人滑膜γδ T细胞表面配体的检测

C. Collins, Y. Lui, A. M. Santos, B. Ballif, Anisha Mahalya Gogerly-Moragoda, H. Brouwer, R. Ross, K. Balagurunathan, Sumana Sharma, Gavin J. Wright, S. Davis, R. Budd
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引用次数: 4

摘要

TCR-γδ四聚体通过流式细胞术鉴定配体表达。TCR-γδ配体在活化的单核细胞或T细胞上诱导。生物信息学结合质谱分析产生了16个候选配体的重叠列表。缺乏对γδ T细胞配体的性质和生理调控的了解,极大地阻碍了对这些细胞功能的充分了解。我们开发了一种无偏倚的方法,通过从莱姆病患者的滑膜Vδ1 γδ T细胞克隆中产生可溶性TCR-γδ (sTCR-γδ)四聚体来鉴定人类γδ T细胞配体。sTCR-γδ用于流式细胞术,初步确定了人肿瘤细胞系和某些人原代细胞的配体表达谱。对多种肿瘤细胞系的分析显示,在几种上皮细胞或成纤维细胞来源的肿瘤细胞系中,配体的表达量很高,而造血来源的肿瘤细胞系中,配体的表达量很大程度上是缺失的。这允许使用来自每个肿瘤系的RNAseq数据进行基于生物信息学的候选配体鉴定。我们进一步观察到,尽管新鲜单核细胞和T细胞表达低至可忽略不计的TCR-γδ配体水平,但这些细胞的活化导致表面配体表达上调。单核细胞的配体上调部分依赖于IL-1β。然后用sTCR-γδ四聚体结合活化单核细胞裂解物的候选配体,并用质谱分析。表面TCR-γδ配体通过胰蛋白酶处理或去除糖胺聚糖消除,并通过抑制内质网-高尔基转运而受到抑制。特别有趣的是糖酵解的抑制也阻断了TCR-γδ配体的表达。这些发现证明了人滑膜Vδ1 γδ T细胞的配体表达谱以及调节其表达的生理机制。
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Detection of Cell Surface Ligands for Human Synovial γδ T Cells
Key Points TCR-γδ tetramer identified ligand expression by flow cytometry. TCR-γδ ligands were induced on activated monocytes or T cells. Bioinformatics combined with mass spectrometry produced an overlapping list of 16 candidate ligands. Visual Abstract Lack of understanding of the nature and physiological regulation of γδ T cell ligands has considerably hampered full understanding of the function of these cells. We developed an unbiased approach to identify human γδ T cells ligands by the production of a soluble TCR-γδ (sTCR-γδ) tetramer from a synovial Vδ1 γδ T cell clone from a Lyme arthritis patient. The sTCR-γδ was used in flow cytometry to initially define the spectrum of ligand expression by both human tumor cell lines and certain human primary cells. Analysis of diverse tumor cell lines revealed high ligand expression on several of epithelial or fibroblast origin, whereas those of hematopoietic origin were largely devoid of ligand. This allowed a bioinformatics-based identification of candidate ligands using RNAseq data from each tumor line. We further observed that whereas fresh monocytes and T cells expressed low to negligible levels of TCR-γδ ligands, activation of these cells resulted in upregulation of surface ligand expression. Ligand upregulation on monocytes was partly dependent upon IL-1β. The sTCR-γδ tetramer was then used to bind candidate ligands from lysates of activated monocytes and analyzed by mass spectrometry. Surface TCR-γδ ligand was eliminated by treatment with trypsin or removal of glycosaminoglycans, and also suppressed by inhibition of endoplasmic reticulum–Golgi transport. Of particular interest was that inhibition of glycolysis also blocked TCR-γδ ligand expression. These findings demonstrate the spectrum of ligand(s) expression for human synovial Vδ1 γδ T cells as well as the physiology that regulates their expression.
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