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鉴定人冠状病毒 OC43 感染细胞的免疫肽组谱,确定了季节性冠状病毒特异性的 CD4 T 细胞表位或与 SARS-CoV-2 交叉反应的表位。

Immunopeptidome profiling of human coronavirus OC43-infected cells identifies CD4 T-cell epitopes specific to seasonal coronaviruses or cross-reactive with SARS-CoV-2.

机构信息

Department of Pathology, Department of Biochemistry and Molecular Biotechnology, UMass Chan Medical School, Worcester Massachusetts, United States of America.

Mass Spectrometry Facility, UMass Chan Medical School, Shrewsbury Massachusetts, United States of America.

出版信息

PLoS Pathog. 2023 Jul 27;19(7):e1011032. doi: 10.1371/journal.ppat.1011032. eCollection 2023 Jul.

Abstract

Seasonal "common-cold" human coronaviruses are widely spread throughout the world and are mainly associated with mild upper respiratory tract infections. The emergence of highly pathogenic coronaviruses MERS-CoV, SARS-CoV, and most recently SARS-CoV-2 has prompted increased attention to coronavirus biology and immunopathology, but the T-cell response to seasonal coronaviruses remains largely uncharacterized. Here we report the repertoire of viral peptides that are naturally processed and presented upon infection of a model cell line with seasonal coronavirus OC43. We identified MHC-bound peptides derived from each of the viral structural proteins (spike, nucleoprotein, hemagglutinin-esterase, membrane, and envelope) as well as non-structural proteins nsp3, nsp5, nsp6, and nsp12. Eighty MHC-II bound peptides corresponding to 14 distinct OC43-derived epitopes were identified, including many at very high abundance within the overall MHC-II peptidome. Fewer and less abundant MHC-I bound OC43-derived peptides were observed, possibly due to MHC-I downregulation induced by OC43 infection. The MHC-II peptides elicited low-abundance recall T-cell responses in most donors tested. In vitro assays confirmed that the peptides were recognized by CD4+ T cells and identified the presenting HLA alleles. T-cell responses cross-reactive between OC43, SARS-CoV-2, and the other seasonal coronaviruses were confirmed in samples of peripheral blood and peptide-expanded T-cell lines. Among the validated epitopes, spike protein S903-917 presented by DPA101:03/DPB104:01 and S1085-1099 presented by DRB115:01 shared substantial homology to other human coronaviruses, including SARS-CoV-2, and were targeted by cross-reactive CD4 T cells. Nucleoprotein N54-68 and hemagglutinin-esterase HE128-142 presented by DRB115:01 and HE259-273 presented by DPA101:03/DPB104:01 are immunodominant epitopes with low coronavirus homology that are not cross-reactive with SARS-CoV-2. Overall, the set of naturally processed and presented OC43 epitopes comprise both OC43-specific and human coronavirus cross-reactive epitopes, which can be used to follow CD4 T-cell cross-reactivity after infection or vaccination, and to guide selection of epitopes for inclusion in pan-coronavirus vaccines.

摘要

季节性“普通感冒”人类冠状病毒在全球广泛传播,主要与轻度上呼吸道感染有关。高致病性冠状病毒 MERS-CoV、SARS-CoV 和最近的 SARS-CoV-2 的出现促使人们对冠状病毒生物学和免疫病理学的关注度增加,但季节性冠状病毒的 T 细胞反应仍在很大程度上未被描述。在这里,我们报告了在季节性冠状病毒 OC43 感染模型细胞系时自然加工和呈递的病毒肽库。我们鉴定了来自病毒结构蛋白(刺突、核蛋白、血凝素-酯酶、膜和包膜)以及非结构蛋白 nsp3、nsp5、nsp6 和 nsp12 的 MHC 结合肽。鉴定了 80 个 MHC-II 结合的肽,对应于 14 个不同的 OC43 衍生表位,其中包括在 MHC-II 肽组中大量存在的许多表位。观察到的 MHC-I 结合的 OC43 衍生肽较少且丰度较低,这可能是由于 OC43 感染诱导的 MHC-I 下调所致。在大多数测试的供体中,MHC-II 肽引发的 T 细胞反应丰度较低。体外测定证实,这些肽被 CD4+T 细胞识别,并鉴定了呈递 HLA 等位基因。在来自外周血和肽扩展 T 细胞系的样本中,证实了 OC43、SARS-CoV-2 和其他季节性冠状病毒之间存在交叉反应性的 T 细胞反应。在验证的表位中,由 DPA101:03/DPB104:01 呈递的刺突蛋白 S903-917 和由 DRB115:01 呈递的 S1085-1099 与其他人类冠状病毒(包括 SARS-CoV-2)具有高度同源性,并且被交叉反应性 CD4 T 细胞靶向。由 DRB115:01 呈递的核蛋白 N54-68 和血凝素-酯酶 HE128-142 以及由 DPA101:03/DPB104:01 呈递的 HE259-273 是免疫显性表位,与冠状病毒同源性低,与 SARS-CoV-2 无交叉反应性。总体而言,自然加工和呈递的 OC43 表位集包括 OC43 特异性和人类冠状病毒交叉反应性表位,可用于在感染或接种疫苗后跟踪 CD4 T 细胞交叉反应性,并指导用于泛冠状病毒疫苗的表位选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67f3/10409285/6bbefbbb80f0/ppat.1011032.g001.jpg

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