Alvarez-Medina Roberto, Cayuso Jordi, Okubo Tadashi, Takada Shinji, Martí Elisa
Instituto de Biología Molecular de Barcelona, CSIC, Parc Cientific de Barcelona, C/Josep Samitier 1-5, Barcelona 08028, Spain.
Development. 2008 Jan;135(2):237-47. doi: 10.1242/dev.012054. Epub 2007 Dec 5.
Dorsoventral patterning of the vertebrate nervous system is achieved by the combined activity of morphogenetic signals secreted from dorsal and ventral signalling centres. The Shh/Gli pathway plays a major role in patterning the ventral neural tube; however, the molecular mechanisms that limit target gene responses to specific progenitor domains remain unclear. Here, we show that Wnt1/Wnt3a, by signalling through the canonical beta-catenin/Tcf pathway, control expression of dorsal genes and suppression of the ventral programme, and that this role in DV patterning depends on Gli activity. Additionally, we show that Gli3 expression is controlled by Wnt activity. Identification and characterization of highly conserved non-coding DNA regions around the human Gli3 gene revealed the presence of transcriptionally active Tcf-binding sequences. These indicated that dorsal Gli3 expression might be directly regulated by canonical Wnt activity. In turn, Gli3, by acting as a transcriptional repressor, restricted graded Shh/Gli ventral activity to properly pattern the spinal cord.
脊椎动物神经系统的背腹模式形成是由背侧和腹侧信号中心分泌的形态发生信号的联合作用实现的。Shh/Gli信号通路在腹侧神经管模式形成中起主要作用;然而,限制靶基因对特定祖细胞结构域反应的分子机制仍不清楚。在这里,我们表明,Wnt1/Wnt3a通过经典的β-连环蛋白/Tcf信号通路,控制背侧基因的表达并抑制腹侧程序,并且这种在背腹模式形成中的作用取决于Gli活性。此外,我们表明Gli3的表达受Wnt活性控制。对人类Gli3基因周围高度保守的非编码DNA区域的鉴定和表征揭示了转录活性Tcf结合序列的存在。这些表明背侧Gli3的表达可能直接受经典Wnt活性调控。反过来,Gli3作为转录抑制因子,限制了Shh/Gli腹侧活性的梯度,从而正确地形成脊髓模式。