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首页> 外文期刊>The Journal of Experomental Medicine >Suppressor T cell growth and differentiation. Identification of a cofactor required for suppressor T cell function and distinct from interleukin 2.
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Suppressor T cell growth and differentiation. Identification of a cofactor required for suppressor T cell function and distinct from interleukin 2.

机译:抑制性T细胞的生长和分化。鉴定抑制性T细胞功能所需的辅因子,与白介素2不同。

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This report describes a Ts costimulator assay and its use to analyze cofactors required for the expression of suppressor T cell function. Activation of primed MLR-Ts (alloantigen-activated suppressor T cells suppressive of mixed leukocyte reaction) to suppressor T cell factor (TsF) production typically fails in the presence of glutaraldehyde-fixed rather than irradiated allogeneic stimulator cells. However, MLR-TsF production was restored by the addition of 48-h primary MLR supernates; MLR-derived Ts costimulator neither activated primed MLR-Ts in the absence of fixed allogeneic stimulators nor directly suppressed assay MLR. Lack of antigen specificity or genetic restriction and failure to activate unprimed MLR-Ts precursors suggested that Ts costimulator activity differed from previously described Ts inducer functions and was more closely aligned with the lymphocyte- or monocyte-derived interleukins (IL). Three findings distinguished Ts costimulator from IL-2. Depletion of IL-2 activity from MLR supernates by HT2 adsorption failed to affect Ts costimulator function. In addition, MLR supernates prepared in the presence of cyclosporin A contained no IL-2 but expressed Ts costimulator activity. Finally, gel chromatography demonstrated Ts costimulator in peaks of 21,000 and 43,000 mol wt that were largely distinct from the IL-2-containing fractions. Ts costimulator activity was also identified in phorbol myristate acetate (PMA)-induced EL4 supernates and was retained in those supernates after IL-2 depletion by HT2 adsorption. In preliminary functional characterization, MLR supernate-derived Ts costimulator triggered MLR-TsF production from irradiated MLR-Ts in the absence of proliferation. Thus a differentiative rather than proliferative stimulus required for primed MLR-Ts function appears to be provided by this Ts costimulator and has been provisionally termed Ts differentiative factor ( TsDF ). This initial characterization may thus identify one of a possibly distinctive family of interleukins required in the alloantigen-driven activation of suppressor T cells to effector function.
机译:该报告描述了Ts共刺激物测定及其在分析表达抑制性T细胞功能所需的辅因子中的用途。在戊二醛固定而不是辐照的同种异体刺激细胞存在的情况下,引发的MLR-Ts(抑制混合白细胞反应的铝抗原激活的抑制性T细胞)对抑制性T细胞因子(TsF)产生的激活通常会失败。但是,通过添加48小时的原代MLR上清液,恢复了MLR-TsF的产生。 MLR衍生的Ts共刺激物在没有固定的同种异体刺激物的情况下既不激活引发的MLR-Ts,也没有直接抑制化验MLR。缺乏抗原特异性或遗传限制以及无法激活未引发的MLR-Ts前体,提示Ts共刺激物活性不同于先前描述的Ts诱导物功能,并且与淋巴细胞或单核细胞衍生的白介素(IL)更紧密地对齐。三个发现将Ts共刺激物与IL-2区别开来。通过HT2吸附使MLR上清液中的IL-2活性耗尽,无法影响Ts共刺激器功能。另外,在环孢菌素A存在下制备的MLR上清液不含IL-2,但表达了Ts共刺激活性。最终,凝胶色谱法证明了Ts共刺激物的峰为21,000和43,000 mol wt,与含IL-2的馏分有很大不同。 Ts共刺激物活性还可以在佛波醇肉豆蔻酸酯乙酸酯(PMA)诱导的EL4上清液中鉴定,并在HT2吸附使IL-2耗尽后保留在这些上清液中。在初步的功能表征中,在没有增殖的情况下,MLR上清衍生的Ts共刺激物触发了辐照的MLR-T的MLR-TsF产生。因此,引发的MLR-Ts功能所需的差异性刺激而非增殖性刺激似乎由该Ts共刺激器提供,并已暂时称为Ts差异性因子(TsDF)。因此,该初始表征可以鉴定出在抑制抗原T细胞激活效应子的同种抗原驱动的激活中所需的可能独特的白介素家族之一。

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