Harmer Stacey L, Kay Steve A
Section of Plant Biology, University of California, Davis 95616, USA.
Plant Cell. 2005 Jul;17(7):1926-40. doi: 10.1105/tpc.105.033035. Epub 2005 May 27.
The circadian clock exerts a major influence on transcriptional regulation in plants and other organisms. We have previously identified a motif called the evening element (EE) that is overrepresented in the promoters of evening-phased genes. Here, we demonstrate that multimerized EEs are necessary and sufficient to confer evening-phased circadian regulation. Although flanking sequences are not required for EE function, they can modulate EE activity. One flanking sequence, taken from the PSEUDORESPONSE REGULATOR 9 promoter, itself confers dawn-phased rhythms and has allowed us to define a new clock promoter motif (the morning element [ME]). Scanning mutagenesis reveals that both activators and repressors of gene expression act through the ME and EE. Although our experiments confirm that CIRCADIAN CLOCK ASSOCIATED 1 (CCA1) and LATE ELONGATED HYPOCOTYL (LHY) are likely to act as repressors via the EE, they also show that they have an unexpected positive effect on EE-mediated gene expression as well. We have identified a clock-regulated activity in plant extracts that binds specifically to the EE and has a phase consistent with it being an activator of expression through the EE. This activity is reduced in CCA1/LHY null plants, suggesting it may itself be part of a circadian feedback loop and perhaps explaining the reduction in EE activity in these double mutant plants.
生物钟对植物和其他生物体的转录调控有着重大影响。我们之前鉴定出一种名为夜间元件(EE)的基序,它在夜间表达基因的启动子中过度富集。在此,我们证明多聚化的EE对于赋予夜间生物钟调控是必要且充分的。虽然侧翼序列对于EE功能并非必需,但它们可以调节EE的活性。一个取自伪反应调节因子9启动子的侧翼序列本身赋予黎明相节律,并使我们能够定义一种新的生物钟启动子基序(早晨元件[ME])。扫描诱变显示,基因表达的激活因子和抑制因子均通过ME和EE起作用。虽然我们的实验证实生物钟相关1(CCA1)和晚伸长下胚轴(LHY)可能通过EE作为抑制因子起作用,但实验也表明它们对EE介导的基因表达也有意外的正向作用。我们在植物提取物中鉴定出一种受生物钟调控的活性,它能特异性结合EE,且其相位与它作为通过EE的表达激活因子一致。这种活性在CCA1/LHY缺失突变体植物中降低,这表明它本身可能是生物钟反馈环的一部分,或许也解释了这些双突变体植物中EE活性的降低。