical Abstract Display Omitted Highlights ? Biochemical fractionation of time-resolved wt embryo collections identifies transcripts exhibiting asymmetric spatiotemporal distributions. ? Mutants of the histone mRNA processing factor SLBP mimic the transcriptomic alterations associated to a mutant of the replication checkpoint factor Chk1. ? Chk1 and SLBP loss-of-function mutations compromise the expression of over 2500 RNAs, mostly zygotic transcripts enriched in wt blastoderm embryos.
机译:摘要在较高的真核时,母系提供基因产物驱动胚胎发生的初始阶段,直到Zygotic转录程序接管,一种称为中期转变(MBT)的发育过程。除了Zygotic Genome活化之外,MBT还涉及细胞周期长度的改变和用于监测基因组完整性的DNA损伤/复制检查点的实施。以前的工作表明,影响组蛋白mRNA代谢或DNA复制检查点因子的突变通过MBT严重影响发展进展,促使我们表征和对比这些遗传扰动的转录组的影响。在这项研究中,我们通过发育中分阶段(早期合胞增长晚骨囊)和生物化学分级(核与细胞质)野生型(WT)野生型(WT)胚胎,定义基因表达曲线标记果蝇中的早期胚胎发生。然后,比较CHK1 /葡萄复制检查点激酶和茎环结合蛋白(SLBP)的功能突变体的转录组谱,其复制依赖性组蛋白MRNA的关键调节器。我们对胚胎发生过程中RNA空间和时间分布的分析提供了新的胚胎发生动态的新见解。此外,我们发现GRP和SLBP突变体胚胎在基因表达中显示出深刻和高度相似的缺陷,最引人注目的是在Zygotic基因表达中,损害了从母体转变的发育的妇幼发育。图形抽象显示省略了亮点?时间分辨的WT胚胎收集的生化分馏识别表现出不对称的时空分布的转录物。还是组蛋白mRNA处理因子SLBP的突变体模拟了与复制检查点因子CHK1的突变体相关的转录组改变。还是CHK1和SLBP失去功能突变损害了超过2500 rNA的表达,大多是富含WT Blastoderm胚胎的子宫内转录物。

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