National Research Centre Frontiers in Genetics at Department of Genetics and Evolution, University of Geneva, Sciences III, Quai Ernest-Ansermet 30, Geneva 4, Switzerland.
Development. 2012 Mar;139(5):929-39. doi: 10.1242/dev.076794. Epub 2012 Jan 25.
The importance of Hox genes in the specification of neuronal fates in the spinal cord has long been recognized. However, the transcriptional controls underlying their collinear expression domains remain largely unknown. Here we show in mice that the correspondence between the physical order of Hoxd genes and their rostral expression boundaries, although respecting spatial collinearity, does not display a fully progressive distribution. Instead, two major anteroposterior boundaries are detected, coinciding with the functional subdivision of the spinal cord. Tiling array analyses reveal two distinct blocks of transcription, regulated independently from one another, that define the observed expression boundaries. Targeted deletions in vivo that remove the genomic fragments separating the two blocks induce ectopic expression of posterior genes. We further evaluate the independent regulatory potential and transcription profile of each gene locus by a tiling array approach using a contiguous series of transgenes combined with locus-specific deletions. Our work uncovers a bimodal type of HoxD spatial collinearity in the developing spinal cord that relies on two separate 'enhancer mini-hubs' to ensure correct Hoxd gene expression levels while maintaining their appropriate anteroposterior boundaries.
Hox 基因在脊髓神经元命运特化中的重要性早已被认识。然而,其共线性表达域的转录调控仍很大程度上未知。在此,我们在小鼠中发现,Hoxd 基因的物理顺序与其头侧表达边界之间的对应关系,尽管符合空间共线性,但并不表现出完全渐进的分布。相反,检测到两个主要的前后边界,与脊髓的功能划分相吻合。平铺阵列分析揭示了两个独立的转录块,彼此独立调控,定义了观察到的表达边界。体内靶向缺失去除了分隔两个块的基因组片段会诱导后部基因的异位表达。我们进一步通过使用连续的一系列转基因和基因座特异性缺失的平铺阵列方法,评估每个基因座的独立调控潜力和转录特征。我们的工作揭示了发育中的脊髓中存在 HoxD 空间共线性的双峰类型,它依赖于两个独立的“增强子迷你枢纽”,以确保正确的 Hoxd 基因表达水平,同时保持其适当的前后边界。