Department of Anatomy and Cell Biology, George Washington University School of Medicine and Health Sciences, Washington, D. C. 20037 George Washington Cancer Center, Washington, D. C. 20052.
Department of Anatomy and Cell Biology, George Washington University School of Medicine and Health Sciences, Washington, D. C. 20037 George Washington Cancer Center, Washington, D. C. 20052.
J Biol Chem. 2019 Aug 16;294(33):12339-12348. doi: 10.1074/jbc.RA119.008744. Epub 2019 Jun 17.
Hedgehog (Hh) signaling is crucial for establishing complex cellular patterns in embryonic tissues and maintaining homeostasis in adult organs. In , Interference hedgehog (Ihog) or its close paralogue Brother of Ihog (Boi) forms a receptor complex with Patched to mediate intracellular Hh signaling. Ihog proteins (Ihog and Boi) also contribute to cell segregation in wing imaginal discs through an unknown mechanism independent of their role in transducing the Hh signal. Here, we report a molecular mechanism by which the Ihog proteins mediate cell-cell interactions. We found that Ihog proteins are enriched at the site of cell-cell contacts and engage in -homophilic interactions in a calcium-independent manner. The region that we identified as mediating the -Ihog-Ihog interaction overlaps with the Ihog-Hh interface on the first fibronectin repeat of the extracellular domain of Ihog. We further demonstrate that Hh interferes with Ihog-mediated homophilic interactions by competing for Ihog binding. These results, thus, not only reveal a mechanism for Ihog-mediated cell-cell interactions but also suggest a direct Hh-mediated regulation of both intracellular signaling and cell adhesion through Ihog.
刺猬(Hh)信号对于在胚胎组织中建立复杂的细胞模式和维持成年器官的内稳态至关重要。在那里,干扰刺猬(Ihog)或其密切的同源物 Boi 与 Patched 形成受体复合物,以介导细胞内 Hh 信号。Ihog 蛋白(Ihog 和 Boi)还通过一种未知的机制促进翅膀 imaginal 盘的细胞分离,而该机制与它们在转导 Hh 信号中的作用无关。在这里,我们报告了 Ihog 蛋白介导细胞-细胞相互作用的分子机制。我们发现 Ihog 蛋白在细胞-细胞接触部位富集,并以钙独立的方式进行 - 同型相互作用。我们确定的介导 -Ihog-Ihog 相互作用的区域与 Ihog 蛋白细胞外结构域第一纤维连接蛋白重复上的 Ihog-Hh 界面重叠。我们进一步证明 Hh 通过与 Ihog 结合竞争来干扰 Ihog 介导的同型相互作用。因此,这些结果不仅揭示了 Ihog 介导的细胞-细胞相互作用的机制,而且还表明 Hh 通过 Ihog 直接调节细胞内信号转导和细胞黏附。