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Expansion of myeloid‐derived suppressor cells with aging in the bone marrow of mice through a NF‐κB‐dependent mechanism

With aging, there is progressive loss of tissue homeostasis and functional reserve, leading to an impaired response to stress and an increased risk of morbidity and mortality. A key mediator of the cellular response to damage and stress is the transcription factor NF‐κB. We demonstrated previously t...

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Autores principales: Flores, Rafael R., Clauson, Cheryl L., Cho, Joonseok, Lee, Byeong‐Chel, McGowan, Sara J., Baker, Darren J., Niedernhofer, Laura J., Robbins, Paul D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5418207/
https://www.ncbi.nlm.nih.gov/pubmed/28229533
http://dx.doi.org/10.1111/acel.12571
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author Flores, Rafael R.
Clauson, Cheryl L.
Cho, Joonseok
Lee, Byeong‐Chel
McGowan, Sara J.
Baker, Darren J.
Niedernhofer, Laura J.
Robbins, Paul D.
author_facet Flores, Rafael R.
Clauson, Cheryl L.
Cho, Joonseok
Lee, Byeong‐Chel
McGowan, Sara J.
Baker, Darren J.
Niedernhofer, Laura J.
Robbins, Paul D.
author_sort Flores, Rafael R.
collection PubMed
description With aging, there is progressive loss of tissue homeostasis and functional reserve, leading to an impaired response to stress and an increased risk of morbidity and mortality. A key mediator of the cellular response to damage and stress is the transcription factor NF‐κB. We demonstrated previously that NF‐κB transcriptional activity is upregulated in tissues from both natural aged mice and in a mouse model of a human progeroid syndrome caused by defective repair of DNA damage (ERCC1‐deficient mice). We also demonstrated that genetic reduction in the level of the NF‐κB subunit p65(RelA) in the Ercc1 (−/∆) progeroid mouse model of accelerated aging delayed the onset of age‐related pathology including muscle wasting, osteoporosis, and intervertebral disk degeneration. Here, we report that the largest fraction of NF‐κB ‐expressing cells in the bone marrow (BM) of aged (>2 year old) mice (C57BL/6‐NF‐κB(EGFP) reporter mice) are Gr‐1(+)CD11b(+)myeloid‐derived suppressor cells (MDSCs). There was a significant increase in the overall percentage of MDSC present in the BM of aged animals compared with young, a trend also observed in the spleen. However, the function of these cells appears not to be compromised in aged mice. A similar increase of MDSC was observed in BM of progeroid Ercc1 (−/∆) and BubR1 (H/H) mice. The increase in MDSC in Ercc1 (−/∆) mice was abrogated by heterozygosity in the p65/RelA subunit of NF‐κB. These results suggest that NF‐κB activation with aging, at least in part, drives an increase in the percentage of MDSCs, a cell type able to suppress immune cell responses.
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spelling pubmed-54182072017-06-01 Expansion of myeloid‐derived suppressor cells with aging in the bone marrow of mice through a NF‐κB‐dependent mechanism Flores, Rafael R. Clauson, Cheryl L. Cho, Joonseok Lee, Byeong‐Chel McGowan, Sara J. Baker, Darren J. Niedernhofer, Laura J. Robbins, Paul D. Aging Cell Original Articles With aging, there is progressive loss of tissue homeostasis and functional reserve, leading to an impaired response to stress and an increased risk of morbidity and mortality. A key mediator of the cellular response to damage and stress is the transcription factor NF‐κB. We demonstrated previously that NF‐κB transcriptional activity is upregulated in tissues from both natural aged mice and in a mouse model of a human progeroid syndrome caused by defective repair of DNA damage (ERCC1‐deficient mice). We also demonstrated that genetic reduction in the level of the NF‐κB subunit p65(RelA) in the Ercc1 (−/∆) progeroid mouse model of accelerated aging delayed the onset of age‐related pathology including muscle wasting, osteoporosis, and intervertebral disk degeneration. Here, we report that the largest fraction of NF‐κB ‐expressing cells in the bone marrow (BM) of aged (>2 year old) mice (C57BL/6‐NF‐κB(EGFP) reporter mice) are Gr‐1(+)CD11b(+)myeloid‐derived suppressor cells (MDSCs). There was a significant increase in the overall percentage of MDSC present in the BM of aged animals compared with young, a trend also observed in the spleen. However, the function of these cells appears not to be compromised in aged mice. A similar increase of MDSC was observed in BM of progeroid Ercc1 (−/∆) and BubR1 (H/H) mice. The increase in MDSC in Ercc1 (−/∆) mice was abrogated by heterozygosity in the p65/RelA subunit of NF‐κB. These results suggest that NF‐κB activation with aging, at least in part, drives an increase in the percentage of MDSCs, a cell type able to suppress immune cell responses. John Wiley and Sons Inc. 2017-02-23 2017-06 /pmc/articles/PMC5418207/ /pubmed/28229533 http://dx.doi.org/10.1111/acel.12571 Text en © 2017 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Flores, Rafael R.
Clauson, Cheryl L.
Cho, Joonseok
Lee, Byeong‐Chel
McGowan, Sara J.
Baker, Darren J.
Niedernhofer, Laura J.
Robbins, Paul D.
Expansion of myeloid‐derived suppressor cells with aging in the bone marrow of mice through a NF‐κB‐dependent mechanism
title Expansion of myeloid‐derived suppressor cells with aging in the bone marrow of mice through a NF‐κB‐dependent mechanism
title_full Expansion of myeloid‐derived suppressor cells with aging in the bone marrow of mice through a NF‐κB‐dependent mechanism
title_fullStr Expansion of myeloid‐derived suppressor cells with aging in the bone marrow of mice through a NF‐κB‐dependent mechanism
title_full_unstemmed Expansion of myeloid‐derived suppressor cells with aging in the bone marrow of mice through a NF‐κB‐dependent mechanism
title_short Expansion of myeloid‐derived suppressor cells with aging in the bone marrow of mice through a NF‐κB‐dependent mechanism
title_sort expansion of myeloid‐derived suppressor cells with aging in the bone marrow of mice through a nf‐κb‐dependent mechanism
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5418207/
https://www.ncbi.nlm.nih.gov/pubmed/28229533
http://dx.doi.org/10.1111/acel.12571
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