Department of Molecular, Cell and Developmental Biology, University of California, Los Angeles, CA 90095-1606, USA.
Mol Plant. 2008 Jan;1(1):58-67. doi: 10.1093/mp/ssm005. Epub 2007 Oct 11.
The circadian clock regulates the expression of an array of Arabidopsis genes such as those encoding the LIGHT-HARVESTING CHLOROPHYLL A/B (Lhcb) proteins. We have previously studied the promoters of two of these Arabidopsis genes--Lhcb11 and Lhcb13--and identified a sequence that binds the clock protein CIRCADIAN CLOCK ASSOCIATED 1 (CCA1). This sequence, designated CCA1-binding site (CBS), is necessary for phytochrome and circadian responsiveness of these genes. In close proximity to this sequence, there exists a G-box core element that has been shown to bind the bZIP transcription factor HY5 in other light-regulated plant promoters. In the present study, we examined the importance of the interaction of transcription factors binding the CBS and the G-box core element in the control of normal circadian rhythmic expression of Lhcb genes. Our results show that HY5 is able to specifically bind the G-box element in the Lhcb promoters and that CCA1 can alter the binding activity of HY5. We further show that CCA1 and HY5 can physically interact and that they can act synergistically on transcription in a yeast reporter gene assay. An absence of HY5 leads to a shorter period of Lhcb1*1 circadian expression but does not affect the circadian expression of CATALASE3 (CAT3), whose promoter lacks a G-box element. Our results suggest that interaction of the HY5 and CCA1 proteins on Lhcb promoters is necessary for normal circadian expression of the Lhcb genes.
生物钟调节着一系列拟南芥基因的表达,如编码光捕获叶绿素 A/B(Lhcb)蛋白的基因。我们之前研究过这些拟南芥基因中的两个基因--Lhcb11 和 Lhcb13--的启动子,并鉴定出一个与生物钟蛋白 CIRCADIAN CLOCK ASSOCIATED 1(CCA1)结合的序列。这个序列,被指定为 CCA1 结合位点(CBS),对于这些基因的光敏和生物钟反应是必要的。在这个序列的附近,存在一个 G 盒核心元件,已经在其他光调控植物启动子中被证明可以结合 bZIP 转录因子 HY5。在本研究中,我们研究了结合 CBS 和 G 盒核心元件的转录因子之间相互作用在 Lhcb 基因正常生物钟节律表达调控中的重要性。我们的结果表明,HY5 能够特异性地结合 Lhcb 启动子中的 G 盒元件,并且 CCA1 可以改变 HY5 的结合活性。我们进一步表明,CCA1 和 HY5 可以相互作用,并在酵母报告基因测定中协同作用于转录。HY5 的缺失会导致 Lhcb1*1 生物钟表达的周期变短,但不会影响缺乏 G 盒元件的 CATALASE3(CAT3)的生物钟表达。我们的结果表明,HY5 和 CCA1 蛋白在 Lhcb 启动子上的相互作用对于 Lhcb 基因的正常生物钟表达是必要的。