Persson Madelen, Stamataki Despina, te Welscher Pascal, Andersson Elisabet, Böse Jens, Rüther Ulrich, Ericson Johan, Briscoe James
Department of Cell and Molecular Biology, Medical Nobel Institute, Karolinska Institute, S-171 77 Stockholm, Sweden.
Genes Dev. 2002 Nov 15;16(22):2865-78. doi: 10.1101/gad.243402.
Sonic hedgehog (Shh) plays a critical role in organizing cell pattern in the developing spinal cord. Gli proteins are thought to mediate Shh signaling, but their role in directing neural tube patterning remains unclear. Here we identify a role for Gli3 transcriptional repressor activity in patterning the intermediate region of the spinal cord that complements the requirement for Gli2 in ventral regions. Moreover, blocking all Gli responses results in a complete dorsalization of ventral spinal cord, indicating that in addition to the specific roles of Gli2 and Gli3 in the neural tube, there is functional redundancy between Gli proteins. Finally, analysis of Shh/Gli3 compound mutant mice substantiates the idea that ventral patterning may involve a mechanism independent, or parallel, to graded Shh signaling. However, even in the absence of graded Shh signaling, Gli3 is required for the dorsal-ventral patterning of the intermediate neural tube. Together these data raise the possibility that Gli proteins act as common mediators integrating Shh signals, and other sources of positional information, to control patterning throughout the ventral neural tube.
音猬因子(Shh)在发育中的脊髓细胞模式形成过程中发挥着关键作用。Gli蛋白被认为介导Shh信号传导,但其在指导神经管模式形成中的作用仍不清楚。在这里,我们确定了Gli3转录抑制活性在脊髓中间区域模式形成中的作用,这补充了Gli2在腹侧区域的需求。此外,阻断所有Gli反应会导致脊髓腹侧完全背化,这表明除了Gli2和Gli3在神经管中的特定作用外,Gli蛋白之间还存在功能冗余。最后,对Shh/Gli3复合突变小鼠的分析证实了腹侧模式形成可能涉及一种独立于或平行于梯度Shh信号传导的机制这一观点。然而,即使在没有梯度Shh信号传导的情况下,Gli3对于中间神经管的背腹模式形成也是必需的。这些数据共同提出了一种可能性,即Gli蛋白作为整合Shh信号和其他位置信息来源的共同介质,以控制整个腹侧神经管的模式形成。