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The Arabidopsis B-BOX Protein BZS1/BBX20 Interacts with HY5 and Mediates Strigolactone Regulation of Photomorphogenesis

机译:拟南芥B-BOX蛋白BZS1 / BBX20与HY5相互作用并介导Strigolactone调节光形态发生。

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摘要

Plant growth is controlled by integration of hormonal and light-signaling pathways. BZS1 is a B-box zinc finger protein previously characterized as a negative regulator in the brassinosteroid (BR) signaling pathway and positive regulator in the light-signaling pathway. However, the mechanisms by which BZS1/BBX20 integrates light and hormonal pathways are not fully understood. Here, using a quantitative proteomic workflow, we identified several BZS1-associated proteins including light signaling components COP1 and HY5. Direct interactions of BZS1 with COP1 and HY5 were verified by yeast two-hybrid and co-immunoprecipitation assays. Overexpression of BZS1 causes a dwarf phenotype that is suppressed by the hy5 mutation, while overexpression of BZS1 fused with the SRDX transcription repression domain (BZS1-SRDX) causes a long-hypocotyl phenotype similar to hy5, indicating that BZS1’s function requires HY5. BZS1 positively regulates HY5 expression, whereas HY5 negatively regulates BZS1 protein level, forming a feedback loop that potentially contributes to signaling dynamics. In contrast to BR, strigolactone (SL) increases BZS1 level, whereas the SL responses of hypocotyl elongation, chlorophyll and HY5 accumulation are diminished in the BZS1-SRDX seedlings, indicating that BZS1 is involved in these SL responses. These results demonstrate that BZS1 interacts with HY5 and plays a central role in integrating light and multiple hormone signals for photomorphogenesis in Arabidopsis.
机译:植物生长受激素和光信号通路的整合控制。 BZS1是一种B-box锌指蛋白,以前被表征为油菜素类固醇(BR)信号通路中的负调节剂,而光信号通路中的正调节剂。但是,尚不清楚BZS1 / BBX20整合光和激素途径的机制。在这里,我们使用定量的蛋白质组学工作流程,鉴定了几种BZS1相关蛋白,包括光信号成分COP1和HY5。 BZS1与COP1和HY5的直接相互作用已通过酵母双杂交和共免疫沉淀试验得以证实。 BZS1的过表达导致被hy5突变抑制的矮表型,而与SRDX转录抑制域(BZS1-SRDX)融合的BZS1的过表达导致类似于hy5的长下胚轴表型,表明BZS1的功能需要HY5。 BZS1正面调节HY5表达,而HY5负面调节BZS1蛋白水平,形成一个反馈回路,可能有助于信号动力学。与BR相反,stragolactone(SL)增加BZS1水平,而BZS1-SRDX幼苗中下胚轴伸长,叶绿素和HY5积累的SL反应降低,表明BZS1参与了这些SL反应。这些结果表明BZS1与HY5相互作用,并在整合光和多种激素信号中为拟南芥的光形态发生中发挥核心作用。

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