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LOV domain-containing F-box proteins: light-dependent protein degradation modules in Arabidopsis.

机译:包含LOV域的F-box蛋白:拟南芥中的光依赖性蛋白降解模块。

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摘要

Plants constantly survey the surrounding environment using several sets of photoreceptors. They can sense changes in the quantity (=intensity) and quality (=wavelength) of light and use this information to adjust their physiological responses, growth, and developmental patterns. In addition to the classical photoreceptors, such as phytochromes, cryptochromes, and phototropins, ZEITLUPE (ZTL), FLAVIN-BINDING, KELCH REPEAT, F-BOX 1 (FKF1), and LOV KELCH PROTEIN 2 (LKP2) proteins have been recently identified as blue-light photoreceptors that are important for regulation of the circadian clock and photoperiodic flowering. The ZTL/FKF1/LKP2 protein family possesses a unique combination of domains: a blue-light-absorbing LOV (Light, Oxygen, or Voltage) domain along with domains involved in protein degradation. Here, we summarize recent advances in our understanding of the function of the Arabidopsis ZTL/FKF1/LKP2 proteins. We summarize the distinct photochemical properties of their LOV domains and discuss the molecular mechanisms by which the ZTL/FKF1/LKP2 proteins regulate the circadian clock and photoperiodic flowering by controlling blue-light-dependent protein degradation.
机译:植物不断使用几组感光器来调查周围的环境。他们可以感知光量(=强度)和质量(=波长)的变化,并使用此信息来调整其生理反应,生长和发育方式。除了经典的光感受器(例如植物色素,隐色色素和光蛋白)外,ZEITLUPE(ZTL),FLAVIN-BINDING,KELCH REPEAT,F-BOX 1(FKF1)和LOV KELCH蛋白质2(LKP2)蛋白最近被鉴定为对调节生物钟和光周期开花很重要的蓝光感光体。 ZTL / FKF1 / LKP2蛋白家族拥有域的独特组合:吸收蓝光的LOV(光,氧或电压)域以及参与蛋白质降解的域。在这里,我们总结了对拟南芥 ZTL / FKF1 / LKP2蛋白的功能的理解方面的最新进展。我们总结了它们的LOV域的不同光化学特性,并讨论了通过控制蓝光依赖性蛋白降解,ZTL / FKF1 / LKP2蛋白调节昼夜节律和光周期开花的分子机制。

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