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在海胆进化过程中,通过对spec2a基因相邻重复序列的借调与优化来创建顺式调控元件。

Creation of cis-regulatory elements during sea urchin evolution by co-option and optimization of a repetitive sequence adjacent to the spec2a gene.

作者信息

Dayal Sandeep, Kiyama Takae, Villinski Jeffrey T, Zhang Ning, Liang Shuguang, Klein William H

机构信息

Department of Biochemistry and Molecular Biology, The University of Texas M.D. Anderson Cancer Center, Houston, TX 77030, USA.

出版信息

Dev Biol. 2004 Sep 15;273(2):436-53. doi: 10.1016/j.ydbio.2004.06.011.

Abstract

The creation, preservation, and degeneration of cis-regulatory elements controlling developmental gene expression are fundamental genome-level evolutionary processes about which little is known. Here, we identify critical differences in cis-regulatory elements controlling the expression of the sea urchin aboral ectoderm-specific spec genes. We found multiple copies of a repetitive sequence element termed RSR in genomes of species within the Strongylocentrotidae family, but RSRs were not detected in genomes of species outside Strongylocentrotidae. spec genes in Strongylocentrotus purpuratus are invariably associated with RSRs, and the spec2a RSR functioned as a transcriptional enhancer and displayed greater activity than did spec1 or spec2c RSRs. Single-base pair differences at two cis-regulatory elements within the spec2a RSR increased the binding affinities of four transcription factors, SpCCAAT-binding factor at one element and SpOtx, SpGoosecoid, and SpGATA-E at another. The cis-regulatory elements to which these four factors bound were recent evolutionary acquisitions that acted to either activate or repress transcription, depending on the cell type. These elements were found in the spec2a RSR ortholog in Strongylocentrotus pallidus but not in RSR orthologs of Strongylocentrotus droebachiensis or Hemicentrotus pulcherrimus. Our results indicated that a dynamic pattern of cis-regulatory element evolution exists for spec genes despite their conserved aboral ectoderm expression.

摘要

控制发育基因表达的顺式调控元件的产生、保存和退化是基本的基因组水平进化过程,目前人们对此知之甚少。在这里,我们确定了控制海胆反口外胚层特异性spec基因表达的顺式调控元件中的关键差异。我们在球海胆科物种的基因组中发现了一种名为RSR的重复序列元件的多个拷贝,但在球海胆科以外的物种基因组中未检测到RSR。紫海胆中的spec基因总是与RSR相关联,并且spec2a RSR起到转录增强子的作用,其活性比spec1或spec2c RSR更高。spec2a RSR内两个顺式调控元件的单碱基对差异增加了四种转录因子的结合亲和力,一个元件上的SpCCAAT结合因子以及另一个元件上的SpOtx、SpGoosecoid和SpGATA-E。这四种因子结合的顺式调控元件是最近进化获得的,根据细胞类型的不同,它们起到激活或抑制转录的作用。这些元件在苍白球海胆的spec2a RSR直系同源物中被发现,但在大西洋球海胆或马粪海胆的RSR直系同源物中未被发现。我们的结果表明,尽管spec基因在反口外胚层表达上具有保守性,但它们的顺式调控元件存在动态进化模式。

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