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Surface NKG2C Identifies Differentiated αβT-Cell Clones Expanded in Peripheral Blood

T cells that express CD56 in peripheral blood of healthy humans represent a heterogeneous and poorly studied subset. In this work, we analyzed this subset for NKG2C expression. In both CD56(+) and CD56(−) subsets most of the NKG2C(+) T cells had a phenotype of highly differentiated CD8(+) TEMRA cell...

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Autores principales: Kovalenko, Elena I., Zvyagin, Ivan V., Streltsova, Maria A., Mikelov, Artem I., Erokhina, Sofya A., Telford, William G., Sapozhnikov, Alexander M., Lebedev, Yury B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7921799/
https://www.ncbi.nlm.nih.gov/pubmed/33664730
http://dx.doi.org/10.3389/fimmu.2020.613882
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author Kovalenko, Elena I.
Zvyagin, Ivan V.
Streltsova, Maria A.
Mikelov, Artem I.
Erokhina, Sofya A.
Telford, William G.
Sapozhnikov, Alexander M.
Lebedev, Yury B.
author_facet Kovalenko, Elena I.
Zvyagin, Ivan V.
Streltsova, Maria A.
Mikelov, Artem I.
Erokhina, Sofya A.
Telford, William G.
Sapozhnikov, Alexander M.
Lebedev, Yury B.
author_sort Kovalenko, Elena I.
collection PubMed
description T cells that express CD56 in peripheral blood of healthy humans represent a heterogeneous and poorly studied subset. In this work, we analyzed this subset for NKG2C expression. In both CD56(+) and CD56(−) subsets most of the NKG2C(+) T cells had a phenotype of highly differentiated CD8(+) TEMRA cells. The CD56(+)NKG2C(+) T cells also expressed a number of NK cell receptors, such as NKG2D, CD16, KIR2DL2/DL3, and maturation marker CD57 more often than the CD56(−)NKG2C(+)CD3(+) cells. TCR β-chain repertoire of the CD3(+)CD56(+)NKG2C(+) cell fraction was limited by the prevalence of one or several clonotypes which can be found within the most abundant clonotypes in total or CD8(+) T cell fraction TCRβ repertoire. Thus, NKG2C expression in highly differentiated CD56(+) T cells was associated with the most expanded αβ T cell clones. NKG2C(+) T cells produced almost no IFN-γ in response to stimulation with HCMV pp65-derived peptides. This may be partially due to the high content of CD45RA(+)CD57(+) cells in the fraction. CD3(+)NKG2C(+) cells showed signs of activation, and the frequency of this T-cell subset in HCMV-positive individuals was positively correlated with the frequency of NKG2C(+) NK cells that may imply a coordinated in a certain extent development of the NKG2C(+) T and NK cell subsets under HCMV infection.
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spelling pubmed-79217992021-03-03 Surface NKG2C Identifies Differentiated αβT-Cell Clones Expanded in Peripheral Blood Kovalenko, Elena I. Zvyagin, Ivan V. Streltsova, Maria A. Mikelov, Artem I. Erokhina, Sofya A. Telford, William G. Sapozhnikov, Alexander M. Lebedev, Yury B. Front Immunol Immunology T cells that express CD56 in peripheral blood of healthy humans represent a heterogeneous and poorly studied subset. In this work, we analyzed this subset for NKG2C expression. In both CD56(+) and CD56(−) subsets most of the NKG2C(+) T cells had a phenotype of highly differentiated CD8(+) TEMRA cells. The CD56(+)NKG2C(+) T cells also expressed a number of NK cell receptors, such as NKG2D, CD16, KIR2DL2/DL3, and maturation marker CD57 more often than the CD56(−)NKG2C(+)CD3(+) cells. TCR β-chain repertoire of the CD3(+)CD56(+)NKG2C(+) cell fraction was limited by the prevalence of one or several clonotypes which can be found within the most abundant clonotypes in total or CD8(+) T cell fraction TCRβ repertoire. Thus, NKG2C expression in highly differentiated CD56(+) T cells was associated with the most expanded αβ T cell clones. NKG2C(+) T cells produced almost no IFN-γ in response to stimulation with HCMV pp65-derived peptides. This may be partially due to the high content of CD45RA(+)CD57(+) cells in the fraction. CD3(+)NKG2C(+) cells showed signs of activation, and the frequency of this T-cell subset in HCMV-positive individuals was positively correlated with the frequency of NKG2C(+) NK cells that may imply a coordinated in a certain extent development of the NKG2C(+) T and NK cell subsets under HCMV infection. Frontiers Media S.A. 2021-02-16 /pmc/articles/PMC7921799/ /pubmed/33664730 http://dx.doi.org/10.3389/fimmu.2020.613882 Text en Copyright © 2021 Kovalenko, Zvyagin, Streltsova, Mikelov, Erokhina, Telford, Sapozhnikov and Lebedev http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Kovalenko, Elena I.
Zvyagin, Ivan V.
Streltsova, Maria A.
Mikelov, Artem I.
Erokhina, Sofya A.
Telford, William G.
Sapozhnikov, Alexander M.
Lebedev, Yury B.
Surface NKG2C Identifies Differentiated αβT-Cell Clones Expanded in Peripheral Blood
title Surface NKG2C Identifies Differentiated αβT-Cell Clones Expanded in Peripheral Blood
title_full Surface NKG2C Identifies Differentiated αβT-Cell Clones Expanded in Peripheral Blood
title_fullStr Surface NKG2C Identifies Differentiated αβT-Cell Clones Expanded in Peripheral Blood
title_full_unstemmed Surface NKG2C Identifies Differentiated αβT-Cell Clones Expanded in Peripheral Blood
title_short Surface NKG2C Identifies Differentiated αβT-Cell Clones Expanded in Peripheral Blood
title_sort surface nkg2c identifies differentiated αβt-cell clones expanded in peripheral blood
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7921799/
https://www.ncbi.nlm.nih.gov/pubmed/33664730
http://dx.doi.org/10.3389/fimmu.2020.613882
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