肽- mhc I类四聚体复合物与抗cd3的竞争为肽结合TCR复合物的特异性提供了证据。

Cytometry Pub Date : 2000-12-01
T K Hoffmann, V S Donnenberg, U Friebe-Hoffmann, E M Meyer, C R Rinaldo, A B DeLeo, T L Whiteside, A D Donnenberg
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引用次数: 0

摘要

背景:主要组织相容性复合体(MHC)-肽四聚体复合体(四聚体)是检测和表征肽特异性T细胞的重要工具。由于这些细胞的频率通常很低,因此可能很难区分非特异性和特异性四聚体结合。方法:采用四色流式细胞术同时检测四聚体、CD3、CD8和CD14,研究MHC I类四聚体染色的敏感性和特异性。这是通过使用流感病毒基质蛋白肽GILGFVFTL (FLU)作为模型召回抗原和人类免疫缺陷病毒(HIV)逆转录酶肽ILKEPVHGV (HIV)作为模型新抗原来实现的。用四聚体对31例HLA-A2.1(+)和10例HLA-A2.1(-)健康人外周血单个核细胞(PBMC)进行染色。结果:检出下限约为1/ 8000。在HLA-A2(+) PMBC中,四聚体阳性CD8(+) T细胞的频率呈对数正态分布,流感高(1/910),HIV低(1/ 6067)。一种新的竞争试验,其中四聚体结合显示减少随后的抗cd3抗体染色,用于确认四聚体结合到t细胞受体(TCR)复合物的特异性。竞争分析通过评估几种抗CD3抗体得到验证,并显示在HLA-A2(-)受试者的PBMC中,假四聚体阳性事件(1/20,000)未能与CD3结合竞争。对于“召回”流感四聚体,竞争程度与频率成正比,表明选择了高亲和力的细胞。虽然CD3竞争也与四聚体染色强度高度相关,但竞争使得四聚体染色强度相对较高的假阳性病例得以识别。结论:数据表明,CD3结合的竞争可以确认四聚体与TCR结合的特异性,扩展了四聚体在肽特异性T淋巴细胞频率分析中的用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Competition of peptide-MHC class I tetrameric complexes with anti-CD3 provides evidence for specificity of peptide binding to the TCR complex.

Background: Major histocompatibility complex (MHC)-peptide tetrameric complexes (tetramers) are valuable tools for detecting and characterizing peptide-specific T cells. Because the frequency of these cells is generally very low, it may be difficult to discriminate between nonspecific and specific tetramer binding.

Methods: A four-color flow cytometric assay that simultaneously measures tetramer, CD3, CD8, and CD14 was used to investigate the sensitivity and specificity of MHC class I tetramer staining. This was accomplished by using the influenza virus matrix protein peptide, GILGFVFTL (FLU), as a model recall antigen and the human immunodeficiency virus (HIV) reverse transcriptase peptide, ILKEPVHGV (HIV), as a model novel antigen. Peripheral blood mononuclear cells (PBMC) from 31 HLA-A2.1(+) and 10 HLA-A2.1(-) healthy individuals were stained with the tetramers.

Results: The lower limit of detection was established at approximately 1/8,000. In HLA-A2(+) PMBC, frequencies of tetramer-positive CD8(+) T cells were log normally distributed and were high for FLU (1/910) but low for HIV (1/6,067). A novel competition assay, in which tetramer binding was shown to diminish subsequent staining with anti-CD3 antibody, was used to confirm the specificity of tetramer binding to the T-cell receptor (TCR) complex. The competition assay was validated by evaluating several anti-CD3 antibodies and showing that in PBMC from HLA-A2(-) subjects, spurious tetramer-positive events (1/20,000) failed to compete with CD3 binding. For the "recall" FLU tetramer, the degree of competition was proportional to the frequency, suggesting a selection of high avidity cells. Although CD3 competition was also highly correlated with the intensity of tetramer staining, competition allowed the identification of false positive cases with relatively high tetramer staining intensity.

Conclusion: The data indicate that competition of CD3 binding allows confirmation of the specificity of tetramer binding to the TCR, extending the usefulness of tetramers in the frequency analysis of peptide-specific T lymphocytes.

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