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cis-Regulatory control of the initial neurogenic pattern of onecut gene expression in the sea urchin embryo

机译:顺式调控海胆胚胎中onecut基因表达的初始神经源性模式

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Specification of the ciliated band (CB) of echinoid embryos executes three spatial functions essential for postgastrular organization. These are establishment of a band about 5 cells wide which delimits and bounds other embryonic territories; definition of a neurogenic domain within this band; and generation within it of arrays of ciliary cells that bear the special long cilia from which the structure derives its name. In Strongylocentrotus purpuratus the spatial coordinates of the future ciliated band are initially and exactly determined by the disposition of a ring of cells that transcriptionally activate the onecut homeodomain regulatory gene, beginning in blastula stage, long before the appearance of the CB per se. Thus the cis-regulatory apparatus that governs onecut expression in the blastula directly reveals the genomic sequence code by which these aspects of the spatial organization of the embryo are initially determined. We screened the entire onecut locus and its flanking region for transcriptionally active cis-regulatory elements, and by means of BAC recombineered deletions identified three separated and required cis-regulatory modules that execute different functions. The operating logic of the crucial spatial control module accounting for the spectacularly precise and beautiful early onecut expression domain depends on spatial repression. Previously predicted oral ectoderm and aboral ectoderm repressors were identified by cis-regulatory mutation as the products of goosecoid and irxa genes respectively, while the pan-ectodermal activator SoxB1 supplies a transcriptional driver function. (C) 2015 Published by Elsevier Inc.
机译:棘突类动物的纤毛带(CB)的规格执行了对胃后组织必不可少的三个空间功能。这是建立约5个细胞宽的条带,该条带界定并限制了其他胚胎区域。在该频带内的神经源性结构域的定义;并在其中产生带有特殊长纤毛的睫状细胞阵列,该结构由此得名。在紫圆Strong虫(Strongylocentrotus purpuratus)中,未来纤毛带的空间坐标最初和精确地由在自胚芽期开始的很早就出现在囊胚阶段的转录激活单切同源域调节基因的细胞环的位置决定。因此,控制囊胚中一键表达的顺式调控装置直接揭示了基因组序列编码,通过该基因组编码初步确定了胚胎空间组织的这些方面。我们筛选了整个onecut基因座及其侧翼区域的转录活性顺式调控元件,并通过BAC重组缺失确定了三个分离且需要执行不同功能的顺式调控模块。至关重要的空间控制模块的操作逻辑考虑到了精确而精美的早期onecut表达域,这取决于空间抑制。通过顺式调控突变将先前预测的口腔外胚层和胎盘外胚层阻遏物分别鉴定为鹅状和irxa基因的产物,而全表皮活化因子SoxB1提供转录驱动功能。 (C)2015年由Elsevier Inc.出版

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