Weingarten-Gabbay Shira, Chen Da-Yuan, Sarkizova Siranush, Taylor Hannah B, Gentili Matteo, Pearlman Leah R, Bauer Matthew R, Rice Charles M, Clauser Karl R, Hacohen Nir, Carr Steven A, Abelin Jennifer G, Saeed Mohsan, Sabeti Pardis C
bioRxiv. 2023 Jun 1:2023.05.26.542482. doi: 10.1101/2023.05.26.542482.
Targeted synthetic vaccines have the potential to transform our response to viral outbreaks; yet the design of these vaccines requires a comprehensive knowledge of viral immunogens, including T-cell epitopes. Having previously mapped the SARS-CoV-2 HLA-I landscape, here we report viral peptides that are naturally processed and loaded onto HLA-II complexes in infected cells. We identified over 500 unique viral peptides from canonical proteins, as well as from overlapping internal open reading frames (ORFs), revealing, for the first time, the contribution of internal ORFs to the HLA-II peptide repertoire. Most HLA-II peptides co-localized with the known CD4+ T cell epitopes in COVID-19 patients. We also observed that two reported immunodominant regions in the SARS-CoV-2 membrane protein are formed at the level of HLA-II presentation. Overall, our analyses show that HLA-I and HLA-II pathways target distinct viral proteins, with the structural proteins accounting for most of the HLA-II peptidome and non-structural and non-canonical proteins accounting for the majority of the HLA-I peptidome. These findings highlight the need for a vaccine design that incorporates multiple viral elements harboring CD4+ and CD8+ T cell epitopes to maximize the vaccine effectiveness.
靶向合成疫苗有潜力改变我们应对病毒爆发的方式;然而,这些疫苗的设计需要全面了解病毒免疫原,包括T细胞表位。我们之前已经绘制了严重急性呼吸综合征冠状病毒2(SARS-CoV-2)的HLA-I图谱,在此我们报告在受感染细胞中自然加工并加载到HLA-II复合物上的病毒肽。我们从典型蛋白以及重叠的内部开放阅读框(ORF)中鉴定出500多种独特的病毒肽,首次揭示了内部ORF对HLA-II肽库的贡献。大多数HLA-II肽与新冠肺炎患者已知的CD4+T细胞表位共定位。我们还观察到,SARS-CoV-2膜蛋白中两个已报道的免疫显性区域在HLA-II呈递水平上形成。总体而言,我们的分析表明,HLA-I和HLA-II途径靶向不同的病毒蛋白,结构蛋白占HLA-II肽组的大部分,非结构蛋白和非典型蛋白占HLA-I肽组的大部分。这些发现凸显了疫苗设计需要纳入含有CD4+和CD8+T细胞表位的多种病毒元件,以最大限度提高疫苗效力。