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首页> 外文期刊>Cell Reports >Data-Driven Modeling of Intracellular Auxin Fluxes Indicates a Dominant Role of the ER in Controlling Nuclear Auxin Uptake
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Data-Driven Modeling of Intracellular Auxin Fluxes Indicates a Dominant Role of the ER in Controlling Nuclear Auxin Uptake

机译:细胞内植物素助熔剂的数据驱动建模表明ER控制核生成型摄取方面的主要作用

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Summary In plants, the phytohormone auxin acts as a master regulator of developmental processes and environmental responses. The best characterized process in the auxin regulatory network occurs at the subcellular scale, wherein auxin mediates signal transduction into transcriptional programs by triggering the degradation of Aux/IAA transcriptional repressor proteins in the nucleus. However, whether and how auxin movement between the nucleus and the surrounding compartments is regulated remain elusive. Using a fluorescent auxin analog, we show that its diffusion into the nucleus is restricted. By combining mathematical modeling with time course assays on auxin-mediated nuclear signaling and quantitative phenotyping in single plant cell systems, we show that ER-to-nucleus auxin flux represents a major subcellular pathway to directly control nuclear auxin levels. Our findings propose that the homeostatically regulated auxin pool in the ER and ER-to-nucleus auxin fluxes underpin auxin-mediated downstream responses in plant cells.
机译:植物综述,植物激素毒素作为发育过程和环境反应的主监管机构。在亚细胞尺度下发生蟾蜍素调节网络中的最佳表征过程,其中通过触发细胞核中的Aux / IAA转录抑制蛋白的降解,蟾蜍蛋白介导信号转导。然而,核心和周围隔间之间的疾病运动是否以及如何仍然难以捉摸。使用荧光制冷剂类似物,我们表明其进入核的扩散受到限制。通过将数学建模与时期核信号传导和单植物细胞系统中的定量表型进行定时测定,我们表明ER-to-Nucleus植物液相表示主要亚细胞途径,可直接控制核毒素水平。我们的调查结果提出了ER和ER-TO-核植物液中的稳态调节的养老池在植物细胞中介导的植物蛋白介导的下游反应。

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