School of Biological Sciences, University of Edinburgh, Edinburgh, UK.
Molecular Plant Pathology, Swammerdam Institute for Life Sciences, University of Amsterdam, Amsterdam, The Netherlands.
J Biol Rhythms. 2017 Dec;32(6):570-582. doi: 10.1177/0748730417737695. Epub 2017 Nov 27.
In plants, the circadian clock regulates the expression of one-third of all transcripts and is crucial to virtually every aspect of metabolism and growth. We now establish sumoylation, a posttranslational protein modification, as a novel regulator of the key clock protein CCA1 in the model plant Arabidopsis. Dynamic sumoylation of CCA1 is observed in planta and confirmed in a heterologous expression system. To characterize how sumoylation might affect the activity of CCA1, we investigated the properties of CCA1 in a wild-type plant background in comparison with ots1 ots2, a mutant background showing increased overall levels of sumoylation. Neither the localization nor the stability of CCA1 was significantly affected. However, binding of CCA1 to a target promoter was significantly reduced in chromatin-immunoprecipitation experiments. In vitro experiments using recombinant protein revealed that reduced affinity to the cognate promoter element is a direct consequence of sumoylation of CCA1 that does not require any other factors. Combined, these results suggest sumoylation as a mechanism that tunes the DNA binding activity of the central plant clock transcription factor CCA1.
在植物中,生物钟调节三分之一的转录本的表达,对几乎所有代谢和生长方面都至关重要。我们现在确定了泛素化,一种翻译后蛋白质修饰,是拟南芥这种模式植物中关键生物钟蛋白 CCA1 的新型调节剂。在植物体内观察到 CCA1 的动态泛素化,并在异源表达系统中得到证实。为了研究泛素化如何影响 CCA1 的活性,我们在野生型植物背景下与 ots1 ots2 (一种显示总体泛素化水平增加的突变体背景)进行比较,研究 CCA1 的特性。CCA1 的定位和稳定性均未受到显著影响。然而,在染色质免疫沉淀实验中,CCA1 与靶启动子的结合显著减少。使用重组蛋白的体外实验表明,CCA1 与同源启动子元件结合的亲和力降低是 CCA1 泛素化的直接结果,而不需要任何其他因素。综上所述,这些结果表明泛素化是一种调节中央植物生物钟转录因子 CCA1 的 DNA 结合活性的机制。