INSERM, UMR_S938, Centre de Recherche Saint-Antoine, Paris, France.
J Cell Sci. 2013 Aug 1;126(Pt 15):3409-16. doi: 10.1242/jcs.126250. Epub 2013 Jun 7.
Targeting of glycosyl-phosphatidylinositol (GPI)-anchored proteins (GPI-APs) in polarized epithelial cells depends on their association with detergent-resistant membrane microdomains called rafts. In MDCK cells, GPI-APs associate with rafts in the trans-Golgi network and are directly delivered to the apical membrane. It has been shown that oligomerization is required for their stabilization in rafts and their apical targeting. In hepatocytes, GPI-APs are first delivered to the basolateral membrane and secondarily reach the apical membrane by transcytosis. We investigated whether oligomerization is required for raft association and apical sorting of GPI-APs in polarized HepG2 cells, and at which step of the pathway oligomerization occurs. Model proteins were wild-type GFP-GPI and a double cysteine GFP-GPI mutant, in which GFP dimerization was impaired. Unlike wild-type GFP-GPI, which was efficiently endocytosed and transcytosed to the apical surface, the double cysteine mutant was basolaterally internalized, but massively accumulated in early endosomes, and reached the bile canaliculi with delayed kinetics. The double cysteine mutant was less resistant to Triton X-100 extraction, and formed fewer high molecular weight complexes. We conclude from these results that, in hepatocytes, oligomerization plays a key role in targeting GPI-APs to the apical membrane, by increasing their affinity for rafts and allowing their transcytosis.
在极化的上皮细胞中,糖基磷脂酰肌醇(GPI)锚定蛋白(GPI-APs)的靶向取决于它们与称为筏的耐去污剂膜微区的关联。在 MDCK 细胞中,GPI-APs 与高尔基体反面管网中的筏结合,并直接递送至顶膜。已经表明,寡聚化是它们在筏中的稳定和顶端靶向所必需的。在肝细胞中,GPI-APs 首先递送至基底外侧膜,然后通过胞吞作用再次到达顶膜。我们研究了在极化的 HepG2 细胞中,寡聚化是否是 GPI-AP 与筏结合和顶端分拣所必需的,以及寡聚化发生在途径的哪个步骤。模型蛋白是野生型 GFP-GPI 和 GFP-GPI 双半胱氨酸突变体,其中 GFP 二聚化受损。与高效内吞和转胞吐至顶膜的野生型 GFP-GPI 不同,双半胱氨酸突变体被基底外侧内化,但大量积聚在早期内体中,并以延迟的动力学到达胆小管。双半胱氨酸突变体对 Triton X-100 提取的抵抗力较低,并且形成的高分子量复合物较少。我们从这些结果得出结论,在肝细胞中,寡聚化通过增加它们与筏的亲和力并允许它们转胞吐作用,在将 GPI-APs 靶向顶膜方面发挥关键作用。