van Leeuwen J E, Kearse K P
Experimental Immunology Branch, NCI, National Institutes of Health, Bethesda, Maryland 20892-1360, USA.
J Biol Chem. 1996 Apr 19;271(16):9660-5. doi: 10.1074/jbc.271.16.9660.
Most T lymphocytes express on their surfaces an oligomeric protein complex consisting of clonotypic alpha beta polypeptides associated with invariant CD3-gamma delta epsilon and zeta chains, designated the T cell antigen receptor (TCR) complex. Assembly and intracellular transport of nascent TCR proteins is believed to be assisted by their interaction with the molecular chaperone calnexin, which for certain molecules functions as a lectin for monoglucosylated glycans. However, as most of our knowledge about calnexin-TCR protein associations has been obtained under conditions of limited TCR assembly, the role of calnexin in the formation of nascent TCR complexes is unclear. Here, we studied the role of glucose (Glc) trimming and calnexin association in the oligomerization of TCR alpha and CD3 delta glycoproteins in murine splenic T lymphocytes, a model cell type for efficient assembly of complete TCR complexes. We show that removal of Glc residues from both CD3 delta proteins and TCR alpha proteins occurred prior to their association with any other TCR components and that calnexin specifically interacted with unassembled TCR alpha and CD3 delta proteins containing incompletely trimmed oligosaccharides. Interestingly, we found that removal of Glc residues from glycan chains was necessary for efficient association of calnexin with TCR alpha glycoproteins but not with CD3 delta glycoproteins. These studies define Glc trimming and calnexin association as initial molecular events in the translation of CD3 delta and TCR alpha proteins occurring coincident with or immediately after their translocation into the endoplasmic reticulum and preceding the ordered pairing of TCR chains. In addition, these data document that calnexin assembly with CD3 delta and TCR alpha glycoproteins involves both glycan-dependent and glycan-independent mechanisms.
大多数T淋巴细胞在其表面表达一种寡聚蛋白复合物,该复合物由与恒定的CD3-γδε和ζ链相关的克隆型αβ多肽组成,称为T细胞抗原受体(TCR)复合物。新生TCR蛋白的组装和细胞内运输被认为是通过它们与分子伴侣钙连蛋白的相互作用来辅助的,钙连蛋白对于某些分子起着单糖基化聚糖凝集素的作用。然而,由于我们对钙连蛋白-TCR蛋白关联的大多数了解是在TCR组装受限的条件下获得的,所以钙连蛋白在新生TCR复合物形成中的作用尚不清楚。在这里,我们研究了葡萄糖(Glc)修剪和钙连蛋白关联在小鼠脾T淋巴细胞中TCRα和CD3δ糖蛋白寡聚化中的作用,小鼠脾T淋巴细胞是高效组装完整TCR复合物的模型细胞类型。我们发现,从CD3δ蛋白和TCRα蛋白上去除Glc残基是在它们与任何其他TCR组分结合之前发生的,并且钙连蛋白特异性地与含有未完全修剪寡糖的未组装TCRα和CD3δ蛋白相互作用。有趣的是,我们发现从糖链上去除Glc残基对于钙连蛋白与TCRα糖蛋白的有效结合是必要的,但对于与CD3δ糖蛋白的结合则不是。这些研究将Glc修剪和钙连蛋白关联定义为CD3δ和TCRα蛋白翻译过程中的初始分子事件,这些事件与它们转运到内质网中同时发生或紧随其后,并在TCR链有序配对之前。此外,这些数据证明钙连蛋白与CD3δ和TCRα糖蛋白的组装涉及糖基依赖性和糖基非依赖性机制。