Kutejova Eva, Sasai Noriaki, Shah Ankita, Gouti Mina, Briscoe James
The Francis Crick Institute, Mill Hill Laboratory, The Ridgeway, Mill Hill, London NW7 1AA, UK.
The Francis Crick Institute, Mill Hill Laboratory, The Ridgeway, Mill Hill, London NW7 1AA, UK.
Dev Cell. 2016 Mar 21;36(6):639-53. doi: 10.1016/j.devcel.2016.02.013. Epub 2016 Mar 10.
In the vertebrate neural tube, a morphogen-induced transcriptional network produces multiple molecularly distinct progenitor domains, each generating different neuronal subtypes. Using an in vitro differentiation system, we defined gene expression signatures of distinct progenitor populations and identified direct gene-regulatory inputs corresponding to locations of specific transcription factor binding. Combined with targeted perturbations of the network, this revealed a mechanism in which a progenitor identity is installed by active repression of the entire transcriptional programs of other neural progenitor fates. In the ventral neural tube, sonic hedgehog (Shh) signaling, together with broadly expressed transcriptional activators, concurrently activates the gene expression programs of several domains. The specific outcome is selected by repressive input provided by Shh-induced transcription factors that act as the key nodes in the network, enabling progenitors to adopt a single definitive identity from several initially permitted options. Together, the data suggest design principles relevant to many developing tissues.
在脊椎动物神经管中,一种形态发生素诱导的转录网络产生多个分子上不同的祖细胞结构域,每个结构域产生不同的神经元亚型。利用体外分化系统,我们定义了不同祖细胞群体的基因表达特征,并确定了与特定转录因子结合位置相对应的直接基因调控输入。结合对该网络的靶向扰动,这揭示了一种机制,即通过主动抑制其他神经祖细胞命运的整个转录程序来建立祖细胞身份。在腹侧神经管中,音猬因子(Shh)信号传导与广泛表达的转录激活因子一起,同时激活几个结构域的基因表达程序。特定结果由Shh诱导的转录因子提供的抑制性输入选择,这些转录因子作为网络中的关键节点,使祖细胞能够从几个最初允许的选项中采用单一的确定身份。这些数据共同表明了与许多发育中的组织相关的设计原则。