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Endogenously Expressed Antigens Bind Mammalian RNA via Cationic Domains that Enhance Priming of Effector CD8 T Cells by DNA Vaccination

Hepatitis B virus (HBV) core (HBV-C) antigens with homologous or heterologous HIV-tat48-57-like (HBV-C149tat) cationic domains non-specifically bind cellular RNA in vector-transfected cells. Here, we investigated whether RNA-binding to cationic domains influences the immunogenicity of endogenously e...

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Autores principales: Krieger, Jana, Riedl, Petra, Stifter, Katja, Roman-Sosa, Gleyder, Seufferlein, Thomas, Wagner, Martin, Schirmbeck, Reinhold
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6403493/
https://www.ncbi.nlm.nih.gov/pubmed/30713086
http://dx.doi.org/10.1016/j.ymthe.2019.01.011
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author Krieger, Jana
Riedl, Petra
Stifter, Katja
Roman-Sosa, Gleyder
Seufferlein, Thomas
Wagner, Martin
Schirmbeck, Reinhold
author_facet Krieger, Jana
Riedl, Petra
Stifter, Katja
Roman-Sosa, Gleyder
Seufferlein, Thomas
Wagner, Martin
Schirmbeck, Reinhold
author_sort Krieger, Jana
collection PubMed
description Hepatitis B virus (HBV) core (HBV-C) antigens with homologous or heterologous HIV-tat48-57-like (HBV-C149tat) cationic domains non-specifically bind cellular RNA in vector-transfected cells. Here, we investigated whether RNA-binding to cationic domains influences the immunogenicity of endogenously expressed antigens delivered by DNA vaccination. We initially evaluated induction of HBV-C (K(b)/C93)-specific CD8(+) T cell responses in C57BL/6J (B6) and 1.4HBV-S(mut) transgenic (tg) mice that harbor a replicating HBV genome in hepatocytes by DNA immunization. RNA-binding HBV-C and HBV-C149tat antigens moderately enhanced K(b)/C93-specific CD8(+) T cells in B6 mice as compared with RNA-free HBV-C149 antigen (lacking cationic domains). However, only the RNA-binding antigens elicited K(b)/C93-specific CD8(+) T cells that inhibited HBV replication in 1.4HBV-S(mut) tg mice. Moreover, RNA-binding to designer antigens, which express a K(b)/p15E epitope from an endogenous murine leukemia virus-derived tumor-specific gp70 protein, was crucial to prime tumor-rejecting effector CD8(+) T cells in B6 mice. Antigen-bound endogenous RNAs function as a Toll-like receptor 7 (TLR-7) ligand and stimulated priming of K(b)/p15E-specific CD8(+) T cells in B6, but not TLR-7(−/−), mice. Antigen-bound cellular RNAs thus function as an endogenous natural adjuvant in in vivo vector-transfected cells, and thus are an attractive tool to induce and/or enhance effector CD8(+) T cell responses directed against chronic viral infections or tumor self-antigens by DNA vaccination.
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spelling pubmed-64034932020-03-06 Endogenously Expressed Antigens Bind Mammalian RNA via Cationic Domains that Enhance Priming of Effector CD8 T Cells by DNA Vaccination Krieger, Jana Riedl, Petra Stifter, Katja Roman-Sosa, Gleyder Seufferlein, Thomas Wagner, Martin Schirmbeck, Reinhold Mol Ther Original Article Hepatitis B virus (HBV) core (HBV-C) antigens with homologous or heterologous HIV-tat48-57-like (HBV-C149tat) cationic domains non-specifically bind cellular RNA in vector-transfected cells. Here, we investigated whether RNA-binding to cationic domains influences the immunogenicity of endogenously expressed antigens delivered by DNA vaccination. We initially evaluated induction of HBV-C (K(b)/C93)-specific CD8(+) T cell responses in C57BL/6J (B6) and 1.4HBV-S(mut) transgenic (tg) mice that harbor a replicating HBV genome in hepatocytes by DNA immunization. RNA-binding HBV-C and HBV-C149tat antigens moderately enhanced K(b)/C93-specific CD8(+) T cells in B6 mice as compared with RNA-free HBV-C149 antigen (lacking cationic domains). However, only the RNA-binding antigens elicited K(b)/C93-specific CD8(+) T cells that inhibited HBV replication in 1.4HBV-S(mut) tg mice. Moreover, RNA-binding to designer antigens, which express a K(b)/p15E epitope from an endogenous murine leukemia virus-derived tumor-specific gp70 protein, was crucial to prime tumor-rejecting effector CD8(+) T cells in B6 mice. Antigen-bound endogenous RNAs function as a Toll-like receptor 7 (TLR-7) ligand and stimulated priming of K(b)/p15E-specific CD8(+) T cells in B6, but not TLR-7(−/−), mice. Antigen-bound cellular RNAs thus function as an endogenous natural adjuvant in in vivo vector-transfected cells, and thus are an attractive tool to induce and/or enhance effector CD8(+) T cell responses directed against chronic viral infections or tumor self-antigens by DNA vaccination. American Society of Gene & Cell Therapy 2019-03-06 2019-01-22 /pmc/articles/PMC6403493/ /pubmed/30713086 http://dx.doi.org/10.1016/j.ymthe.2019.01.011 Text en © 2019 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Article
Krieger, Jana
Riedl, Petra
Stifter, Katja
Roman-Sosa, Gleyder
Seufferlein, Thomas
Wagner, Martin
Schirmbeck, Reinhold
Endogenously Expressed Antigens Bind Mammalian RNA via Cationic Domains that Enhance Priming of Effector CD8 T Cells by DNA Vaccination
title Endogenously Expressed Antigens Bind Mammalian RNA via Cationic Domains that Enhance Priming of Effector CD8 T Cells by DNA Vaccination
title_full Endogenously Expressed Antigens Bind Mammalian RNA via Cationic Domains that Enhance Priming of Effector CD8 T Cells by DNA Vaccination
title_fullStr Endogenously Expressed Antigens Bind Mammalian RNA via Cationic Domains that Enhance Priming of Effector CD8 T Cells by DNA Vaccination
title_full_unstemmed Endogenously Expressed Antigens Bind Mammalian RNA via Cationic Domains that Enhance Priming of Effector CD8 T Cells by DNA Vaccination
title_short Endogenously Expressed Antigens Bind Mammalian RNA via Cationic Domains that Enhance Priming of Effector CD8 T Cells by DNA Vaccination
title_sort endogenously expressed antigens bind mammalian rna via cationic domains that enhance priming of effector cd8 t cells by dna vaccination
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6403493/
https://www.ncbi.nlm.nih.gov/pubmed/30713086
http://dx.doi.org/10.1016/j.ymthe.2019.01.011
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