Université de Toulouse, UPS, CNRS, Centre de Biologie du Développement, 118. route de Narbonne, F-31062 Toulouse, France.
Dev Biol. 2011 Oct 1;358(1):168-80. doi: 10.1016/j.ydbio.2011.07.027. Epub 2011 Jul 23.
Sulfs are secreted sulfatases that catalyse removal of sulfate from Heparan Sulfate Proteoglycans (HSPGs) in the extracellular space. These enzymes are well known to regulate a number of crucial signalling pathways during development. In this study, we report that DSulfatase-1 (DSulf1), the unique Drosophila Sulf protein, is a regulator of Hedgehog (Hh) signalling during wing development. DSulf1 activity is required in both Hh source and Hh receiving cells for proper positioning of Hh target gene expression boundaries. As assessed by loss- and gain-of-function experiments in specific compartments, DSulf1 displays dual functions with respect to Hh signalling, acting as a positive regulator in Hh producing cells and a negative regulator in Hh receiving cells. In either domain, DSulf1 modulates Hh distribution by locally lowering the concentration of the morphogen at the apical pole of wing disc cells. Thus, we propose that DSulf1, by its desulfation catalytic activity, lowers Hh/HSPG interaction in both Hh source and target fields, thereby enhancing Hh release from its source of production and reducing Hh signalling activity in responding cells. Finally, we show that Dsulf1 pattern of expression is temporally regulated and depends on EGFR signalling, a Hh-dependent secondary signal in this tissue. Our data reveal a novel Hh regulatory feedback loop, involving DSulf1, which contributes to maintain and stabilise expression domains of Hh target genes during wing disc development.
硫酸酯酶是一类在细胞外空间催化硫酸肝素蛋白聚糖(HSPGs)中硫酸基团去除的酶。这些酶在发育过程中调节许多关键信号通路是众所周知的。在这项研究中,我们报告说,DSulfatase-1(DSulf1),即独特的果蝇硫酸酯酶蛋白,是 Hedgehog(Hh)信号在翅膀发育过程中的调节因子。DSulf1 活性在 Hh 源和 Hh 接收细胞中都是必需的,以正确定位 Hh 靶基因表达边界。通过在特定隔室中进行的失活和功能获得实验评估,DSulf1 显示出与 Hh 信号相关的双重功能,在 Hh 产生细胞中作为正调节剂,在 Hh 接收细胞中作为负调节剂。在任一区域,DSulf1 通过局部降低翅膀盘细胞顶端极的形态发生素浓度来调节 Hh 分布。因此,我们提出 DSulf1 通过其脱硫酸催化活性,降低了 Hh/HSPG 在 Hh 源和靶场中的相互作用,从而增强了 Hh 从其产生源的释放,并降低了响应细胞中的 Hh 信号活性。最后,我们表明 Dsulf1 的表达模式是时间调节的,并依赖于 EGFR 信号,这是该组织中 Hh 的依赖性二级信号。我们的数据揭示了一个新的 Hh 调节反馈回路,涉及 DSulf1,它有助于维持和稳定翅膀盘发育过程中 Hh 靶基因的表达域。