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Cytotoxicity of CD56(bright) NK Cells towards Autologous Activated CD4(+) T Cells Is Mediated through NKG2D, LFA-1 and TRAIL and Dampened via CD94/NKG2A

In mouse models of chronic inflammatory diseases, Natural Killer (NK) cells can play an immunoregulatory role by eliminating chronically activated leukocytes. Indirect evidence suggests that NK cells may also be immunoregulatory in humans. Two subsets of human NK cells can be phenotypically distingu...

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Autores principales: Nielsen, Natasja, Ødum, Niels, Ursø, Birgitte, Lanier, Lewis L., Spee, Pieter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3284517/
https://www.ncbi.nlm.nih.gov/pubmed/22384114
http://dx.doi.org/10.1371/journal.pone.0031959
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author Nielsen, Natasja
Ødum, Niels
Ursø, Birgitte
Lanier, Lewis L.
Spee, Pieter
author_facet Nielsen, Natasja
Ødum, Niels
Ursø, Birgitte
Lanier, Lewis L.
Spee, Pieter
author_sort Nielsen, Natasja
collection PubMed
description In mouse models of chronic inflammatory diseases, Natural Killer (NK) cells can play an immunoregulatory role by eliminating chronically activated leukocytes. Indirect evidence suggests that NK cells may also be immunoregulatory in humans. Two subsets of human NK cells can be phenotypically distinguished as CD16(+)CD56(dim) and CD16(dim/−)CD56(bright). An expansion in the CD56(bright) NK cell subset has been associated with clinical responses to therapy in various autoimmune diseases, suggesting an immunoregulatory role for this subset in vivo. Here we compared the regulation of activated human CD4(+) T cells by CD56(dim) and CD56(bright) autologous NK cells in vitro. Both subsets efficiently killed activated, but not resting, CD4(+) T cells. The activating receptor NKG2D, as well as the integrin LFA-1 and the TRAIL pathway, played important roles in this process. Degranulation by NK cells towards activated CD4(+) T cells was enhanced by IL-2, IL-15, IL-12+IL-18 and IFN-α. Interestingly, IL-7 and IL-21 stimulated degranulation by CD56(bright) NK cells but not by CD56(dim) NK cells. NK cell killing of activated CD4(+) T cells was suppressed by HLA-E on CD4(+) T cells, as blocking the interaction between HLA-E and the inhibitory CD94/NKG2A NK cell receptor enhanced NK cell degranulation. This study provides new insight into CD56(dim) and CD56(bright) NK cell-mediated elimination of activated autologous CD4(+) T cells, which potentially may provide an opportunity for therapeutic treatment of chronic inflammation.
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spelling pubmed-32845172012-03-01 Cytotoxicity of CD56(bright) NK Cells towards Autologous Activated CD4(+) T Cells Is Mediated through NKG2D, LFA-1 and TRAIL and Dampened via CD94/NKG2A Nielsen, Natasja Ødum, Niels Ursø, Birgitte Lanier, Lewis L. Spee, Pieter PLoS One Research Article In mouse models of chronic inflammatory diseases, Natural Killer (NK) cells can play an immunoregulatory role by eliminating chronically activated leukocytes. Indirect evidence suggests that NK cells may also be immunoregulatory in humans. Two subsets of human NK cells can be phenotypically distinguished as CD16(+)CD56(dim) and CD16(dim/−)CD56(bright). An expansion in the CD56(bright) NK cell subset has been associated with clinical responses to therapy in various autoimmune diseases, suggesting an immunoregulatory role for this subset in vivo. Here we compared the regulation of activated human CD4(+) T cells by CD56(dim) and CD56(bright) autologous NK cells in vitro. Both subsets efficiently killed activated, but not resting, CD4(+) T cells. The activating receptor NKG2D, as well as the integrin LFA-1 and the TRAIL pathway, played important roles in this process. Degranulation by NK cells towards activated CD4(+) T cells was enhanced by IL-2, IL-15, IL-12+IL-18 and IFN-α. Interestingly, IL-7 and IL-21 stimulated degranulation by CD56(bright) NK cells but not by CD56(dim) NK cells. NK cell killing of activated CD4(+) T cells was suppressed by HLA-E on CD4(+) T cells, as blocking the interaction between HLA-E and the inhibitory CD94/NKG2A NK cell receptor enhanced NK cell degranulation. This study provides new insight into CD56(dim) and CD56(bright) NK cell-mediated elimination of activated autologous CD4(+) T cells, which potentially may provide an opportunity for therapeutic treatment of chronic inflammation. Public Library of Science 2012-02-22 /pmc/articles/PMC3284517/ /pubmed/22384114 http://dx.doi.org/10.1371/journal.pone.0031959 Text en Nielsen et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Nielsen, Natasja
Ødum, Niels
Ursø, Birgitte
Lanier, Lewis L.
Spee, Pieter
Cytotoxicity of CD56(bright) NK Cells towards Autologous Activated CD4(+) T Cells Is Mediated through NKG2D, LFA-1 and TRAIL and Dampened via CD94/NKG2A
title Cytotoxicity of CD56(bright) NK Cells towards Autologous Activated CD4(+) T Cells Is Mediated through NKG2D, LFA-1 and TRAIL and Dampened via CD94/NKG2A
title_full Cytotoxicity of CD56(bright) NK Cells towards Autologous Activated CD4(+) T Cells Is Mediated through NKG2D, LFA-1 and TRAIL and Dampened via CD94/NKG2A
title_fullStr Cytotoxicity of CD56(bright) NK Cells towards Autologous Activated CD4(+) T Cells Is Mediated through NKG2D, LFA-1 and TRAIL and Dampened via CD94/NKG2A
title_full_unstemmed Cytotoxicity of CD56(bright) NK Cells towards Autologous Activated CD4(+) T Cells Is Mediated through NKG2D, LFA-1 and TRAIL and Dampened via CD94/NKG2A
title_short Cytotoxicity of CD56(bright) NK Cells towards Autologous Activated CD4(+) T Cells Is Mediated through NKG2D, LFA-1 and TRAIL and Dampened via CD94/NKG2A
title_sort cytotoxicity of cd56(bright) nk cells towards autologous activated cd4(+) t cells is mediated through nkg2d, lfa-1 and trail and dampened via cd94/nkg2a
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3284517/
https://www.ncbi.nlm.nih.gov/pubmed/22384114
http://dx.doi.org/10.1371/journal.pone.0031959
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