Savage Nigel D L, Kimzey Stephanie L, Bromley Shannon K, Johnson Kenneth G, Dustin Michael L, Green Jonathan M
Department of Medicine, Washington University School of Medicine, St. Louis, MO 63110, USA.
J Immunol. 2002 Apr 15;168(8):3740-6. doi: 10.4049/jimmunol.168.8.3740.
Contact between T cells and APCs results in the orchestrated segregation of molecules at the cell-cell interface and formation of a specialized structure termed the immunological synapse. This model predicts the topological seclusion of large molecules such as CD43 from the site of closest contact between the T cell and APC, allowing for the close apposition of cell membranes and effective TCR engagement. Similarly, during T cell migration segregation of CD43 to the uropod is thought to aid integrin adhesion at the leading edge of the cell by removing steric hindrance. We show in this work that CD43 distribution on T cells is regulated by a membrane proximal ezrin binding site and that failure to displace CD43 from the immunological synapse has no inhibitory effects on primary T cell activation. We also report that CD43 expression at the contact zone between T cells and matrix does not negatively regulate motility but may regulate LFA-1 de-adhesion. These results suggest that the steric barrier model of CD43 is inadequate and that alternative mechanisms account for the negative regulatory properties of CD43.
T细胞与抗原呈递细胞(APC)之间的接触会导致细胞间界面处分子的有序分离,并形成一种称为免疫突触的特殊结构。该模型预测,诸如CD43等大分子会从T细胞与APC最紧密接触的部位拓扑隔离,从而使细胞膜紧密并置,并实现有效的T细胞受体(TCR)结合。同样,在T细胞迁移过程中,CD43向尾足的分离被认为通过消除空间位阻来帮助整联蛋白在细胞前缘黏附。我们在这项研究中表明,T细胞上CD43的分布受膜近端埃兹蛋白结合位点的调节,并且未能将CD43从免疫突触中置换出来对初始T细胞活化没有抑制作用。我们还报告说,T细胞与基质之间接触区的CD43表达不会对运动性产生负调节作用,但可能会调节淋巴细胞功能相关抗原-1(LFA-1)的去黏附。这些结果表明,CD43的空间位阻模型并不充分,并且存在其他机制来解释CD43的负调节特性。