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未经致敏的CD4 + T细胞在没有抗体的情况下赋予独特型特异性肿瘤抗性。

Naive CD4+ T cells confer idiotype-specific tumor resistance in the absence of antibodies.

作者信息

Bogen B, Munthe L, Sollien A, Hofgaard P, Omholt H, Dagnaes F, Dembic Z, Lauritzsen G F

机构信息

Institute of Immunology and Rheumatology, University of Oslo, Norway.

出版信息

Eur J Immunol. 1995 Nov;25(11):3079-86. doi: 10.1002/eji.1830251114.

Abstract

CD4+ T cells can recognize a processed idiotypic peptide derived from the mouse lambda 2(315) immunoglobulin light chain. The idiotypic peptide is presented on the I-E(d) class II major histocompatibility complex molecule. Mice made transgenic for a lambda 2(315)-specific alpha beta T cell receptor have been demonstrated to be specifically resistant against a tumor challenge with the MOPC315 (alpha,lambda 2(315)) plasmacytoma (Lauritzsen, G. F., Weiss, S., Dembic, Z. and Bogen, B., Proc. Natl. Acad. Sci. USA 1994, 91: 5700). That study, however, did not rule out a role of either anti-Id antibodies or T cells expressing nontransgenic specificities due to expression of endogenous T cell receptor (TcR) alpha chains. Also, the role of different T cell subsets in protection was unclear. To remove these ambiguities, we have now made the transgenic mice homozygous for the scid mutation, known to inhibit both Ig and TcR gene rearrangements. Such transgenic SCID mice lack B cells and antibodies while they still have plenty of CD4+ and CD4-8- cells expressing the transgenic alpha beta T cell receptor. The number of CD8+ T cell is dramatically reduced. Even so, transgenic SCID mice are protected against a challenge with MOPC315 plasmacytoma cells. Therefore, B cells, as well as novel T cell receptor specificities created by rearrangements of endogenous alpha-chain genes, are both dispensable for effective immunosurveillance in our system. Surprisingly, we found that transgenic CD8+ and CD4-8- cells are idiotype-specific and I-E(d) restricted. However, these T cell subsets are not required for resistance because adoptive transfer experiments demonstrated that highly purified transgenic SCID CD4+ cells suffice for tumor protection.

摘要

CD4 + T细胞能够识别源自小鼠λ2(315)免疫球蛋白轻链的经加工的独特型肽。该独特型肽呈递于I-E(d) II类主要组织相容性复合体分子上。已证明,转染了λ2(315)特异性αβT细胞受体的转基因小鼠对MOPC315(α,λ2(315))浆细胞瘤的肿瘤攻击具有特异性抗性(劳里茨森,G.F.,魏斯,S.,登比克,Z.和博根,B.,《美国国家科学院院刊》1994年,91: 5700)。然而,该研究并未排除抗独特型抗体或因内源性T细胞受体(TcR)α链表达而表达非转基因特异性的T细胞的作用。此外,不同T细胞亚群在保护中的作用尚不清楚。为消除这些歧义,我们现已培育出纯合scid突变的转基因小鼠,已知该突变会抑制Ig和TcR基因重排。此类转基因SCID小鼠缺乏B细胞和抗体,但仍有大量表达转基因αβT细胞受体的CD4 +和CD4 - 8 -细胞。CD8 + T细胞数量显著减少。即便如此,转基因SCID小鼠仍能抵御MOPC315浆细胞瘤细胞的攻击。因此,在我们的系统中,B细胞以及内源性α链基因重排产生的新型T细胞受体特异性对于有效的免疫监视均非必需。令人惊讶的是,我们发现转基因CD8 +和CD4 - 8 -细胞具有独特型特异性且受I-E(d)限制。然而,这些T细胞亚群并非抗性所必需,因为过继转移实验表明,高度纯化的转基因SCID CD4 +细胞足以提供肿瘤保护。

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