Ochi Haruki, Pearson Bret J, Chuang Pao-Tien, Hammerschmidt Matthias, Westerfield Monte
Institute of Neuroscience, University of Oregon, Eugene, OR 97403-1254, USA.
Dev Biol. 2006 Sep 1;297(1):127-40. doi: 10.1016/j.ydbio.2006.05.001. Epub 2006 May 6.
Sharp borders between cells with different developmental fates are important for patterning of invertebrates, but are not well understood in vertebrates. Zebrafish slow muscle cells develop from adaxial cells, a one-cell-diameter-thick pseudo-epithelium immediately adjacent to the notochord. Hedgehog (Hh) signals from notochord specify adaxial cells to form slow muscle cells. Cells next to adaxial cells form fast muscle. This suggests that Hh signaling is locally regulated to produce a sharp border that separates slow and fast muscle precursors. To understand how Hh activity is locally regulated, we characterized the dynamic roles of Hhip, a protein that binds Hedgehog at the cell surface. Hhip is strongly expressed by adaxial cells and, together with Patched, the Hedgehog receptor, limits transduction of the Hedgehog signaling by Smoothened to adaxial cells. Hhip protein lacking its membrane associated domain still suppresses Hh activity but no longer acts synergistically with Patched. Hhip and Smoothened colocalize at the cell surface and, in response to Hedgehog, internalize together. Knockdown of Hhip blocks Smoothened internalization while increasing Hedgehog signaling and slow muscle formation. These data support a model in which Hhip regulates muscle development both by sequestering Hedgehog and by modulating localization of Smoothened.
具有不同发育命运的细胞之间的清晰边界对于无脊椎动物的模式形成很重要,但在脊椎动物中却没有得到很好的理解。斑马鱼慢肌细胞由轴旁细胞发育而来,轴旁细胞是一层紧邻脊索的、直径为一个细胞厚度的假上皮细胞。来自脊索的刺猬信号通路(Hh)信号指定轴旁细胞形成慢肌细胞。轴旁细胞旁边的细胞形成快肌。这表明Hh信号通路受到局部调节,以产生一个将慢肌和快肌前体分开的清晰边界。为了了解Hh活性是如何受到局部调节的,我们对Hhip的动态作用进行了表征,Hhip是一种在细胞表面结合刺猬信号通路蛋白(Hedgehog)的蛋白质。Hhip在轴旁细胞中强烈表达,并与刺猬信号通路受体Patched一起,将由Smoothened介导的刺猬信号通路转导限制在轴旁细胞中。缺乏膜相关结构域的Hhip蛋白仍然抑制Hh活性,但不再与Patched协同作用。Hhip和Smoothened在细胞表面共定位,并在对刺猬信号通路蛋白(Hedgehog)的反应中一起内化。敲低Hhip会阻止Smoothened的内化,同时增加刺猬信号通路活性和慢肌形成。这些数据支持了一个模型,即Hhip通过隔离刺猬信号通路蛋白(Hedgehog)和调节Smoothened的定位来调节肌肉发育。