Thauvin Marion, Amblard Irène, Rampon Christine, Mourton Aurélien, Queguiner Isabelle, Li Chenge, Gautier Arnaud, Joliot Alain, Volovitch Michel, Vriz Sophie
Center for Interdisciplinary Research in Biology (CIRB), Collège de France, CNRS, INSERM, PSL Research University, 75005 Paris, France.
Faculty of Sciences, Université de Paris-Cité, 75206 Paris, France.
Antioxidants (Basel). 2022 Apr 5;11(4):718. doi: 10.3390/antiox11040718.
Among molecules that bridge environment, cell metabolism, and cell signaling, hydrogen peroxide (HO) recently appeared as an emerging but central player. Its level depends on cell metabolism and environment and was recently shown to play key roles during embryogenesis, contrasting with its long-established role in disease progression. We decided to explore whether the secreted morphogen Sonic hedgehog (Shh), known to be essential in a variety of biological processes ranging from embryonic development to adult tissue homeostasis and cancers, was part of these interactions. Here, we report that HO levels control key steps of Shh delivery in cell culture: increased levels reduce primary secretion, stimulate endocytosis and accelerate delivery to recipient cells; in addition, physiological in vivo modulation of HO levels changes Shh distribution and tissue patterning. Moreover, a feedback loop exists in which Shh trafficking controls HO synthesis via a non-canonical BOC-Rac1 pathway, leading to cytoneme growth. Our findings reveal that Shh directly impacts its own distribution, thus providing a molecular explanation for the robustness of morphogenesis to both environmental insults and individual variability.
在连接环境、细胞代谢和细胞信号传导的分子中,过氧化氢(H₂O₂)最近成为一个新兴的核心角色。其水平取决于细胞代谢和环境,最近研究表明它在胚胎发育过程中发挥关键作用,这与其在疾病进展中早已确立的作用形成对比。我们决定探究分泌型形态发生素音猬因子(Shh)是否参与了这些相互作用,已知Shh在从胚胎发育到成体组织稳态及癌症等多种生物学过程中至关重要。在此,我们报告H₂O₂水平控制细胞培养中Shh传递的关键步骤:水平升高会减少初级分泌,刺激内吞作用并加速向受体细胞的传递;此外,体内对H₂O₂水平的生理性调节会改变Shh分布和组织模式。而且,存在一个反馈回路,其中Shh转运通过非经典的BOC-Rac1途径控制H₂O₂合成,导致丝状伪足生长。我们的研究结果表明,Shh直接影响其自身分布,从而为形态发生对环境损伤和个体差异的稳健性提供了分子解释。