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用FcεRIγ重建的T细胞抗原受体/CD3ζ基因敲除小鼠中T细胞的发育与功能

Development and function of T cells in T cell antigen receptor/CD3 zeta knockout mice reconstituted with Fc epsilon RI gamma.

作者信息

Liu C P, Lin W J, Huang M, Kappler J W, Marrack P

机构信息

Department of Medicine, National Jewish Center for Immunology and Respiratory Medicine, Howard Hughes Medical Institute, Denver, CO 80206, USA.

出版信息

Proc Natl Acad Sci U S A. 1997 Jan 21;94(2):616-21. doi: 10.1073/pnas.94.2.616.

Abstract

Engagement of alpha-beta T cell receptors (TCRs) induces many events in the T cells bearing them. The proteins that transduce these signals to the inside of cells are the TCR-associated CD3 polypeptides and zeta-zeta or zeta-eta dimers. Previous experiments using knockout (KO) mice that lacked zeta (zeta KO) showed that zeta is required for good surface expression of TCRs on almost all T cells and for normal T cell development. Surprisingly, however, in zeta KO mice, a subset of T cells in the gut of both zeta KO and normal mice bore nearly normal levels of TCR on its surface. This was because zeta was replaced by the Fc epsilon RI gamma (FcR gamma). These cells were relatively nonreactive to stimuli via their TCRs. In addition, a previous report showed that zeta replacement by the FcR gamma chain also might occur on T cells in mice bearing tumors long term. Again, these T cells were nonreactive. To understand the consequences of zeta substitution by FcR gamma for T cell development and function in vivo, we produced zeta KO mice expressing FcR gamma in all of their T cells (FcR gamma TG zeta KO mice). In these mice, TCR expression on immature thymocytes was only slightly reduced compared with controls, and thymocyte selection occurred normally and gave rise to functional, mature T cells. Therefore, the nonreactivity of the FcR gamma + lymphocytes in the gut or in tumor-bearing mice must be caused by some other phenomenon. Unexpectedly, the TCR levels of mature T cells in FcR gamma TG zeta KO mice were lower than those of controls. This was particularly true for the CD4+ T cells. We conclude that FcR gamma can replace the functions of zeta in T cell development in vivo but that TCR/CD3 complexes associated with FcR gamma rather than zeta are less well expressed on cells. Also, these results revealed a difference in the regulation of expression of the TCR/CD3 complex on CD4+ and CD8+ T cells.

摘要

α-β T细胞受体(TCR)的激活会在携带该受体的T细胞中引发许多事件。将这些信号传导至细胞内部的蛋白质是与TCR相关的CD3多肽以及ζ-ζ或ζ-η二聚体。先前使用缺乏ζ链的敲除(KO)小鼠(ζ KO小鼠)进行的实验表明,ζ链对于几乎所有T细胞表面TCR的良好表达以及正常的T细胞发育都是必需的。然而,令人惊讶的是,在ζ KO小鼠中,ζ KO小鼠和正常小鼠肠道中的一部分T细胞表面TCR水平几乎正常。这是因为ζ链被FcεRIγ(FcRγ)所取代。这些细胞通过其TCR对刺激相对无反应。此外,先前的一份报告显示,长期携带肿瘤的小鼠的T细胞上也可能发生FcRγ链取代ζ链的情况。同样,这些T细胞也无反应。为了了解FcRγ取代ζ链对体内T细胞发育和功能的影响,我们培育了在所有T细胞中均表达FcRγ的ζ KO小鼠(FcRγ TG ζ KO小鼠)。在这些小鼠中,与对照组相比,未成熟胸腺细胞上的TCR表达仅略有降低,胸腺细胞选择正常进行,并产生了功能性的成熟T细胞。因此,肠道或荷瘤小鼠中FcRγ +淋巴细胞的无反应性必定是由其他某种现象引起的。出乎意料的是,FcRγ TG ζ KO小鼠中成熟T细胞的TCR水平低于对照组。CD4 + T细胞尤其如此。我们得出结论,FcRγ可以在体内T细胞发育中替代ζ链的功能,但与FcRγ而非ζ链相关的TCR / CD3复合物在细胞上的表达较差。此外,这些结果揭示了CD4 +和CD8 + T细胞上TCR / CD3复合物表达调控的差异。

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