Wiest D L, Burgess W H, McKean D, Kearse K P, Singer A
Experimental Immunology Branch, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.
EMBO J. 1995 Jul 17;14(14):3425-33. doi: 10.1002/j.1460-2075.1995.tb07348.x.
Immature thymocytes express clonotype-independent CD3 complexes that, when engaged by anti-CD3 antibodies, can signal CD4-CD8- thymocytes to differentiate into CD4+CD8+ cells. Clonotype-independent CD3 complexes consist of CD3 components associated with an unknown 90 kDa surface protein. We now report the surprising finding that this 90 kDa surface protein is the molecular chaperone calnexin, an integral membrane protein previously thought to reside only in the endoplasmic reticulum (ER). We found that calnexin-CD3 complexes escaping to the cell surface utilize interchain associations distinct from those utilized by calnexin-CD3 complexes remaining within the ER. Specifically, we demonstrate that carbohydrate-mediated luminal domain interactions that are necessary for formation of most internal calnexin-CD3 complexes destined to be expressed on the cell surface, and we provide evidence that cytoplasmic domain interactions between calnexin and CD3 epsilon chains mask calnexin's ER retention signal, permitting calnexin and associated proteins to escape ER retention. Thus, the present study demonstrates that partial T cell antigen receptor complexes can escape the ER of immature thymocytes in association with their molecular chaperone to be expressed at low levels on the cell surface where they may function as a signaling complex to regulate thymocyte maturation.
未成熟胸腺细胞表达不依赖克隆型的CD3复合物,当与抗CD3抗体结合时,可促使CD4-CD8-胸腺细胞分化为CD4+CD8+细胞。不依赖克隆型的CD3复合物由与一种未知的90 kDa表面蛋白相关的CD3成分组成。我们现在报告一个惊人的发现,即这种90 kDa表面蛋白是分子伴侣钙连蛋白,一种以前被认为仅存在于内质网(ER)中的整合膜蛋白。我们发现,逃逸到细胞表面的钙连蛋白-CD3复合物利用的链间结合不同于保留在内质网中的钙连蛋白-CD3复合物所利用的结合。具体而言,我们证明碳水化合物介导的腔内结构域相互作用对于大多数注定要在细胞表面表达的内质网内钙连蛋白-CD3复合物的形成是必需的,并且我们提供证据表明钙连蛋白与CD3ε链之间的胞质结构域相互作用掩盖了钙连蛋白的内质网保留信号,从而使钙连蛋白及相关蛋白能够逃脱内质网的保留。因此,本研究表明,部分T细胞抗原受体复合物可以与其分子伴侣一起从未成熟胸腺细胞的内质网中逃逸,从而在细胞表面低水平表达,在那里它们可能作为信号复合物发挥作用以调节胸腺细胞成熟。