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Long Non-Coding RNA Hotairm1 Promotes S100A9 Support of MDSC Expansion during Sepsis

Myeloid-derived suppressor cells (MDSCs) expand during mouse and human sepsis, but the mechanism responsible for this is unclear. We previously reported that nuclear transport of S100A9 protein programs Gr1(+)CD11b(+) myeloid precursors into MDSCs in septic mice. Here, we show that long non-coding R...

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Autores principales: Alkhateeb, Tuqa, Bah, Isatou, Kumbhare, Ajinkya, Youssef, Dima, Yao, Zhi Q, McCall, Charles E, Gazzar, Mohamed El
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7744002/
https://www.ncbi.nlm.nih.gov/pubmed/33335790
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author Alkhateeb, Tuqa
Bah, Isatou
Kumbhare, Ajinkya
Youssef, Dima
Yao, Zhi Q
McCall, Charles E
Gazzar, Mohamed El
author_facet Alkhateeb, Tuqa
Bah, Isatou
Kumbhare, Ajinkya
Youssef, Dima
Yao, Zhi Q
McCall, Charles E
Gazzar, Mohamed El
author_sort Alkhateeb, Tuqa
collection PubMed
description Myeloid-derived suppressor cells (MDSCs) expand during mouse and human sepsis, but the mechanism responsible for this is unclear. We previously reported that nuclear transport of S100A9 protein programs Gr1(+)CD11b(+) myeloid precursors into MDSCs in septic mice. Here, we show that long non-coding RNA Hotairm1 converts MDSCs from an activator to a repressor state. Mechanistically, increased Hotairm1 expression in MDSCs in mice converted S100A9 from a secreted proinflammatory mediator to an immune repressor by binding to and shuttling it from cytosol to nucleus during late sepsis. High Hotairm1 levels were detected in exosomes shed from MDSCs from late septic mice. These exosomes inhibited lipopolysaccharide-stimulated secretion of S100A9 from early sepsis Gr1(+)CD11b(+) cells. Importantly, Hotairm1 knockdown in late sepsis Gr1(+)CD11b(+) MDSCs prevented S100A9 cytosol to nuclear transfer and decreased repression of proimmune T cells. Notably, ectopic expression of Hotairm1 in early sepsis Gr1(+)CD11b(+) cells shuttled S100A9 to the nucleus and promoted the MDSC repressor phenotype. In support of translating the mechanistic concept to human sepsis, we found that Hotairm1 binds S100A9 protein in CD33(+)CD11b(+)HLA-DR(−) MDSCs during established sepsis. Together, these data support that Hotairm1 is a plausible molecular target for treating late sepsis immune suppression in humans and its immune repressor mechanism may be cell autonomous.
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spelling pubmed-77440022020-12-16 Long Non-Coding RNA Hotairm1 Promotes S100A9 Support of MDSC Expansion during Sepsis Alkhateeb, Tuqa Bah, Isatou Kumbhare, Ajinkya Youssef, Dima Yao, Zhi Q McCall, Charles E Gazzar, Mohamed El J Clin Cell Immunol Article Myeloid-derived suppressor cells (MDSCs) expand during mouse and human sepsis, but the mechanism responsible for this is unclear. We previously reported that nuclear transport of S100A9 protein programs Gr1(+)CD11b(+) myeloid precursors into MDSCs in septic mice. Here, we show that long non-coding RNA Hotairm1 converts MDSCs from an activator to a repressor state. Mechanistically, increased Hotairm1 expression in MDSCs in mice converted S100A9 from a secreted proinflammatory mediator to an immune repressor by binding to and shuttling it from cytosol to nucleus during late sepsis. High Hotairm1 levels were detected in exosomes shed from MDSCs from late septic mice. These exosomes inhibited lipopolysaccharide-stimulated secretion of S100A9 from early sepsis Gr1(+)CD11b(+) cells. Importantly, Hotairm1 knockdown in late sepsis Gr1(+)CD11b(+) MDSCs prevented S100A9 cytosol to nuclear transfer and decreased repression of proimmune T cells. Notably, ectopic expression of Hotairm1 in early sepsis Gr1(+)CD11b(+) cells shuttled S100A9 to the nucleus and promoted the MDSC repressor phenotype. In support of translating the mechanistic concept to human sepsis, we found that Hotairm1 binds S100A9 protein in CD33(+)CD11b(+)HLA-DR(−) MDSCs during established sepsis. Together, these data support that Hotairm1 is a plausible molecular target for treating late sepsis immune suppression in humans and its immune repressor mechanism may be cell autonomous. 2020 2020-09-22 /pmc/articles/PMC7744002/ /pubmed/33335790 Text en https://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 credited http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Alkhateeb, Tuqa
Bah, Isatou
Kumbhare, Ajinkya
Youssef, Dima
Yao, Zhi Q
McCall, Charles E
Gazzar, Mohamed El
Long Non-Coding RNA Hotairm1 Promotes S100A9 Support of MDSC Expansion during Sepsis
title Long Non-Coding RNA Hotairm1 Promotes S100A9 Support of MDSC Expansion during Sepsis
title_full Long Non-Coding RNA Hotairm1 Promotes S100A9 Support of MDSC Expansion during Sepsis
title_fullStr Long Non-Coding RNA Hotairm1 Promotes S100A9 Support of MDSC Expansion during Sepsis
title_full_unstemmed Long Non-Coding RNA Hotairm1 Promotes S100A9 Support of MDSC Expansion during Sepsis
title_short Long Non-Coding RNA Hotairm1 Promotes S100A9 Support of MDSC Expansion during Sepsis
title_sort long non-coding rna hotairm1 promotes s100a9 support of mdsc expansion during sepsis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7744002/
https://www.ncbi.nlm.nih.gov/pubmed/33335790
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