Sakane T, Steinberg A D, Reeves J P, Green I
J Clin Invest. 1979 Nov;64(5):1260-9. doi: 10.1172/JCI109581.
Antibodies to T cells present in the plasma of patients with active systemic lupus erythematosus (SLE) plus complement are able to eliminate concanavalin A-induced suppressor function for the proliferative responses of T cells to allogeneic lymphocytes (MLR) and of B cells to pokeweed mitogen (PWM). Such antibodies were found to be effective in eliminating suppressor function only when T cells were treated before activation; there was no effect when treatment was performed after activation. These studies indicate that the antibodies preferentially interact with a T cell necessary for the generation of suppressor cells, rather than with mature, activated suppressor cells. Studies of individual SLE patients indicate that the same defects observed in SLE T cells were induced in normal T cells by plasma from that patient. Such observations suggest that many T-cell defects associated with active SLE may not be intrinsic T-cell abnormalities, but, rather, secondary effects of anti-T-cell antibodies. Studies of the T-cell subpopulations responsible for suppression of the MLR and PWM responses indicate that only T gamma cells (T cells bearing receptors for the Fc portion of immunoglobulin [Ig]G) acted as precursors of suppressor cells for the MLR, whereas both T gamma and T non-gamma cells (T cells not bearing receptors for the Fc portion of IgG) could be activated to suppress the PWM response. Consistent with this observation, SLE anti-T-cell antibodies that preferentially killed T gamma cells preferentially eliminated suppressor cells for the MLR.
活动性系统性红斑狼疮(SLE)患者血浆中存在的针对T细胞的抗体加上补体,能够消除伴刀豆球蛋白A诱导的对T细胞对同种异体淋巴细胞增殖反应(混合淋巴细胞反应[MLR])以及B细胞对商陆有丝分裂原(PWM)增殖反应的抑制功能。发现此类抗体仅在T细胞激活前进行处理时才有效消除抑制功能;激活后进行处理则无效果。这些研究表明,抗体优先与产生抑制性细胞所必需的T细胞相互作用,而非与成熟的、活化的抑制性细胞相互作用。对个别SLE患者的研究表明,该患者血浆可在正常T细胞中诱导出在SLE T细胞中观察到的相同缺陷。此类观察结果提示,许多与活动性SLE相关的T细胞缺陷可能并非T细胞内在异常,而是抗T细胞抗体的继发效应。对负责抑制MLR和PWM反应的T细胞亚群的研究表明,只有Tγ细胞(带有免疫球蛋白[Ig]G Fc部分受体的T细胞)作为MLR抑制性细胞的前体,而Tγ和T非γ细胞(不带有IgG Fc部分受体的T细胞)均可被激活以抑制PWM反应。与此观察结果一致,优先杀死Tγ细胞的SLE抗T细胞抗体优先消除MLR的抑制性细胞。