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人类CD4的第43位苯丙氨酸残基对于体内MHC II类限制性CD4单阳性T细胞谱系细胞的库发育和成熟至关重要。

Human CD4 residue Phe 43 is critical for repertoire development and maturation of MHC class II restricted CD4 single-positive T lineage cells in vivo.

作者信息

Sakihama T, Hunsicker M E, Hussey R E, Reinherz E L

机构信息

Laboratory of Immunobiology, Department of Cancer Immunology, Dana-Farber Cancer Institute, Department of Medicine, Harvard Medical School, Boston, USA.

出版信息

Eur J Immunol. 2000 Jan;30(1):279-90. doi: 10.1002/1521-4141(200001)30:1<279::AID-IMMU279>3.0.CO;2-5.

Abstract

To determine the functional significance of structural alteration of CD4-MHC class II interaction in vivo, two human (h)CD4-transgenic (tg) mice were established on a murine (m)CD4(-/-) H-2(b) background. The MHC class II binding-competent hCD4 (R240AhCD4) rescues the number and helper activity of hCD4(+)CD8(-) single-positive (SP) mature T cells in mCD4(-/-) mice. In contrast, the MHC class II binding-deficient F43I hCD4 mutant cannot facilitate normal differentiation of double-positive thymocytes to CD4(+)CD8(-) SP thymocytes. Hence, only 20 - 25% of CD4(+)CD8(-) SP T cells found in wild-type or R240A hCD4tg mice are generated, with resultant diminished helper responses. Differentiation of F43I hCD4 SP T cells is MHC class II but not class I dependent as demonstrated by crossing F43I hCD4tg mice onto MHC-deficient mice. These cells show a different pattern of TCR Valpha and Vbeta gene usage relative to comparable R240A hCD4 SP T cells from R240 AhCD4tg animals. Expression of activation markers including CD25 and CD69 on F43I hCD4 SP T cells suggests that autoreactive specificites may not have been eliminated intrathymically. Collectively, the results show that CD4-MHC class II interaction significantly influences intrathymic repertoire selection.

摘要

为了确定体内CD4与II类主要组织相容性复合体(MHC)相互作用结构改变的功能意义,在小鼠(m)CD4基因敲除(-/-)H-2(b)背景上建立了两只人(h)CD4转基因(tg)小鼠。具有II类MHC结合能力的hCD4(R240AhCD4)可挽救mCD4(-/-)小鼠中hCD4(+)CD8(-)单阳性(SP)成熟T细胞的数量和辅助活性。相比之下,缺乏II类MHC结合能力的F43I hCD4突变体不能促进双阳性胸腺细胞正常分化为CD4(+)CD8(-) SP胸腺细胞。因此,在野生型或R240A hCD4转基因小鼠中发现的CD4(+)CD8(-) SP T细胞只有20%-25%得以产生,导致辅助反应减弱。将F43I hCD4转基因小鼠与MHC缺陷小鼠杂交表明,F43I hCD4 SP T细胞的分化依赖于II类MHC而非I类MHC。相对于来自R240 AhCD4转基因动物的可比R240A hCD4 SP T细胞,这些细胞显示出不同的T细胞受体Vα和Vβ基因使用模式。F43I hCD4 SP T细胞上包括CD25和CD69在内的激活标志物表达表明,自身反应性特异性可能未在胸腺内被消除。总体而言,结果表明CD4与II类MHC的相互作用显著影响胸腺内库的选择。

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