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粒头和泽尔达竞争与最早表达的果蝇基因的启动子结合。

Grainyhead and Zelda compete for binding to the promoters of the earliest-expressed Drosophila genes.

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley, CA 94720, USA.

出版信息

Dev Biol. 2010 Sep 15;345(2):248-55. doi: 10.1016/j.ydbio.2010.06.026. Epub 2010 Jul 1.

Abstract

Maternally contributed mRNAs and proteins control the initial stages of development following fertilization. During this time, most of the zygotic genome remains transcriptionally silent. The initiation of widespread zygotic transcription is coordinated with the degradation of maternally provided mRNAs at the maternal-to-zygotic transition (MZT). While most of the genome is silenced prior to the MZT, a small subset of zygotic genes essential for the future development of the organism is transcribed. Previous work in our laboratory and others identified the TAGteam element, a set of related heptameric DNA-sequences in the promoters of many early-expressed Drosophila genes required to drive their unusually early transcription. To understand how this unique subset of genes is regulated, we identified a TAGteam-binding factor Grainyhead (Grh). We demonstrated that Grh and the previously characterized transcriptional activator Zelda (Zld) bind to different TAGteam sequences with varying affinities, and that Grh competes with Zld for TAGteam occupancy. Moreover, overexpression of Grh in the early embryo causes defects in cell division, phenocopying Zld depletion. Our findings indicate that during early embryonic development the precise timing of gene expression is regulated by both the sequence of the TAGteam elements in the promoter and the relative levels of the transcription factors Grh and Zld.

摘要

母体贡献的 mRNA 和蛋白质控制受精后发育的初始阶段。在此期间,合子基因组的大部分仍然处于转录沉默状态。广泛的合子转录的启动与母源到合子过渡 (MZT) 时母体提供的 mRNA 的降解协调一致。虽然大部分基因组在 MZT 之前被沉默,但一小部分对生物体未来发育至关重要的合子基因被转录。我们实验室和其他实验室的先前工作鉴定了 TAGteam 元件,这是一组在许多早期表达的果蝇基因启动子中相关的七聚体 DNA 序列,是驱动其异常早期转录所必需的。为了了解如何调节这组独特的基因,我们鉴定了 TAGteam 结合因子 Grainyhead (Grh)。我们证明 Grh 和以前表征的转录激活因子 Zelda (Zld) 以不同的亲和力结合到不同的 TAGteam 序列上,并且 Grh 与 Zld 竞争 TAGteam 占据。此外,在早期胚胎中过量表达 Grh 会导致细胞分裂缺陷,与 Zld 耗竭的表型相似。我们的研究结果表明,在早期胚胎发育过程中,基因表达的精确时间由启动子中 TAGteam 元件的序列和转录因子 Grh 和 Zld 的相对水平共同调节。

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