Zhang Min, Moran Miriana, Round June, Low Teresa A, Patel Viresh P, Tomassian Tamar, Hernandez Joseph D, Miceli M Carrie
Department of Microbiology, University of California School of Medicine, Los Angeles, CA 90095, USA.
J Immunol. 2005 Feb 1;174(3):1479-90. doi: 10.4049/jimmunol.174.3.1479.
CD45 is dynamically repositioned within lipid rafts and the immune synapse during T cell activation, although the molecular consequences of CD45 repositioning remain unclear. In this study we examine the role of CD45 membrane compartmentalization in regulating murine T cell activation. We find that raft-localized CD45 antagonizes IL-2 production by opposing processive TCR signals, whereas raft-excluded CD45 promotes ERK-dependent polarized synaptic lipid raft clustering and IL-2 production. We propose that these dual CD45 activities ensure that only robust TCR signals proceed, whereas signals meeting threshold requirements are potentiated. Our findings highlight membrane compartmentalization as a key regulator of CD45 function and elucidate a novel signal transduction pathway by which raft-excluded CD45 positively regulates T cell activation.
在T细胞激活过程中,CD45会在脂筏和免疫突触内动态重新定位,尽管CD45重新定位的分子后果仍不清楚。在本研究中,我们研究了CD45膜区室化在调节小鼠T细胞激活中的作用。我们发现,定位于脂筏的CD45通过对抗持续性TCR信号来拮抗IL-2的产生,而被排除在脂筏之外的CD45则促进ERK依赖性的极化突触脂筏聚集和IL-2的产生。我们提出,这些双重CD45活性可确保只有强大的TCR信号才能继续传递,而满足阈值要求的信号则会得到增强。我们的研究结果突出了膜区室化作为CD45功能的关键调节因子,并阐明了一种新的信号转导途径,通过该途径,被排除在脂筏之外的CD45可正向调节T细胞激活。