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抗原决定簇的主要组织相容性复合体结合亲和力对于T细胞差异性分泌白细胞介素4/5或干扰素γ至关重要。

Major histocompatibility complex binding affinity of an antigenic determinant is crucial for the differential secretion of interleukin 4/5 or interferon gamma by T cells.

作者信息

Kumar V, Bhardwaj V, Soares L, Alexander J, Sette A, Sercarz E

机构信息

Department of Microbiology and Molecular Genetics, University of California, Los Angeles 90024-1489, USA.

出版信息

Proc Natl Acad Sci U S A. 1995 Oct 10;92(21):9510-4. doi: 10.1073/pnas.92.21.9510.

Abstract

Differential activation of CD4+ T-cell precursors in vivo leads to the development of effectors with unique patterns of lymphokine secretion. To investigate whether the differential pattern of lymphokine secretion is influenced by factors associated with either the display and/or recognition of the ligand, we have used a set of ligands with various class II binding affinities but unchanged T-cell specificity. The ligand that exhibited approximately 10,000-fold higher binding to I-Au considerably increased the frequency of interferon gamma-producing but not interleukin (IL) 4- or IL-5-secreting cells in vivo. Using an established ligand-specific, CD4+ T-cell clone secreting only IL-4, we also demonstrated that stimulation with the highest affinity ligand resulted in interferon gamma production in vitro. In contrast, ligands that demonstrated relatively lower class II binding induced only IL-4 secretion. These data suggest that the major histocompatibility complex binding affinity of antigenic determinants, leading to differential interactions at the T cell-antigen-presenting cell interface, can be crucial for the differential development of cytokine patterns in T cells.

摘要

体内CD4 + T细胞前体的差异激活导致具有独特淋巴因子分泌模式的效应细胞的发育。为了研究淋巴因子分泌的差异模式是否受与配体展示和/或识别相关的因素影响,我们使用了一组具有不同II类结合亲和力但T细胞特异性不变的配体。与I-Au结合力高约10,000倍的配体在体内显著增加了产生干扰素γ的细胞频率,但未增加分泌白细胞介素(IL)4或IL-5的细胞频率。使用一个既定的、仅分泌IL-4的配体特异性CD4 + T细胞克隆,我们还证明用最高亲和力的配体刺激可在体外诱导产生干扰素γ。相反,II类结合相对较低的配体仅诱导IL-4分泌。这些数据表明,抗原决定簇的主要组织相容性复合体结合亲和力,导致T细胞 - 抗原呈递细胞界面的差异相互作用,可能对T细胞中细胞因子模式的差异发育至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5ae/40831/3e11c74e9cb8/pnas01499-0093-a.jpg

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