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A Time of Change: Dynamics of Chromatin and Transcriptional Regulation During Nuclear Programming in Early Drosophila Development

机译:变化的时代:早期果蝇发育中核程序中染色质和转录调控的动力学。

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摘要

In order for a new organism to form, the genomes of the highly specialized egg and sperm need to be reprogrammed into a totipotent state that is capable of generating all of the cell types that comprise an organism. This reprogramming occurs by erasing chromatin modifications, leaving the cells in a naive state, followed by the induction of specialized programming events. Pioneer factors bind to the genome prior to zygotic genome activation, followed by acetylation of histones and further chromatin specialization by the addition of methylation marks later during differentiation. Genome-wide approaches have provided insight into the genomic and epigenomic regulation of gene expression during development, providing a new perspective on the process of cell specification and differentiation. In this review, we discuss how distal DNA and core promoter elements, RNA polymerase pausing, transcription factors, and co-regulators interact to shape the chromatin landscape and direct tissue-specific expression patterns during embryo development, focusing on the well-characterized Drosophila embryo. (C) 2015 Wiley Periodicals, Inc.
机译:为了形成新的生物,需要将高度专门化的卵和精子的基因组重新编程为全能状态,该状态能够生成构成该生物的所有细胞类型。通过擦除染色质修饰,使细胞保持原始状态,然后引发专门的编程事件,可以进行这种重新编程。在合子基因组激活之前,先驱因子与基因组结合,随后在分化过程中稍后通过添加甲基化标记,使组蛋白乙酰化,并进一步染色质特化。全基因组方法为开发过程中基因表达的基因组和表观基因组调控提供了见识,为细胞规格和分化过程提供了新的视角。在这篇综述中,我们讨论了远端DNA和核心启动子元件,RNA聚合酶暂停,转录因子和共调节剂如何相互作用,从而在胚胎发育过程中形成染色质景观并指导组织特异性表达模式,重点研究了果蝇胚胎的特征。 。 (C)2015威利期刊公司

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