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细胞周期中活化T细胞上T细胞分化抗原和主要组织相容性抗原的差异表达。

Differential expression of T cell differentiation antigens and major histocompatibility antigens on activated T cells during the cell cycle.

作者信息

Matsui Y, Shapiro H M, Sheehy M J, Christenson L, Staunton D E, Eynon E E, Yunis E J

出版信息

Eur J Immunol. 1986 Mar;16(3):248-51. doi: 10.1002/eji.1830160307.

Abstract

In this report we have analyzed cell cycle-related fluctuations of both quantity and density of the T cell differentiation antigens, CD3 (T3), CD4 (T4) and CD8 (T8), as well as the major histocompatibility complex (MHC) antigens on the cell surface of activated T cells. Phytohemagglutinin-activated T cells cultured for 3 days with or without conditioned medium or for 10 days with conditioned medium and mixed lymphocyte culture-derived T cell clones were used for the analysis. Correlated measurements of the surface antigen quantity (immunofluorescence), DNA content (dye Hoechst 33342), and cell size (light scatter), not influenced by synchrony induction methods and cell fixation, were performed by dual-beam flow cytometry. Our results demonstrate that the T cell differentiation antigens, CD3, CD4 and CD8, and class I MHC antigens are increased in density in the G1 phase for all activated T cells tested. In contrast, class II MHC antigens are increased in density in the G2 phase of activated T cells maintained with conditioned medium. Since it is known that the T cell differentiation antigens and class I MHC antigens on activated T cells are necessary for proliferation of T cells, our study suggests that this effect is more significant in the G1 phase. The cell cycle changes in expression of class I and class II MHC antigens, but not of the T cell differentiation antigens, appear to be mediated by soluble factors, probably including interferon-gamma, which could produce a differential increase of class I and class II MHC antigens on G2 phase cells.

摘要

在本报告中,我们分析了活化T细胞表面T细胞分化抗原CD3(T3)、CD4(T4)和CD8(T8)以及主要组织相容性复合体(MHC)抗原在数量和密度上与细胞周期相关的波动情况。使用经植物血凝素活化的T细胞进行分析,这些T细胞在有或无条件培养基的情况下培养3天,或在有条件培养基的情况下培养10天,以及混合淋巴细胞培养衍生的T细胞克隆。通过双光束流式细胞术对表面抗原数量(免疫荧光)、DNA含量(染料Hoechst 33342)和细胞大小(光散射)进行相关测量,这些测量不受同步诱导方法和细胞固定的影响。我们的结果表明,对于所有测试的活化T细胞,T细胞分化抗原CD3、CD4和CD8以及I类MHC抗原在G1期密度增加。相比之下,在有条件培养基中培养的活化T细胞在G2期II类MHC抗原密度增加。由于已知活化T细胞上的T细胞分化抗原和I类MHC抗原是T细胞增殖所必需的,我们的研究表明这种作用在G1期更为显著。I类和II类MHC抗原表达的细胞周期变化,而非T细胞分化抗原的变化,似乎是由可溶性因子介导的,可能包括干扰素-γ,它可使G2期细胞上的I类和II类MHC抗原产生差异增加。

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