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II类主要组织相容性复合体限制的细胞间相互作用对Ia非限制性原发性抗Qa-1细胞毒性T淋巴细胞反应的抑制作用。

Suppression of Ia-unrestricted primary anti-Qa-1 cytotoxic T lymphocyte responses by class II major histocompatibility complex-restricted cellular interactions.

作者信息

Huston D P, Tavana G

出版信息

J Immunol. 1987 May 1;138(9):2753-9.

PMID:3106487
Abstract

A model has been established for investigating the cellular interactions for the generation and regulation of primary cytotoxic T lymphocyte (CTL) responses to Qa-1 alloantigens. Although NZB anti-BALB/c one-way mixed leukocyte cultures (MLC) generate anti-Qa-1b CTL, anti-Qa-1 CTL responses are not generated during BALB/c anti-NZB one-way MLC or during two-way MLC with NZB and BALB/c spleen cells. However, depletion of L3T4+ cells from the spleens of BALB/c mice before two-way MLC with NZB spleen cells resulted in anti-Qa-1b CTL responses. Likewise, the addition of anti-L3T4 monoclonal antibody (mAb) or anti-I-Ad mAb to two-way MLC with NZB and BALB/c spleen cells resulted in the generation of anti-Qa-1b CTL. Conversely, anti-Lyt-2 mAb inhibited the generation of anti-Qa-1 CTL. These data indicate that class II major histocompatibility complex-restricted cellular interactions are capable of suppressing the generation of Ia-unrestricted anti-Qa-1 CTL responses by Lyt-2+ responder cells. This model provides a novel opportunity to both characterize the cellular interactions responsible for regulating primary CTL responses to the Qa/Tla-encoded class I molecule Qa-1, and determine the contribution of this L3T4+ Ts-dependent defect in NZB mice to the pathogenesis of autoimmunity.

摘要

已建立一个模型,用于研究针对Qa-1同种异体抗原产生和调节原发性细胞毒性T淋巴细胞(CTL)反应的细胞间相互作用。尽管NZB抗BALB/c单向混合淋巴细胞培养物(MLC)可产生抗Qa-1b CTL,但在BALB/c抗NZB单向MLC或NZB与BALB/c脾细胞的双向MLC过程中不会产生抗Qa-1 CTL反应。然而,在与NZB脾细胞进行双向MLC之前,从BALB/c小鼠脾脏中去除L3T4+细胞会导致抗Qa-1b CTL反应。同样,向NZB与BALB/c脾细胞的双向MLC中添加抗L3T4单克隆抗体(mAb)或抗I-Ad mAb会导致抗Qa-1b CTL的产生。相反,抗Lyt-2 mAb抑制抗Qa-1 CTL的产生。这些数据表明,II类主要组织相容性复合体限制的细胞间相互作用能够抑制Lyt-2+反应细胞产生Ia非限制的抗Qa-1 CTL反应。该模型为表征负责调节对Qa/Tla编码的I类分子Qa-1的原发性CTL反应的细胞间相互作用,以及确定NZB小鼠中这种L3T4+ Ts依赖性缺陷对自身免疫发病机制的贡献提供了一个新的机会。

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