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自身免疫性非肥胖糖尿病小鼠的胸腺T细胞无反应性是由p21ras激活途径的T细胞受体调节缺陷介导的。

Thymic T cell anergy in autoimmune nonobese diabetic mice is mediated by deficient T cell receptor regulation of the pathway of p21ras activation.

作者信息

Rapoport M J, Lazarus A H, Jaramillo A, Speck E, Delovitch T L

机构信息

Banting and Best Department of Medical Research, University of Toronto, Ontario, Canada.

出版信息

J Exp Med. 1993 Apr 1;177(4):1221-6. doi: 10.1084/jem.177.4.1221.

Abstract

Thymic T cell anergy, as manifested by thymocyte proliferative unresponsiveness to antigens expressed in the thymic environment, is commonly believed to mediate the acquisition of immunological self-tolerance. However, we previously found that thymic T cell anergy may lead to the breakdown of tolerance and predispose to autoimmunity in nonobese diabetic (NOD) mice. Here, we show that NOD thymic T cell anergy, as revealed by proliferative unresponsiveness in vitro after stimulation through the T cell receptor (TCR), is associated with defective TCR-mediated signal transduction along the PKC/p21ras/p42mapk pathway of T cell activation. PKC activity is reduced in NOD thymocytes. Activation of p21ras is deficient in quiescent and stimulated NOD T cells, and this is correlated with a significant reduction in the tyrosine phosphorylation of p42mapk, a serine/threonine kinase active downstream of p21ras. Treatment of NOD T cells with a phorbol ester not only enhances their p21ras activity and p42mapk tyrosine phosphorylation but also restores their proliferative responsiveness. Since p42mapk activity is required for progression through to S phase of the cell cycle, our data suggest that reduced tyrosine phosphorylation of p42mapk in stimulated NOD T cells may abrogate its activity and elicit the proliferative unresponsiveness of these cells.

摘要

胸腺T细胞无能表现为胸腺细胞对胸腺环境中表达的抗原增殖无反应,通常认为它介导了免疫自身耐受性的获得。然而,我们先前发现胸腺T细胞无能可能导致耐受性的破坏,并使非肥胖糖尿病(NOD)小鼠易患自身免疫性疾病。在此,我们表明,通过T细胞受体(TCR)刺激后体外增殖无反应所揭示的NOD胸腺T细胞无能,与T细胞激活的PKC/p21ras/p42mapk途径中TCR介导的信号转导缺陷有关。NOD胸腺细胞中PKC活性降低。静止和受刺激的NOD T细胞中p21ras的激活不足,这与p21ras下游活性丝氨酸/苏氨酸激酶p42mapk的酪氨酸磷酸化显著降低相关。用佛波酯处理NOD T细胞不仅增强了它们的p21ras活性和p42mapk酪氨酸磷酸化,还恢复了它们的增殖反应性。由于p42mapk活性是细胞周期进展到S期所必需的,我们的数据表明,受刺激的NOD T细胞中p42mapk酪氨酸磷酸化的降低可能消除其活性,并引发这些细胞的增殖无反应。

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