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斑马鱼 six3a 启动子区域中的自调节结合位点定义了 Six3 蛋白的新识别序列。

Autoregulatory binding sites in the zebrafish six3a promoter region define a new recognition sequence for Six3 proteins.

机构信息

Department of Molecular Biology, University of Bergen, Norway.

出版信息

FEBS J. 2010 Apr;277(7):1761-75. doi: 10.1111/j.1742-4658.2010.07599.x. Epub 2010 Feb 24.

Abstract

The homeodomain (HD) transcription factor Six3, which is a member of the Six/Sine oculis family, is essential for development of the eyes and forebrain in vertebrates. It has recently been claimed that the HDs of Six3 and other members of the Six family have a common recognition sequence, TGATAC. However, a different recognition sequence including the typical TAAT core motif, which has not yet been fully defined, has also been proposed for the Six3 HD in mice. Our study of the zebrafish orthologue six3a, which has an identical HD, shows that it binds in vitro to multiple TAAT-containing sites within its promoter region. Comparison of the different binding affinities for these sequences identifies three high-affinity sites with a common TAATGTC motif. Notably, this new recognition sequence, which is supported by our analysis of the influence of single-nucleotide substitutions on the DNA-binding affinity, is distinct from all of the DNA-binding specificities previously described in surveys of HDs. In addition, our comparison of Six3a HD binding to the novel TAATGTC motif and the common recognition sequence of Six family HDs (TGATAC) shows very similar affinities, suggesting two distinct DNA-binding modes. Transient reporter assays of the six3a promoter in zebrafish embryos also indicate that the three high-affinity sites are involved in autoregulation. In support of this, chromatin immunoprecipitation experiments show enrichment of Six3a binding to a six3a promoter fragment containing two clustered high-affinity sites. These findings provide strong evidence that the TAATGTC motif is an important target sequence for vertebrate Six3 proteins in vivo.

摘要

同源结构域 (HD) 转录因子 Six3 是 Six/Sine oculis 家族的成员,对于脊椎动物眼睛和前脑的发育至关重要。最近有人声称,Six3 和其他 Six 家族成员的 HD 具有共同的识别序列 TGATAC。然而,也有人提出,Six3 HD 的识别序列包括典型的 TAAT 核心基序,但尚未完全定义。我们对斑马鱼同源物 six3a 的研究表明,它在体外与启动子区域内的多个包含 TAAT 的位点结合。对这些序列不同结合亲和力的比较确定了三个具有共同 TAATGTC 基序的高亲和力位点。值得注意的是,这个新的识别序列得到了我们对单核苷酸取代对 DNA 结合亲和力影响的分析的支持,与之前在 HD 调查中描述的所有 DNA 结合特异性都不同。此外,我们比较了 Six3a HD 与新的 TAATGTC 基序和 Six 家族 HD 的共同识别序列 (TGATAC) 的结合,发现亲和力非常相似,表明存在两种不同的 DNA 结合模式。在斑马鱼胚胎中进行的 six3a 启动子瞬时报告基因实验也表明,三个高亲和力位点参与了自身调控。支持这一观点的是,染色质免疫沉淀实验表明,Six3a 结合富含两个聚集的高亲和力位点的 six3a 启动子片段。这些发现为 TAATGTC 基序是脊椎动物 Six3 蛋白体内重要靶序列提供了有力证据。

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