Department of Physiology, School of Medicine, UCLA and Veterans Administration Greater Los Angeles Health Care System, Los Angeles, California 90073, USA.
J Biol Chem. 2011 Jul 22;286(29):25801-12. doi: 10.1074/jbc.M111.252247. Epub 2011 Jun 3.
N-Glycans of the Na,K-ATPase β₁ subunit are important for intercellular adhesion in epithelia, suggesting that epithelial junctions depend on N-glycan-mediated interactions between the β₁ subunits of neighboring cells. The level of co-immunoprecipitation of the endogenous β₁ subunit with various YFP-linked β₁ subunits expressed in Madin-Darby canine kidney cells was used to assess β₁-β₁ interactions. The amount of co-precipitated endogenous dog β₁ was greater with dog YFP-β₁ than with rat YFP-β₁, showing that amino acid-mediated interactions are important for β₁-β₁ binding. Co-precipitation of β₁ was also less with the unglycosylated YFP-β₁ than with glycosylated YFP-β₁, indicating a role for N-glycans. Mixing cells expressing dog YFP-β₁ with non-transfected cells increased the amount of co-precipitated β₁, confirming the presence of intercellular (YFP-β₁)-β₁ complexes. Accordingly, disruption of intercellular junctions decreased the amount of co-precipitated β₁ subunits. The decrease in β₁ co-precipitation both with rat YFP-β₁ and unglycosylated YFP-β₁ was associated with decreased detergent stability of junctional proteins and increased paracellular permeability. Reducing N-glycan branching by specific inhibitors increased (YFP-β₁)-β₁ co-precipitation and strengthened intercellular junctions. Therefore, interactions between the β₁ subunits of neighboring cells maintain integrity of intercellular junctions, and alterations in the β₁ subunit N-glycan structure can regulate stability and tightness of intercellular junctions.
Na,K-ATPaseβ1 亚基的 N-糖链对于上皮细胞的细胞间黏附很重要,这表明上皮连接依赖于相邻细胞的β1 亚基之间通过 N-糖链介导的相互作用。通过共沉淀内源性β1 亚基与在 Madin-Darby 犬肾细胞中表达的各种 YFP 连接的β1 亚基的水平来评估β1-β1 相互作用。与大鼠 YFP-β1 相比,与犬 YFP-β1 共沉淀的内源性犬β1 量更大,表明氨基酸介导的相互作用对于β1-β1 结合很重要。与糖基化 YFP-β1 相比,未糖基化的 YFP-β1 共沉淀的β1 也较少,表明 N-糖链起作用。用表达犬 YFP-β1 的细胞与非转染细胞混合会增加共沉淀的β1 量,证实存在细胞间(YFP-β1)-β1 复合物。因此,细胞间连接的破坏减少了共沉淀的β1 亚基的量。与大鼠 YFP-β1 和未糖基化的 YFP-β1 共沉淀的β1 减少与连接蛋白的去污剂稳定性降低和细胞旁通透性增加有关。用特异性抑制剂减少 N-糖链分支增加了(YFP-β1)-β1 共沉淀并加强了细胞间连接。因此,相邻细胞的β1 亚基之间的相互作用维持了细胞间连接的完整性,并且β1 亚基 N-糖链结构的改变可以调节细胞间连接的稳定性和紧密性。