Kolmos Elsebeth, Nowak Monika, Werner Maria, Fischer Katrin, Schwarz Guenter, Mathews Sarah, Schoof Heiko, Nagy Ferenc, Bujnicki Janusz M, Davis Seth J
HFSP J. 2009 Oct;3(5):350-66. doi: 10.2976/1.3218766. Epub 2009 Oct 22.
The circadian clock is a timekeeping mechanism that enables anticipation of daily environmental changes. In the plant Arabidopsis thaliana, the circadian system is a multiloop series of interlocked transcription-translation feedbacks. Several genes have been arranged in these oscillation loops, but the position of the core-clock gene ELF4 in this network was previously undetermined. ELF4 lacks sequence similarity to known domains, and functional homologs have not yet been identified. Here we show that ELF4 is functionally conserved within a subclade of related sequences, and forms an alpha-helical homodimer with a likely electrostatic interface that could be structurally modeled. We support this hypothesis by expression analysis of new elf4 hypomorphic alleles. These weak mutants were found to have expression level phenotypes of both morning and evening clock genes, implicating multiple entry points of ELF4 within the multiloop network. This could be mathematically modeled. Furthermore, morning-expression defects were particular to some elf4 alleles, suggesting predominant ELF4 action just preceding dawn. We provide a new hypothesis about ELF4 in the oscillator-it acts as a homodimer to integrate two arms of the circadian clock.
生物钟是一种计时机制,能够预测每日的环境变化。在植物拟南芥中,生物钟系统是一系列相互连锁的转录-翻译反馈的多环体系。已有多个基因被安排在这些振荡环中,但核心生物钟基因ELF4在该网络中的位置此前尚未确定。ELF4与已知结构域缺乏序列相似性,并且尚未鉴定出功能同源物。在此,我们表明ELF4在相关序列的一个亚分支内功能保守,并形成一个可能具有可进行结构建模的静电界面的α-螺旋同型二聚体。我们通过对新的elf4亚效等位基因的表达分析来支持这一假设。这些弱突变体被发现具有晨型和夜型生物钟基因的表达水平表型,这表明ELF4在多环网络中有多个切入点。这可以进行数学建模。此外,晨型表达缺陷在某些elf4等位基因中较为特殊,这表明ELF4在黎明前发挥主要作用。我们提出了一个关于振荡器中ELF4的新假设——它作为同型二聚体整合生物钟的两个分支。