表位
CD8型
生物
病毒学
细胞毒性T细胞
乙型肝炎病毒
CD38
T细胞
免疫学
抗原
病毒载量
病毒
免疫系统
细胞生物学
体外
干细胞
生物化学
川地34
作者
Anita Schuch,Elahe Salimi Alizei,Kathrin Heim,Dominik Wieland,Muthamia M. Kiraithe,Janine Kemming,Sian Llewellyn‐Lacey,Özlem Soğukpınar,Yi Ni,Stephan Urban,Peter Jan Zimmermann,Michael Nassal,Florian Emmerich,David A. Price,Bertram Bengsch,Hendrik Luxenburger,Christoph Neumann‐Haefelin,Maike Hofmann,Robert Thimme
出处
期刊:Gut
[BMJ]
日期:2019-01-08
卷期号:68 (5): 905-915
被引量:140
标识
DOI:10.1136/gutjnl-2018-316641
摘要
Objective A hallmark of chronic HBV (cHBV) infection is the presence of impaired HBV-specific CD8+ T cell responses. Functional T cell exhaustion induced by persistent antigen stimulation is considered a major mechanism underlying this impairment. However, due to their low frequencies in chronic infection, it is currently unknown whether HBV-specific CD8+ T cells targeting different epitopes are similarly impaired and share molecular profiles indicative of T cell exhaustion. Design By applying peptide-loaded MHC I tetramer-based enrichment, we could detect HBV-specific CD8+ T cells targeting epitopes in the HBV core and the polymerase proteins in the majority of 85 tested cHBV patients with low viral loads. Lower detection rates were obtained for envelope-specific CD8+ T cells. Subsequently, we performed phenotypic and functional in-depth analyses. Results HBV-specific CD8+ T cells are not terminally exhausted but rather exhibit a memory-like phenotype in patients with low viral load possibly reflecting weak ongoing cognate antigen recognition. Moreover, HBV-specific CD8+ T cells targeting core versus polymerase epitopes significantly differed in frequency, phenotype and function. In particular, in comparison with core-specific CD8+ T cells, a higher frequency of polymerase-specific CD8+ T cells expressed CD38, KLRG1 and Eomes accompanied by low T-bet expression and downregulated CD127 indicative of a more severe T cell exhaustion. In addition, polymerase-specific CD8+ T cells exhibited a reduced expansion capacity that was linked to a dysbalanced TCF1/BCL2 expression. Conclusions Overall, the molecular mechanisms underlying impaired T cell responses differ with respect to the targeted HBV antigens. These results have potential implications for immunotherapeutic approaches in HBV cure.
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