Gaudet Jeb, Muttumu Srikanth, Horner Michael, Mango Susan E
Huntsman Cancer Institute, University of Utah, Salt Lake City, Utah, USA.
PLoS Biol. 2004 Nov;2(11):e352. doi: 10.1371/journal.pbio.0020352. Epub 2004 Oct 19.
We have investigated the cis-regulatory network that mediates temporal gene expression during organogenesis. Previous studies demonstrated that the organ selector gene pha-4/FoxA is critical to establish the onset of transcription of Caenorhabditis elegans foregut (pharynx) genes. Here, we discover additional cis-regulatory elements that function in combination with PHA-4. We use a computational approach to identify candidate cis-regulatory sites for genes activated either early or late during pharyngeal development. Analysis of natural or synthetic promoters reveals that six of these sites function in vivo. The newly discovered temporal elements, together with predicted PHA-4 sites, account for the onset of expression of roughly half of the pharyngeal genes examined. Moreover, combinations of temporal elements and PHA-4 sites can be used in genome-wide searches to predict pharyngeal genes, with more than 85% accuracy for their onset of expression. These findings suggest a regulatory code for temporal gene expression during foregut development and provide a means to predict gene expression patterns based solely on genomic sequence.
我们研究了在器官发生过程中介导时间性基因表达的顺式调控网络。先前的研究表明,器官选择基因pha-4/FoxA对于启动秀丽隐杆线虫前肠(咽)基因的转录至关重要。在此,我们发现了与PHA-4协同发挥作用的其他顺式调控元件。我们采用计算方法来识别在咽发育早期或晚期被激活的基因的候选顺式调控位点。对天然或合成启动子的分析表明,其中六个位点在体内发挥作用。新发现的时间性元件,连同预测的PHA-4位点,解释了所检测的大约一半咽基因表达的起始。此外,时间性元件和PHA-4位点的组合可用于全基因组搜索以预测咽基因,其表达起始的预测准确率超过85%。这些发现提示了前肠发育过程中时间性基因表达的调控密码,并提供了一种仅基于基因组序列来预测基因表达模式的方法。