State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, 271018, Tai'an, China.
State Key Laboratory of Pharmaceutical Biotechnology and MOE Key Laboratory of Model Animals for Disease Study, Model Animal Research Center, Nanjing University, 210061, Nanjing, China.
Cell Death Differ. 2020 Nov;27(11):3082-3096. doi: 10.1038/s41418-020-0563-7. Epub 2020 May 28.
Hedgehog (Hh) pathway plays multiple roles in many physiological processes and its dysregulation leads to congenital disorders and cancers. Hh regulates the cellular localization of Smoothened (Smo) and the stability of Cubitus interruptus (Ci) to fine-tune the signal outputs. However, the underlying mechanisms are still unclear. Here, we show that the scaffold protein Rack1 plays dual roles in Hh signaling. In the absence of Hh, Rack1 promotes Ci and Cos2 to form a Ci-Rack1-Cos2 complex, culminating in Slimb-mediated Ci proteolysis. In the presence of Hh, Rack1 dissociates from Ci-Rack1-Cos2 complex and forms a trimeric complex with Smo and Usp8, leading to Smo deubiquitination and cell surface accumulation. Furthermore, we find the regulation of Rack1 on Hh pathway is conserved from Drosophila to mammalian cells. Our findings demonstrate that Rack1 plays dual roles during Hh signal transduction and provide Rack1 as a potential drug target for Hh-related diseases.
刺猬 (Hh) 信号通路在许多生理过程中发挥多种作用,其失调会导致先天性疾病和癌症。Hh 调节 Smoothened (Smo) 的细胞定位和 Cubitus interruptus (Ci) 的稳定性,以微调信号输出。然而,其潜在的机制仍不清楚。在这里,我们表明支架蛋白 Rack1 在 Hh 信号中发挥双重作用。在没有 Hh 的情况下,Rack1 促进 Ci 和 Cos2 形成 Ci-Rack1-Cos2 复合物,最终导致 Slimb 介导的 Ci 蛋白水解。在 Hh 存在的情况下,Rack1 从 Ci-Rack1-Cos2 复合物中解离出来,并与 Smo 和 Usp8 形成三聚体复合物,导致 Smo 去泛素化和细胞表面积累。此外,我们发现 Rack1 对 Hh 通路的调节从果蝇到哺乳动物细胞都是保守的。我们的研究结果表明,Rack1 在 Hh 信号转导过程中发挥双重作用,并为与 Hh 相关的疾病提供了 Rack1 作为潜在的药物靶点。