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抑制性T细胞的生长与分化:小鼠胸腺瘤BW5147产生抑制性T细胞分化因子

Suppressor T cell growth and differentiation: production of suppressor T cell differentiation factor by the murine thymoma BW5147.

作者信息

Chu W S, Carpino M R, Dent A, Rich S

出版信息

J Immunol. 1987 Jan 1;138(1):78-86.

PMID:2946782
Abstract

Previous studies have identified a lymphokine, termed Ts differentiation factor (TsDF), in primary MLR supernatants that induces effector function of alloantigen-primed MLR-Ts. The present report describes constitutive production of TsDF by the murine thymoma BW5147, and its use to analyze alloantigen and TsDF requirements for MLR-Ts activation to TsF production. Serum-free supernatants of BW5147 restored the capacity of MLR-TsF production to alloantigen-primed MLR-Ts cultured with glutaraldehyde-fixed allogeneic stimulator cells, and were not themselves directly suppressive in the MLR assay. BW5147 supernatant induced MLR-TsF production from primed L3T4-Ly2+ MLR-Ts in the absence of concomitant proliferation, suggesting that the function of BW5147 supernatant, like that of MLR-derived TsDF, is a differentiative rather than a proliferative one, and is required for the synthesis or release of TsF. The differentiative activity of BW5147 supernatant was associated with a molecular species of approximately 14,500 m.w. by HPLC fractionation and was expressed independently of detectable IL 2, IL 3, IFN-gamma, and IL 1. The functional activity of BW5147 supernatant has therefore been provisionally designated BW5147-derived Ts differentiative factor, or BW-TsDF. By using BW-TsDF, it was demonstrated that MLR-Ts fail to respond to TsDF in the absence of, or preceding, reexposure to priming alloantigen. Instead, alloantigen binding by primed MLR-Ts appears to create a transient state of TsDF responsiveness. Primed MLR-Ts were fully sensitive to delayed addition of TsDF for approximately 12 hr after reexposure to alloantigen, but became TsDF-unresponsive within 24 to 36 hr. MLR-Ts cultured alone for 36 hr were fully responsive to the combined addition of TsDF and alloantigen. Thus, MLR-Ts activation to TsF release requires the sequential events of specific alloantigen binding, which induces a TsDF-responsive state, followed by interaction with TsDF. The transience of induced TsDF responsiveness suggests a precise mechanism for control of antigen-initiated Ts activation to effector function.

摘要

以往的研究已在初次混合淋巴细胞反应(MLR)上清液中鉴定出一种淋巴因子,称为Ts分化因子(TsDF),它可诱导经同种异体抗原致敏的MLR-Ts的效应功能。本报告描述了小鼠胸腺瘤BW5147组成性产生TsDF的情况,以及利用它来分析MLR-Ts激活产生TsF对同种异体抗原和TsDF的需求。BW5147的无血清上清液恢复了经戊二醛固定的同种异体刺激细胞培养的、经同种异体抗原致敏的MLR-Ts产生MLR-TsF的能力,并且其本身在MLR试验中并无直接抑制作用。BW5147上清液在没有伴随增殖的情况下,诱导经致敏的L3T4-Ly2+ MLR-Ts产生MLR-TsF,这表明BW5147上清液与MLR来源的TsDF一样,其功能是分化性的而非增殖性的,并且是合成或释放TsF所必需的。通过高效液相色谱(HPLC)分级分离,BW5147上清液的分化活性与一种分子量约为14,500的分子种类相关,并且其表达独立于可检测到的白细胞介素2(IL 2)、白细胞介素3(IL 3)、γ干扰素(IFN-γ)和白细胞介素1(IL 1)。因此,BW5147上清液的功能活性被暂时命名为BW5147来源Ts分化因子,即BW-TsDF。通过使用BW-TsDF,证明了在没有再次接触致敏同种异体抗原或在此之前,MLR-Ts对TsDF无反应。相反,经致敏的MLR-Ts与同种异体抗原结合似乎会产生一种对TsDF反应性的短暂状态。再次接触同种异体抗原后,经致敏的MLR-Ts在约12小时内对延迟添加的TsDF完全敏感,但在24至36小时内变得对TsDF无反应。单独培养36小时的MLR-Ts对同时添加的TsDF和同种异体抗原完全有反应。因此,MLR-Ts激活释放TsF需要特定同种异体抗原结合这一顺序事件,该事件诱导一种对TsDF反应性的状态,随后与TsDF相互作用。诱导的TsDF反应性的短暂性提示了一种精确的机制来控制抗原引发的Ts激活至效应功能。

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