Rogers Aric N, Vanburen Denille G, Hedblom Emmett E, Tilahun Mulualem E, Telfer Janice C, Baldwin Cynthia L
Program in Molecular and Cellular Biology, University of Massachusetts, Amherst, MA 01003, USA.
J Immunol. 2005 Mar 15;174(6):3386-93. doi: 10.4049/jimmunol.174.6.3386.
WC1 molecules are transmembrane glycoproteins belonging to the scavenger receptor cysteine-rich family and uniquely expressed on gammadelta T cells. Although participation of WC1+ gammadelta T cells in immune responses is well established, very little is understood regarding the significance of expressing different forms of the WC1 molecule. Two forms previously identified by mAbs, i.e., WC1.1 and WC1.2, are expressed by largely nonoverlapping subpopulations of gammadelta T cells. In this study it was shown that expression of the WC1.1 coreceptor was the main indicator of proliferation and IFN-gamma production in response to autologous and bacterial Ags as well as for IFN-gamma production without proliferation in Th1-polarizing, IL-12-containing cultures. Nevertheless, after culture in either Th1-polarizing or neutral conditions, mRNA was present for both T-bet and GATA-3 as well as for IL-12Rbeta2 in WC1.1+ and WC1.2+ subpopulations, and neither produced IL-4 under any conditions. Although the steady decrease in the proportion of WC1.1+ cells, but not WC1.2+ cells, within PBMC with animal aging suggested that the two subpopulations may have different roles in immune regulation, cells bearing either WC1.1 or WC1.2 expressed mRNA for regulatory cytokines IL-10 and TGF-beta, with TGF-beta being constitutively expressed by ex vivo cells. Overall, the results demonstrate that the form of the WC1 coreceptor expressed on gammadelta T cells divides them into functional subsets according to IFN-gamma production and proliferative capacity to specific stimuli as well as with regard to representation within PBMC. Finally, evidence is provided for minor differences in the intracytoplasmic tail sequences of WC1.1 and WC1.2 that may affect signaling.
WC1分子是属于富含半胱氨酸清道夫受体家族的跨膜糖蛋白,在γδT细胞上特异性表达。尽管WC1 +γδT细胞参与免疫反应已得到充分证实,但对于表达不同形式WC1分子的意义却知之甚少。先前通过单克隆抗体鉴定出的两种形式,即WC1.1和WC1.2,主要由γδT细胞的非重叠亚群表达。在本研究中,结果表明WC1.1共受体的表达是γδT细胞对自体和细菌抗原作出反应时增殖和产生干扰素-γ的主要指标,也是在含白细胞介素-12的Th1极化培养中不增殖却产生干扰素-γ的主要指标。然而,在Th1极化或中性条件下培养后,WC1.1 +和WC1.2 +亚群中均存在T-bet、GATA-3以及白细胞介素-12受体β2的mRNA,并且在任何条件下两者均不产生白细胞介素-4。尽管随着动物年龄增长,外周血单个核细胞中WC1.1 +细胞的比例稳步下降,但WC1.2 +细胞比例未下降,这表明这两个亚群在免疫调节中可能具有不同作用,但携带WC1.1或WC1.2的细胞均表达调节性细胞因子白细胞介素-10和转化生长因子-β的mRNA,其中转化生长因子-β由离体细胞组成性表达。总体而言,结果表明,γδT细胞上表达的WC1共受体形式根据其对特定刺激产生干扰素-γ的能力、增殖能力以及在外周血单个核细胞中的占比将它们分为功能亚群。最后,有证据表明WC1.1和WC1.2的胞质内尾序列存在微小差异,这可能会影响信号传导。