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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Photoactivated phytochromes interact with HEMERA and promote its accumulation to establish photomorphogenesis in Arabidopsis
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Photoactivated phytochromes interact with HEMERA and promote its accumulation to establish photomorphogenesis in Arabidopsis

机译:光活化的植物色素与HEMERA相互作用并促进其积累,从而在拟南芥中建立光形态发生。

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摘要

Plant development is profoundly regulated by ambient light cues through the red/far-red photoreceptors, the phytochromes. Early phytochrome signaling events include the translocation of phytochromes from the cytoplasm to subnuclear domains called photobodies and the degradation of antagonistically acting phytochromeinteracting factors (PIFs). We recently identified a key phytochrome signaling component, HEMERA (HMR), that is essential for both phytochrome B (phyB) localization to photobodies and PIF degradation. However, the signaling mechanism linking phytochromes and HMR is unknown. Here we show that phytochromes directly interact with HMR to promote HMR protein accumulation in the light. HMR binds more strongly to the active form of phytochromes. This interaction is mediated by the photosensory domains of phytochromes and two phytochrome-interacting regions in HMR. Missense mutations in either HMR or phyB that alter the phytochrome/ HMR interaction can also change HMR levels and photomorphogenetic responses. HMR accumulation in a constitutively active phyB mutant (YHB) is required for YHB-dependent PIF3 degradation in the dark. Our genetic and biochemical studies strongly support a novel phytochrome signaling mechanism in which photoactivated phytochromes directly interact with HMR and promote HMR accumulation, which in turn mediates the formation of photobodies and the degradation of PIFs to establish photomorphogenesis.
机译:植物的发育受环境光信号通过红色/远红色感光器(植物色素)的调节。早期的植物色素信号传递事件包括将植物色素从细胞质转移到称为光体的亚核域,以及拮抗性植物色素相互作用因子(PIF)的降解。最近,我们确定了关键的植物色素信号传导成分HEMERA(HMR),这对于将植物色素B(phyB)定位到光体和PIF降解都是必不可少的。但是,连接植物色素和HMR的信号传导机制尚不清楚。在这里,我们显示了植物色素与HMR直接相互作用,以促进光中HMR蛋白的积累。 HMR与植物色素的活性形式更牢固地结合。这种相互作用是由HMR中的植物色素的光敏结构域和两个植物色素相互作用区域介导的。 HMR或phyB中的错义突变会改变植物色素/ HMR的相互作用,也会改变HMR的水平和光形态发生反应。在黑暗中,YHB依赖的PIF3降解需要HMR在组成型活性phyB突变体(YHB)中积累。我们的遗传和生化研究强烈支持一种新的植物色素信号传导机制,其中光活化的植物色素直接与HMR相互作用并促进HMR积累,进而介导光体的形成和PIF的降解以建立光形态发生。

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