Université de Nice/Sophia-Antipolis, Institute of Developmental Biology and Cancer, UMR6543-CNRS, UFR Sciences, Parc Valrose, 06108 Nice cedex 02, France.
Dev Biol. 2010 Aug 1;344(1):119-28. doi: 10.1016/j.ydbio.2010.04.021. Epub 2010 May 9.
Hedgehog (Hh) proteins are secreted molecules that play an essential role in development and tumorigenesis. In Drosophila cultured cells, phosphorylation of the kinesin-like Costal2 (Cos2) protein at Ser572 is triggered by the kinase fused (Fu) upon Hh pathway activation. Here, we validate the first phospho-antibody for one of the Hh pathway components, Cos2, as a universal in situ readout of Hh signal transduction. For the first time, this tool allows the visualisation of a gradient of signalling activity and therefore the range of the activating Hh ligand in different tissues. We also show that, in vivo, Fu kinase is activated by and necessary to transduce all levels of intracellular Hh signalling. Our study fills a gap in the understanding of the Hh pathway by showing that the molecular cascade leading to Cos2 phosphorylation is conserved in all cells activated by Hh. Therefore, we propose that the extracellular Hh information is conveyed to an intracellular signal through graded Fu kinase activity.
刺猬(Hh)蛋白是分泌的分子,在发育和肿瘤发生中起着至关重要的作用。在果蝇培养细胞中,当 Hh 途径被激活时,融合激酶(Fu)触发了类驱动蛋白 Costal2(Cos2)蛋白 Ser572 的磷酸化。在这里,我们验证了第一个针对 Hh 途径成分之一 Cos2 的磷酸化抗体,作为 Hh 信号转导的通用原位读出方法。这一工具首次使信号活性的梯度可视化成为可能,因此也使激活 Hh 配体在不同组织中的范围可视化。我们还表明,在体内,Fu 激酶被激活并需要转导所有水平的细胞内 Hh 信号。我们的研究通过表明导致 Cos2 磷酸化的分子级联在所有被 Hh 激活的细胞中都是保守的,填补了对 Hh 途径的理解中的一个空白。因此,我们提出,细胞外的 Hh 信息通过 Fu 激酶活性的分级传递到细胞内信号中。