Hamann D, Baars P A, Hooibrink B, van Lier R W
Department of Clinical Viro-Immunology, Central Laboratory of the Netherlands Red Cross Blood Transfusion Service, Amsterdam, The Netherlands.
Blood. 1996 Nov 1;88(9):3513-21.
Activation of unprimed CD4+CD45RA+/RO- T cells results in a gradual loss of CD45RA expression concomitant with the acquisition of CD45RO. It has been suggested that this conversion occurs in vivo through a CD45RAbright/RObright stage. Next to this small CD45RAbright/RObright subset (Dbright), a larger subpopulation that expresses both RA and RO isoforms at low levels (Ddull) can be found in the circulating CD4+ T-cell population of all donors. The properties of the latter population are largely undefined. Here, we show that Ddull cells have an intermediate phenotype for antigens such as CD31, CD621, CD58, and CD95 that are differentially expressed on unprimed versus primed T cells. In addition, they are able to provide help for B-cell differentiation and contain substantial numbers of tetanus toxoid (TT)-specific precursor cells. Remarkably, both intracellular cytokine staining and analysis of T-cell clones showed that Ddull cells and CD45RO+ T cells produce comparable high amounts of both interferon (IFN)-gamma and interleukin (IL)-4, which clearly distinguishes them from CD45RA+ and Dbright T cells. Finally, prolonged culture of sorted Ddull cells in a mixture of IL-2, IL-6, and tumor necrosis factor (TNF)-alpha showed that about half of the population retained the Ddull phenotype. Part of the cells upregulated the CD45RA isoform, whereas only a minority switched to single CD45RO expression. Our findings indicate that the Ddull population contains primed T cells, some of which may reacquire an "unprimed" phenotype in the absence of antigenic stimulation.
未致敏的CD4+CD45RA+/RO- T细胞的激活会导致CD45RA表达逐渐丧失,同时获得CD45RO。有人提出,这种转变在体内通过CD45RAbright/RObright阶段发生。除了这个小的CD45RAbright/RObright亚群(Dbright)外,在所有供体的循环CD4+ T细胞群体中还可以发现一个较大的亚群,该亚群低水平表达RA和RO异构体(Ddull)。后一个群体的特性在很大程度上尚不清楚。在这里,我们表明,Ddull细胞对于未致敏与致敏T细胞上差异表达的抗原(如CD31、CD62L、CD58和CD95)具有中间表型。此外,它们能够为B细胞分化提供帮助,并含有大量破伤风类毒素(TT)特异性前体细胞。值得注意的是,细胞内细胞因子染色和T细胞克隆分析均表明,Ddull细胞和CD45RO+ T细胞产生相当高量的干扰素(IFN)-γ和白细胞介素(IL)-4,这使它们明显区别于CD45RA+和Dbright T细胞。最后,将分选的Ddull细胞在白细胞介素-2、白细胞介素-6和肿瘤坏死因子(TNF)-α的混合物中长时间培养表明,约一半的群体保留了Ddull表型。部分细胞上调了CD45RA异构体,而只有少数细胞转变为单一的CD45RO表达。我们的研究结果表明,Ddull群体包含致敏的T细胞,其中一些在没有抗原刺激的情况下可能会重新获得“未致敏”表型。