Author
Listed:
- Yoshihiko Goto
(Kumamoto University
Kumamoto University)
- You Min Ahn
(La Trobe University
La Trobe University)
- Mako Toyoda
(Kumamoto University)
- Hiroshi Hamana
(University of Toyama)
- Yan Jin
(Kumamoto University)
- Yoshiki Aritsu
(Kumamoto University)
- Takeshi Nakama
(Kumamoto University)
- Yuka Tajima
(Kumamoto University
Kumamoto University)
- Janesha C. Maddumage
(La Trobe University
La Trobe University)
- Huanyu Li
(Kumamoto University)
- Mizuki Kitamatsu
(Kindai University)
- Hiroyuki Kishi
(University of Toyama)
- Akiko Yonekawa
(Kyushu University)
- Dhilshan Jayasinghe
(La Trobe University
La Trobe University)
- Nobuyuki Shimono
(Kyushu University)
- Yoji Nagasaki
(Kyushu Medical Center)
- Rumi Minami
(Kyushu Medical Center)
- Takashi Toya
(Komagome Hospital)
- Noritaka Sekiya
(Tokyo Metropolitan Cancer and Infectious Diseases Center Komagome Hospital
Institute of Science Tokyo)
- Yusuke Tomita
(Kumamoto University)
- Demetra S. M. Chatzileontiadou
(La Trobe University
La Trobe University
Monash University)
- Hirotomo Nakata
(Kumamoto University Hospital)
- So Nakagawa
(Tokai University School of Medicine)
- Takuro Sakagami
(Kumamoto University)
- Takamasa Ueno
(Kumamoto University)
- Stephanie Gras
(La Trobe University
La Trobe University
Monash University)
- Chihiro Motozono
(Kumamoto University)
Abstract
The emergence of SARS-CoV-2 Variants of Concern (VOC) is a major clinical threat; however, VOC remain susceptible to cytotoxic T lymphocyte (CTL) recognition. Therefore, it is crucial to identify potent CTL responses targeting conserved epitopes across VOCs. Here, we demonstrate that the nucleocapsid (N) protein induces efficient CTL responses in early pandemic COVID-19 convalescent donors. In the context of the HLA-A24-B52-C12 haplotype, prevalent in Japan, the KF9 peptide (N266-274: KAYNVTQAF) is immunodominant and restricted by HLA-C*12:02. KF9-specific T cells are cytotoxic and suppress viral replication of both the ancestral and multiple VOC SARS-CoV-2. KF9-specific CD8+ T cells maintain effector memory and terminally differentiated phenotypes for 12 months post-infection and proliferate rapidly upon recall. We also determine the structure of a TCR in the context of the HLA-C*12:02-KF9 complex, providing a prototype for the interaction of HLA-C with viral peptides. Surprisingly, despite the TCR’s high affinity, the CDR3β loop almost lacks contact with the KF9 peptide. These findings highlight the importance of conserved epitopes and the role of HLA-C molecules in controlling SARS-CoV-2 VOC.
Suggested Citation
Yoshihiko Goto & You Min Ahn & Mako Toyoda & Hiroshi Hamana & Yan Jin & Yoshiki Aritsu & Takeshi Nakama & Yuka Tajima & Janesha C. Maddumage & Huanyu Li & Mizuki Kitamatsu & Hiroyuki Kishi & Akiko Yon, 2025.
"Molecular basis of potent antiviral HLA-C-restricted CD8+ T cell response to an immunodominant SARS-CoV-2 nucleocapsid epitope,"
Nature Communications, Nature, vol. 16(1), pages 1-18, December.
Handle:
RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-025-63288-3
DOI: 10.1038/s41467-025-63288-3
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