Withka J M, Wyss D F, Wagner G, Arulanandam A R, Reinherz E L, Recny M A
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, MA 02115.
Structure. 1993 Sep 15;1(1):69-81. doi: 10.1016/0969-2126(93)90009-6.
CD2, a T-cell specific surface glycoprotein, is critically important for mediating adherence of T cells to antigen-presenting cells or target cells. Domain 1 of human CD2 is responsible for cell adhesion, binding to CD58 (LFA-3) expressed on the cell to which the T cell binds. Human CD2 domain 1 requires N-linked carbohydrate to maintain its native conformation and ability to bind CD58. In contrast, rat CD2 does not require N-linked carbohydrate, and binds to a different ligand, CD48.
The three-dimensional structure of the glycosylated form of domain 1 of human CD2 has been determined by NMR spectroscopy. The overall structure resembles the typical beta-barrel of an immunoglobulin variable domain. Nuclear Overhauser enhancement contacts between the protein and the N-linked glycan have been tentatively identified.
Based on our results, we propose a model showing how the N-linked glycan might be positioned in the human CD2 domain 1 structure. The model provides an explanation for the observed instability of deglycosylated human CD2, and allows residues that are important for CD58 binding to be differentiated from those affecting conformational stability via interactions with the glycan.
CD2是一种T细胞特异性表面糖蛋白,对于介导T细胞与抗原呈递细胞或靶细胞的黏附至关重要。人CD2的结构域1负责细胞黏附,与T细胞所结合细胞上表达的CD58(淋巴细胞功能相关抗原-3)结合。人CD2结构域1需要N-连接碳水化合物来维持其天然构象及与CD58结合的能力。相比之下,大鼠CD2不需要N-连接碳水化合物,且与不同的配体CD48结合。
通过核磁共振光谱法确定了人CD2结构域1糖基化形式的三维结构。整体结构类似于免疫球蛋白可变结构域的典型β桶。已初步确定了蛋白质与N-连接聚糖之间的核Overhauser增强接触。
基于我们的结果,我们提出了一个模型,展示了N-连接聚糖可能如何定位在人CD2结构域1的结构中。该模型解释了去糖基化人CD2观察到的不稳定性,并使对CD58结合重要的残基能够与通过与聚糖相互作用影响构象稳定性的残基区分开来。