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首页> 外文期刊>The Plant Cell >Arabidopsis CAM7 and HY5 physically interact and directly bind to the HY5 promoter to regulate its expression and thereby promote photomorphogenesis.
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Arabidopsis CAM7 and HY5 physically interact and directly bind to the HY5 promoter to regulate its expression and thereby promote photomorphogenesis.

机译:拟南芥CAM7和HY5物理相互作用,并直接与HY5启动子结合,以调节其表达,从而促进光形态发生。

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摘要

Arabidopsis thaliana CALMODULIN7 (CAM7), a unique member of the calmodulin gene family, plays a crucial role as a transcriptional regulator in seedling development. The elongated HYPOCOTYL5 (HY5) bZIP protein, an integrator of multiple signaling pathways, also plays an important role in photomorphogenic growth and light-regulated gene expression. CAM7 acts synergistically with HY5 to promote photomorphogenesis at various wavelengths of light. Although the genetic relationships between CAM7 and HY5 in light-mediated seedling development have been demonstrated, the molecular connectivity between CAM7 and HY5 is unknown. Furthermore, whereas HY5-mediated gene regulation has been fairly well investigated, the transcriptional regulation of HY5 is largely unknown. Here, we report that HY5 expression is regulated by HY5 and CAM7 at various wavelengths of light and also at various stages of development. In vitro and in vivo DNA-protein interaction studies suggest that HY5 and CAM7 bind to closely located T/G- and E-box cis-acting elements present in the HY5 promoter, respectively. Furthermore, CAM7 and HY5 physically interact and regulate the expression of HY5 in a concerted manner. Taken together, these results demonstrate that CAM7 and HY5 directly interact with the HY5 promoter to mediate the transcriptional activity of HY5 during Arabidopsis seedling development.
机译:拟南芥CALMODULIN7(CAM7),钙调蛋白基因家族的独特成员,在幼苗发育中作为转录调节因子起着至关重要的作用。延长的HYPOCOTYL5(HY5)bZIP蛋白是多种信号通路的整合体,在光形态发生生长和光调节基因表达中也起着重要作用。 CAM7与HY5协同作用,以促进各种波长的光的光形态发生。尽管已经证明了CAM7和HY5在光介导的幼苗发育中的遗传关系,但CAM7和HY5之间的分子连通性尚不清楚。此外,尽管已经对HY5介导的基因调控进行了充分的研究,但HY5的转录调控仍是未知的。在这里,我们报道HY5表达受HY5和CAM7在各种波长的光以及在发展的各个阶段的调节。体外和体内DNA-蛋白质相互作用研究表明,HY5和CAM7分别与HY5启动子中紧密定位的T / G-和E-box顺式作用元件结合。此外,CAM7和HY5以协调的方式物理相互作用并调节HY5的表达。两者合计,这些结果表明,CAM7和HY5直接与HY5启动子相互作用,以介导拟南芥幼苗发育过程中HY5的转录活性。

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