de Taffin Mathilde, Carrier Yannick, Dubois Laurence, Bataillé Laetitia, Painset Anaïs, Le Gras Stéphanie, Jost Bernard, Crozatier Michèle, Vincent Alain
Centre de Biologie du Développement, UMR 5547 CNRS Université de Toulouse 3, 118 route de Narbonne, F-31062, Toulouse cedex 09, France.
Centre de Biologie du Développement, UMR 5547 CNRS Université de Toulouse 3, 118 route de Narbonne, F-31062, Toulouse cedex 09, France; Plate-forme bio-informatique Genotoul/MIA-T, INRA, Borde Rouge, 31326, Castanet-Tolosan, France.
PLoS One. 2015 Jul 23;10(7):e0133387. doi: 10.1371/journal.pone.0133387. eCollection 2015.
Collier, the single Drosophila COE (Collier/EBF/Olf-1) transcription factor, is required in several developmental processes, including head patterning and specification of muscle and neuron identity during embryogenesis. To identify direct Collier (Col) targets in different cell types, we used ChIP-seq to map Col binding sites throughout the genome, at mid-embryogenesis. In vivo Col binding peaks were associated to 415 potential direct target genes. Gene Ontology analysis revealed a strong enrichment in proteins with DNA binding and/or transcription-regulatory properties. Characterization of a selection of candidates, using transgenic CRM-reporter assays, identified direct Col targets in dorso-lateral somatic muscles and specific neuron types in the central nervous system. These data brought new evidence that Col direct control of the expression of the transcription regulators apterous and eyes-absent (eya) is critical to specifying neuronal identities. They also showed that cross-regulation between col and eya in muscle progenitor cells is required for specification of muscle identity, revealing a new parallel between the myogenic regulatory networks operating in Drosophila and vertebrates. Col regulation of eya, both in specific muscle and neuronal lineages, may illustrate one mechanism behind the evolutionary diversification of Col biological roles.
科利尔是果蝇中唯一的COE(科利尔/EBF/Olf-1)转录因子,在多个发育过程中发挥作用,包括胚胎发育期间的头部模式形成以及肌肉和神经元身份的特化。为了鉴定不同细胞类型中科利尔(Col)的直接靶标,我们使用染色质免疫沉淀测序(ChIP-seq)在胚胎发育中期绘制了全基因组范围内的Col结合位点图谱。体内Col结合峰与415个潜在的直接靶基因相关。基因本体分析显示,具有DNA结合和/或转录调控特性的蛋白质显著富集。通过转基因CRM报告基因检测对一系列候选基因进行表征,确定了背外侧体壁肌肉和中枢神经系统中特定神经元类型中的直接Col靶标。这些数据提供了新的证据,表明Col对转录调节因子无翅(apterous)和无眼(eyes-absent,eya)表达的直接控制对于确定神经元身份至关重要。它们还表明,肌肉祖细胞中col和eya之间的交叉调节对于肌肉身份的特化是必需的,揭示了果蝇和脊椎动物中肌源性调节网络之间的一种新的平行关系。Col在特定肌肉和神经元谱系中对eya的调节,可能说明了Col生物学作用进化多样化背后的一种机制。