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SARS-CoV-2-derived peptides define heterologous and COVID-19-induced T cell recognition.

Nature immunology (2020-10-02)
Annika Nelde, Tatjana Bilich, Jonas S Heitmann, Yacine Maringer, Helmut R Salih, Malte Roerden, Maren Lübke, Jens Bauer, Jonas Rieth, Marcel Wacker, Andreas Peter, Sebastian Hörber, Bjoern Traenkle, Philipp D Kaiser, Ulrich Rothbauer, Matthias Becker, Daniel Junker, Gérard Krause, Monika Strengert, Nicole Schneiderhan-Marra, Markus F Templin, Thomas O Joos, Daniel J Kowalewski, Vlatka Stos-Zweifel, Michael Fehr, Armin Rabsteyn, Valbona Mirakaj, Julia Karbach, Elke Jäger, Michael Graf, Lena-Christin Gruber, David Rachfalski, Beate Preuß, Ilona Hagelstein, Melanie Märklin, Tamam Bakchoul, Cécile Gouttefangeas, Oliver Kohlbacher, Reinhild Klein, Stefan Stevanović, Hans-Georg Rammensee, Juliane S Walz
ABSTRACT

T cell immunity is central for the control of viral infections. To characterize T cell immunity, but also for the development of vaccines, identification of exact viral T cell epitopes is fundamental. Here we identify and characterize multiple dominant and subdominant SARS-CoV-2 HLA class I and HLA-DR peptides as potential T cell epitopes in COVID-19 convalescent and unexposed individuals. SARS-CoV-2-specific peptides enabled detection of post-infectious T cell immunity, even in seronegative convalescent individuals. Cross-reactive SARS-CoV-2 peptides revealed pre-existing T cell responses in 81% of unexposed individuals and validated similarity with common cold coronaviruses, providing a functional basis for heterologous immunity in SARS-CoV-2 infection. Diversity of SARS-CoV-2 T cell responses was associated with mild symptoms of COVID-19, providing evidence that immunity requires recognition of multiple epitopes. Together, the proposed SARS-CoV-2 T cell epitopes enable identification of heterologous and post-infectious T cell immunity and facilitate development of diagnostic, preventive and therapeutic measures for COVID-19.

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ProClin 300, pkg of 50 mL, ProClin preservative for use in IVD manufacturing, CMIT/MIT 3 %