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免疫的量子理论与免疫反应的白细胞介素-2依赖性负反馈调节

The quantal theory of immunity and the interleukin-2-dependent negative feedback regulation of the immune response.

作者信息

Smith Kendall A, Popmihajlov Zoran

机构信息

Department of Medicine, The Division of Immunology, Weill Medical College, Cornell University, New York, NY, USA.

出版信息

Immunol Rev. 2008 Aug;224:124-40. doi: 10.1111/j.1600-065X.2008.00654.x.

Abstract

The regulation of the tempo, magnitude, and duration of the immune response has been thought to reside solely with antigen for the past 50 years. However, with the discovery of the interleukins (ILs) 30 years ago, it became evident that these endogenous 'lymphocytotrophic hormones' provide the molecular mechanisms via classic hormone-receptor interactions. However, lacking in the hormonal regulatory capacity of the ILs were negative feedback mechanisms that functioned to switch off the positive driving force of the immune response, whether after antigen was cleared or when antigen persists, as with auto-antigens, tumor antigens, persistent infections, or allografts. Our recent experimental data, reviewed herein, exploring the T-cell antigen receptor (TCR) induction of the negative transcriptional regulator, forkhead box protein 3 (FOXP3), indicate that its expression is signaled by the T-cell growth factor IL-2. Once expressed, FOXP3 functions to restrict IL-2 expression in reaction to continued TCR stimulation. Thus, IL-2 regulates it own levels via a FOXP3-mediated negative feedback loop. In contrast, we found no evidence that FOXP3(+) cells actively suppress IL-2 expression, thereby failing to support the notion that such cells regulate potential effector cells.

摘要

在过去的50年里,免疫反应的速度、强度和持续时间的调节一直被认为完全取决于抗原。然而,30年前白细胞介素(ILs)的发现表明,这些内源性的“淋巴细胞营养激素”通过经典的激素-受体相互作用提供了分子机制。然而,白细胞介素缺乏负反馈机制,这种机制在抗原清除后或抗原持续存在时(如自身抗原、肿瘤抗原、持续性感染或同种异体移植),能够关闭免疫反应的正向驱动力。本文回顾了我们最近的实验数据,这些数据探索了负转录调节因子叉头框蛋白3(FOXP3)由T细胞抗原受体(TCR)诱导产生的情况,结果表明其表达由T细胞生长因子IL-2发出信号。一旦表达,FOXP3会在持续的TCR刺激下限制IL-2的表达。因此,IL-2通过FOXP3介导的负反馈回路调节自身水平。相比之下,我们没有发现证据表明FOXP3(+)细胞会主动抑制IL-2的表达,因此不支持此类细胞调节潜在效应细胞的观点。

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