首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Pineal expression-promoting element (PIPE), a cis-acting element, directs pineal-specific gene expression in zebrafish
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Pineal expression-promoting element (PIPE), a cis-acting element, directs pineal-specific gene expression in zebrafish

机译:松树表达促进元件(PIPE)是一种顺式作用元件,指导斑马鱼中松果体特定基因的表达

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摘要

The pineal gland, sharing morphological and biochemical similarities with the retina, plays a unique and central role in the photoneuroendocrine system. The unique development of the pineal gland is directed by a specific combination of the expressed genes, but little is known about the regulatory mechanism underlying the pineal-specific gene expression. We isolated a 1.1-kbp fragment upstream of the zebrafish exo-rhodopsin (exorh) gene, which is expressed specifically in the pineal gland. Transgenic analysis using an enhanced green fluorescent protein reporter gene demonstrated that the proximal 147-bp region of the exorh promoter is sufficient to direct pineal-specific expression. This region contains three copies of a putative cone rod homeobox (Crx) Otx-binding site, which is known to be required for expression of both retina- and pineal-specific genes. Deletion and muta-tional analyses of the exorh promoter revealed that a previously uncharacterized sequence TGACCCCAATCT termed pineal expression-promoting element (PIPE) is required for pineal-specific promoter activity in addition to the Crx/Otx-binding sites. By using the zebrafish rhodopsin (rh) promoter that drives retina-specific expression, we created a reporter construct having ectopic PIPE in the rh promoter at a position equivalent to that in the exorh promoter by introducing five nucleotide changes. Such a slight modification in the rh promoter induced ectopic enhanced green fluorescent protein expression in the pineal gland without affecting its retinal expression. These results identify PIPE as a critical c/s-element contributing to the pineal-specific gene expression, in combination with the Crx/Otx-binding site(s).
机译:松果体与视网膜具有形态和生物化学的相似性,在光神经内分泌系统中发挥着独特而重要的作用。松果体的独特发育是由表达基因的特定组合指导的,但对松果体特异性基因表达的调控机制知之甚少。我们在斑马鱼exo-rhodopsin(exorh)基因上游分离了一个1.1-kbp片段,该基因在松果体中特别表达。使用增强的绿色荧光蛋白报告基因的转基因分析表明,exorh启动子的近端147-bp区域足以指导松果体特异性表达。该区域包含一个假定的圆锥杆同源盒(Crx)Otx结合位点的三个副本,已知这是表达视网膜和松果体特异性基因所必需的。对exorh启动子的缺失和突变分析表明,除了Crx / Otx结合位点外,松果体特异性启动子活性还需要一个先前未表征的序列TGACCCCAATCT松果体表达促进元件(PIPE)。通过使用斑马鱼视紫红质(rh)启动子驱动视网膜特异性表达,我们通过引入5个核苷酸变化,创建了一个在rh启动子中具有异位PIPE且与exorh启动子相等位置的异位PIPE的报告基因构建体。 rh启动子的这种轻微修饰诱导了异位增强了松果体中绿色荧光蛋白的表达,而不影响其视网膜表达。这些结果将PIPE与Crx / Otx结合位点相结合,是促进松果特异性基因表达的关键c / s元素。

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