Hammonds Ann S, Bristow Christopher A, Fisher William W, Weiszmann Richard, Wu Siqi, Hartenstein Volker, Kellis Manolis, Yu Bin, Frise Erwin, Celniker Susan E
Genome Biol. 2013 Dec 20;14(12):R140. doi: 10.1186/gb-2013-14-12-r140.
Site-specific transcription factors (TFs) bind DNA regulatory elements to control expression of target genes, forming the core of gene regulatory networks. Despite decades of research, most studies focus on only a small number of TFs and the roles of many remain unknown.
We present a systematic characterization of spatiotemporal gene expression patterns for all known or predicted Drosophila TFs throughout embryogenesis, the first such comprehensive study for any metazoan animal. We generated RNA expression patterns for all 708 TFs by in situ hybridization, annotated the patterns using an anatomical controlled vocabulary, and analyzed TF expression in the context of organ system development. Nearly all TFs are expressed during embryogenesis and more than half are specifically expressed in the central nervous system. Compared to other genes, TFs are enriched early in the development of most organ systems, and throughout the development of the nervous system. Of the 535 TFs with spatially restricted expression, 79% are dynamically expressed in multiple organ systems while 21% show single-organ specificity. Of those expressed in multiple organ systems, 77 TFs are restricted to a single organ system either early or late in development. Expression patterns for 354 TFs are characterized for the first time in this study.
We produced a reference TF dataset for the investigation of gene regulatory networks in embryogenesis, and gained insight into the expression dynamics of the full complement of TFs controlling the development of each organ system.
位点特异性转录因子(TFs)与DNA调控元件结合以控制靶基因的表达,构成基因调控网络的核心。尽管经过数十年的研究,但大多数研究仅关注少数转录因子,许多转录因子的作用仍不为人知。
我们对果蝇在整个胚胎发育过程中所有已知或预测的转录因子的时空基因表达模式进行了系统表征,这是对任何后生动物的首次此类全面研究。我们通过原位杂交生成了所有708个转录因子的RNA表达模式,使用解剖学控制词汇对这些模式进行注释,并在器官系统发育的背景下分析转录因子的表达。几乎所有转录因子在胚胎发育过程中都有表达,超过一半在中枢神经系统中特异性表达。与其他基因相比,转录因子在大多数器官系统发育的早期以及整个神经系统发育过程中都有富集。在535个具有空间限制表达的转录因子中,79%在多个器官系统中动态表达,而21%表现出单器官特异性。在多个器官系统中表达的转录因子中,77个转录因子在发育的早期或晚期局限于单个器官系统。本研究首次对354个转录因子的表达模式进行了表征。
我们生成了一个用于研究胚胎发育中基因调控网络的转录因子参考数据集,并深入了解了控制每个器官系统发育的转录因子全套的表达动态。