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A new cis-acting regulatory element driving gene expression in the zebrafish pineal gland

机译:斑马鱼松果体中一个新的顺式调控元件驱动基因表达

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MOTIVATION: The identification of functional cis-acting DNA regulatory elements is a crucial step towards understanding gene regulation. Ab initio motif detection algorithms have been extensively used in search of regulatory elements. Yet, their success in providing experimentally validated regulatory elements in vertebrates has been limited. RESULTS: Here we report in silico identification and in vivo validation of regulatory elements that determine enhanced gene expression in the pineal gland of zebrafish. Microarray data enabled detection of genes that exhibit high expression in the pineal gland. The promoter regions of these genes were computationally analyzed in order to identify overrepresented motifs. The highest ranking motif identified is a CRX/OTX binding site, known to govern expression in the pineal gland and retina. The second highest ranking motif was not reported before; we experimentally validated its function in vivo by mutational analysis. The methodology presented here may be applicable as a general scheme for finding regulatory elements that contribute to tissue-specific gene expression.
机译:动机:识别顺式作用DNA调控功能元件是了解基因调控的关键步骤。从头算起基元检测算法已广泛用于寻找调控元件。然而,它们在提供经脊椎动物验证的调节元件方面的成功受到限制。结果:在这里我们报告计算机识别和调节元件确定斑马鱼松果体中的基因表达增强的体内验证。微阵列数据能够检测出在松果体中高表达的基因。对这些基因的启动子区域进行了计算分析,以鉴定过度表达的基序。鉴定出的最高等级基序是CRX / OTX结合位点,已知其控制松果体和视网膜中的表达。排名第二的主题以前没有被报道过。我们通过突变分析实验性地验证了其功能。这里介绍的方法可能适用于寻找有助于组织特异性基因表达的调控元件的一般方案。

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