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COP1 and phyB Physically Interact with PIL1 to Regulate Its Stability and Photomorphogenic Development in Arabidopsis

机译:COP1和phyB物理相互作用,以调节其在拟南芥中的稳定性和光形态发生的发展。

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In Arabidopsis thaliana, the cryptochrome and phytochrome photoreceptors act together to promote photomorphogenic development. The cryptochrome and phytochrome signaling mechanisms interact directly with CONSTITUTIVELY PHOTOMORPHOGENIC1 (COP1), a RING motif-containing E3 ligase that acts to negatively regulate photomorphogenesis. COP1 interacts with and ubiquitinates the transcription factors that promote photomorphogenesis, such as ELONGATED HYPOCOTYL5 and LONG HYPOCOTYL IN FAR-RED1 (HFR1), to inhibit photomorphogenic development. Here, we show that COP1 physically interacts with PIF3-LIKE1 (PIL1) and promotes PIL1 degradation via the 26S proteasome. We further demonstrate that phyB physically interacts with PIL1 and enhances PIL1 protein accumulation upon red light irradiation, probably through suppressing the COP1-PIL1 association. Biochemical and genetic studies indicate that PIL1 and HFR1 form heterodimers and promote photomorphogenesis cooperatively. Moreover, we demonstrate that PIL1 interacts with PIF1, 3, 4, and 5, resulting in the inhibition of the transcription of PIF direct-target genes. Our results reveal that PIL1 stability is regulated by phyB and COP1, likely through physical interactions, and that PIL1 coordinates with HFR1 to inhibit the transcriptional activity of PIFs, suggesting that PIL1, HFR1, and PIFs constitute a subset of antagonistic basic helix-loop-helix factors acting downstream of phyB and COP1 to regulate photomorphogenic development.
机译:在拟南芥中,隐色和光敏光感受器共同起作用以促进光形态发生的发展。隐色和植物色素信号传导机制直接与组成性光生化酶1(COP1)相互作用,这是一个包含RING基序的E3连接酶,可负调控光形态发生。 COP1与促进光形态发生的转录因子相互作用,并在其上泛素化,例如FAR-RED1(HFR1)中的长双氢代HYPOCOTYL5和长双氢代TYL(HFR1),以抑制光形态发生。在这里,我们显示COP1与PIF3-LIKE1(PIL1)发生物理相互作用,并通过26S蛋白酶体促进PIL1降解。我们进一步证明phyB与PIL1发生物理相互作用,并可能通过抑制COP1-PIL1缔合而增强了红光照射下PIL1蛋白的积累。生化和遗传研究表明,PIL1和HFR1形成异二聚体并协同促进光形态发生。此外,我们证明PIL1与PIF1、3、4和5相互作用,从而导致PIF直接靶基因的转录受到抑制。我们的结果表明,PIL1的稳定性受phyB和COP1的调节,可能是通过物理相互作用来实现的,并且PIL1与HFR1协同作用以抑制PIF的转录活性,这表明PIL1,HFR1和PIF构成了拮抗性基本螺旋-环-螺旋因子在phyB和COP1下游起作用,调节光形态发生的发展。

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