Woods Ian G, Talbot William S
Department of Developmental Biology, Stanford University School of Medicine, Stanford, California, USA.
PLoS Biol. 2005 Mar;3(3):e66. doi: 10.1371/journal.pbio.0030066.
Hedgehog signaling is required for many aspects of development in vertebrates and invertebrates. Misregulation of the Hedgehog pathway causes developmental abnormalities and has been implicated in certain types of cancer. Large-scale genetic screens in zebrafish have identified a group of mutations, termed you-class mutations, that share common defects in somite shape and in most cases disrupt Hedgehog signaling. These mutant embryos exhibit U-shaped somites characteristic of defects in slow muscle development. In addition, Hedgehog pathway mutations disrupt spinal cord patterning. We report the positional cloning of you, one of the original you-class mutations, and show that it is required for Hedgehog signaling in the development of slow muscle and in the specification of ventral fates in the spinal cord. The you gene encodes a novel protein with conserved EGF and CUB domains and a secretory pathway signal sequence. Epistasis experiments support an extracellular role for You upstream of the Hedgehog response mechanism. Analysis of chimeras indicates that you mutant cells can appropriately respond to Hedgehog signaling in a wild-type environment. Additional chimera analysis indicates that wild-type you gene function is not required in axial Hedgehog-producing cells, suggesting that You is essential for transport or stability of Hedgehog signals in the extracellular environment. Our positional cloning and functional studies demonstrate that You is a novel extracellular component of the Hedgehog pathway in vertebrates.
刺猬信号通路在脊椎动物和无脊椎动物发育的许多方面都发挥着作用。刺猬信号通路的失调会导致发育异常,并与某些类型的癌症有关。斑马鱼的大规模遗传筛选鉴定出了一组突变,称为you类突变,这些突变在体节形状上具有共同缺陷,并且在大多数情况下会破坏刺猬信号通路。这些突变胚胎表现出U形体节,这是慢肌发育缺陷的特征。此外,刺猬信号通路突变会破坏脊髓模式。我们报告了最初的you类突变之一you的定位克隆,并表明它在慢肌发育和脊髓腹侧命运的特化过程中对刺猬信号通路是必需的。you基因编码一种具有保守的表皮生长因子(EGF)和CUB结构域以及分泌途径信号序列的新型蛋白质。上位性实验支持You在刺猬信号应答机制上游发挥细胞外作用。嵌合体分析表明,you突变细胞在野生型环境中能够对刺猬信号通路做出适当反应。进一步的嵌合体分析表明,在轴向产生刺猬信号的细胞中不需要野生型you基因的功能,这表明You对于刺猬信号在细胞外环境中的运输或稳定性至关重要。我们的定位克隆和功能研究表明,You是脊椎动物刺猬信号通路中一种新型的细胞外成分。