Pandey Ankit, Cousin Hélène, Horr Brett, Alfandari Dominique
bioRxiv. 2023 Jun 13:2023.06.13.544797. doi: 10.1101/2023.06.13.544797.
Cranial neural crest (CNC) cells are induced at the border of the neural plate by a combination of FGF, Wnt, and BMP4 signaling. CNC then migrate ventrally and invade ventral structures where they contribute to craniofacial development. Here we show that a non-proteolytic ADAM, Adam11, originally identified as a putative tumor suppressor binds to proteins of the Wnt and BMP4 signaling pathway. Mechanistic studies concerning these non-proteolytic ADAM lack almost entirely. We show that Adam11 positively regulates BMP4 signaling while negatively regulating β-catenin activity. By modulating these pathways, Adam11 controls the timing of neural tube closure and the proliferation and migration of CNC. Using both human tumor data and mouse B16 melanoma cells, we further show that ADAM11 levels similarly correlate with Wnt or BMP4 activation levels. We propose that ADAM11 preserve naïve cells by maintaining low Sox3 and Snail/Slug levels through stimulation of BMP4 and repression of Wnt signaling, while loss of ADAM11 results in increased Wnt signaling, increased proliferation and early epithelium to mesenchyme transition.
颅神经嵴(CNC)细胞在神经板边界处通过FGF、Wnt和BMP4信号通路的联合作用而被诱导产生。随后,CNC细胞向腹侧迁移并侵入腹侧结构,在那里它们对颅面发育发挥作用。在此,我们表明一种非蛋白水解性的ADAM蛋白Adam11(最初被鉴定为一种假定的肿瘤抑制因子)与Wnt和BMP4信号通路的蛋白质结合。关于这些非蛋白水解性ADAM的机制研究几乎完全缺失。我们发现Adam11正向调节BMP4信号通路,同时负向调节β-连环蛋白活性。通过调节这些通路,Adam11控制神经管闭合的时间以及CNC细胞的增殖和迁移。利用人类肿瘤数据和小鼠B16黑色素瘤细胞,我们进一步表明ADAM11水平与Wnt或BMP4激活水平同样相关。我们提出,ADAM11通过刺激BMP4和抑制Wnt信号通路来维持低水平的Sox3以及Snail/Slug水平,从而保持未分化细胞状态,而ADAM11的缺失会导致Wnt信号通路增强、增殖增加以及早期上皮-间充质转化。