Jakobsen Janus S, Braun Martina, Astorga Jeanette, Gustafson E Hilary, Sandmann Thomas, Karzynski Michal, Carlsson Peter, Furlong Eileen E M
European Molecular Biology Laboratory, D-69117 Heidelberg, Germany.
Genes Dev. 2007 Oct 1;21(19):2448-60. doi: 10.1101/gad.437607.
Smooth muscle plays a prominent role in many fundamental processes and diseases, yet our understanding of the transcriptional network regulating its development is very limited. The FoxF transcription factors are essential for visceral smooth muscle development in diverse species, although their direct regulatory role remains elusive. We present a transcriptional map of Biniou (a FoxF transcription factor) and Bagpipe (an Nkx factor) activity, as a first step to deciphering the developmental program regulating Drosophila visceral muscle development. A time course of chromatin immunoprecipitatation followed by microarray analysis (ChIP-on-chip) experiments and expression profiling of mutant embryos reveal a dynamic map of in vivo bound enhancers and direct target genes. While Biniou is broadly expressed, it regulates enhancers driving temporally and spatially restricted expression. In vivo reporter assays indicate that the timing of Biniou binding is a key trigger for the time span of enhancer activity. Although bagpipe and biniou mutants phenocopy each other, their regulatory potential is quite different. This network architecture was not apparent from genetic studies, and highlights Biniou as a universal regulator in all visceral muscle, regardless of its developmental origin or subsequent function. The regulatory connection of a number of Biniou target genes is conserved in mice, suggesting an ancient wiring of this developmental program.
平滑肌在许多基本生理过程和疾病中发挥着重要作用,然而我们对调控其发育的转录网络的了解却非常有限。FoxF转录因子对多种物种的内脏平滑肌发育至关重要,尽管它们的直接调控作用仍不明确。我们展示了Biniou(一种FoxF转录因子)和Bagpipe(一种Nkx因子)活性的转录图谱,作为破译调控果蝇内脏肌肉发育的发育程序的第一步。一系列染色质免疫沉淀后微阵列分析(芯片上的染色质免疫沉淀,ChIP-on-chip)实验以及突变胚胎的表达谱分析揭示了体内结合增强子和直接靶基因的动态图谱。虽然Biniou广泛表达,但它调控驱动时间和空间上受限表达的增强子。体内报告基因检测表明,Biniou结合的时间是增强子活性时间跨度的关键触发因素。尽管bagpipe和biniou突变体表现出相似的表型,但它们的调控潜能却大不相同。这种网络结构在遗传学研究中并不明显,并突出了Biniou作为所有内脏肌肉通用调节因子的地位,无论其发育起源或后续功能如何。许多Biniou靶基因的调控联系在小鼠中是保守的,这表明该发育程序存在古老的调控线路。