Meinl E, Derfuss T, Pirzer R, Blank N, Lengenfelder D, Blancher A, Le Deist F, Fleckenstein B, Hivroz C
Department of Neuroimmunology, Max-Planck-Institute of Neurobiology, D-82152 Martinsried, Germany.
J Biol Chem. 2001 Oct 5;276(40):36902-8. doi: 10.1074/jbc.M102668200. Epub 2001 Jul 19.
The protein tyrosine kinase ZAP-70 plays a pivotal role involved in signal transduction through the T cell receptor and CD2. Defects in ZAP-70 result in severe combined immunodeficiency. We report that Herpesvirus saimiri, which does not code for a ZAP-70 homologue, can replace this tyrosine kinase. H. saimiri is an oncogenic virus that transforms human T cells to stable growth based on mutual CD2-mediated activation. Although CD2-mediated proliferation of ZAP-70-deficient uninfected T cells was absent, we could establish H. saimiri-transformed T cell lines from two unrelated patients presenting with ZAP-70 deficiencies. In these cell lines, CD2 and CD3 activation were restored in terms of Ca(2+), MAPK activation, cytokine production, and proliferation. Activation-induced tyrosine phosphorylation of zeta remained defective. The transformed cells expressed very high levels of the ZAP-70-related kinase Syk. This increased expression was not observed in the primary T cells from the patients and was not due to the transformation by the virus because transformed cell lines established from control T cells did not present this particularity. In conclusion, wild type H. saimiri can restore CD2- and CD3-mediated activation in signaling-deficient human T cells. It extends our understanding of interactions between the oncogenic H. saimiri and the infected host cells.
蛋白酪氨酸激酶ZAP-70在通过T细胞受体和CD2的信号转导中起关键作用。ZAP-70缺陷会导致严重联合免疫缺陷。我们报告称,不编码ZAP-70同源物的赛米利疱疹病毒可以替代这种酪氨酸激酶。赛米利疱疹病毒是一种致癌病毒,它基于相互的CD2介导的激活作用将人T细胞转化为稳定生长。虽然缺乏ZAP-70的未感染T细胞不存在CD2介导的增殖,但我们能够从两名患有ZAP-70缺陷的无关患者中建立赛米利疱疹病毒转化的T细胞系。在这些细胞系中,在Ca(2+)、MAPK激活、细胞因子产生和增殖方面,CD2和CD3激活得以恢复。激活诱导的ζ酪氨酸磷酸化仍然存在缺陷。转化细胞表达非常高水平的ZAP-70相关激酶Syk。在患者的原代T细胞中未观察到这种表达增加,并且这不是由于病毒转化所致,因为从对照T细胞建立的转化细胞系没有这种特殊性。总之,野生型赛米利疱疹病毒可以在信号缺陷的人T细胞中恢复CD2和CD3介导的激活。这扩展了我们对致癌性赛米利疱疹病毒与受感染宿主细胞之间相互作用的理解。