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ELF3 recruitment to the PRR9 promoter requires other Evening Complex members in the Arabidopsis circadian clock

机译:ELF3募集到PRR9启动子需要拟南芥生物钟中的其他Evening Complex成员

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摘要

Biological timekeeping is essential for proper growth and development. Organisms such as the model plant Arabidopsis use the circadian clock to coordinate biological processes with the environment so that changes in conditions are anticipated and processes favorably phased. Despite the identification of numerous clock genes, knowledge of their molecular connectivity and influence on output programs remains limited. We recently showed LUX encodes a sequence-specific DNA-binding protein that directly regulates expression of the morning clock gene PRR9. We also showed that LUX interacts with the evening-phased proteins ELF3 and ELF4 to form a complex called the Evening Complex (EC). The EC binds the PIF4 and PIF5 promoters to control hypocotyl growth as a clock output. Here we provide evidence that LUX also recruits ELF3 to the PRR9 promoter. As with the PIF4 and PIF5 promoters, both LUX and its close homolog NOX are required for recruitment. Hence the entire EC likely functions together as part of the core clock oscillator to optimize plant fitness.
机译:生物计时对于适当的生长和发育至关重要。诸如拟南芥示范植物之类的生物利用生物钟来协调生物过程与环境之间的关系,从而可以预期到条件的变化并有利地分阶段进行。尽管已鉴定出许多时钟基因,但对其分子连通性及其对输出程序的影响的了解仍然有限。我们最近发现LUX编码一种序列特异性DNA结合蛋白,该蛋白直接调节早晨时钟基因PRR9的表达。我们还表明,LUX与晚上分阶段的蛋白质ELF3和ELF4相互作用,形成了一种称为晚复合物(EC)的复合物。 EC结合PIF4和PIF5启动子以控制下胚轴的生长作为时钟输出。在这里,我们提供了LUX也将ELF3募集到PRR9启动子的证据。与PIF4和PIF5启动子一样,募集既需要LUX及其紧密同源的NOX。因此,整个EC可能一起作为核心时钟振荡器的一部分发挥作用,以优化工厂适应性。

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