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Interaction between composite elements in the napA promoter: both the B-box ABA-responsive complex and the RY/G complex are necessary for seed-specific expression

机译:napA启动子中复合元件之间的相互作用:B-box ABA反应复合物和RY / G复合物对于种子特异性表达都是必需的

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摘要

During seed maturation, the transcriptional activity of napin genes is regulated by developmental signals involving the transcriptional activator ABI3 and abscisic acid (ABA). To localize cis elements involved in the seed-specific activity of the napin napA promoter, a systematic analysis was performed focusing on two major element complexes, the B-box and RY/G. Substitution mutation analysis using promoter-reporter gene fusions in stable transgenic tobacco showed synergistic interactions between elements within these complexes. The distal part of the B-box shows similarities to abscisic acid response elements and the proximal portion contains a CA-rich element. In vitro studies involving Exonuclease III protection and electrophoretic mobility shift assays revealed binding by nuclear proteins to elements within the B-box. The distal and proximal parts of the B-box were found to bind distinct nuclear protein complexes. By gain-of-function analysis with a tetramer of the B-box fused to a truncated (-46) cauliflower mosaic virus (CaMV) 35S minimal promoter, it was demonstrated that the B-box mediates strong activity in seeds. Further, it was shown that the elements in the B-box constitute an ABA-responsive complex, since the B-box tetramer mediates ABA-responsiveness in vegetative tissues to a construct containing the CaMV virus 35S enhancer (-343 to -90). Thus, the seed-specific activity of the napA promoter relies on the combinatorial interaction between the RY/G complex and the B-box ABA-responsive complex during the ABA response in seed development.
机译:在种子成熟过程中,napin基因的转录活性受到涉及转录激活因子ABI3和脱落酸(ABA)的发育信号的调控。为了定位与napin napA启动子的种子特异性活性有关的顺式元件,对两个主要的元件复合物B-box和RY / G进行了系统分析。在稳定的转基因烟草中使用启动子-报告子基因融合体进行的取代突变分析表明,这些复合物中的元素之间存在协同作用。 B盒的远端部分显示与脱落酸反应元件相似,而近端部分则含有富含CA的元件。涉及外切核酸酶III保护和电泳迁移率迁移分析的体外研究表明,核蛋白与B盒中的元素结合。发现B盒的远端和近端结合不同的核蛋白复合物。通过功能增强分析,将B-box的四聚体与截短的(-46)花椰菜花叶病毒(CaMV)35S最小启动子融合,可以证明B-box在种子中介导了强大的活性。此外,显示出B盒中的元件构成了ABA响应复合物,因为B盒四聚体在营养组织中介导了对包含CaMV病毒35S增强子(-343至-90)的构建体的ABA响应。因此,napA启动子的种子特异性活性取决于种子发育中ABA反应过程中RY / G复合物与B-box ABA反应复合物之间的组合相互作用。

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