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IL‐6 mediates ER expansion during hyperpolarization of alternatively activated macrophages

Although recent evidence has shown that IL‐6 is involved in enhanced alternative activation of macrophages toward a profibrotic phenotype, the mechanisms leading to their increased secretory capacity are not fully understood. Here, we investigated the effect of IL‐6 on endoplasmic reticulum (ER) exp...

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Autores principales: Ayaub, Ehab A, Tandon, Karun, Padwal, Manreet, Imani, Jewel, Patel, Hemisha, Dubey, Anisha, Mekhael, Olivia, Upagupta, Chandak, Ayoub, Anmar, Dvorkin‐Gheva, Anna, Murphy, James, Kolb, Philipp S, Lhotak, Sarka, Dickhout, Jeffrey G, Austin, Rick C, Kolb, Martin R J, Richards, Carl D, Ask, Kjetil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7379543/
https://www.ncbi.nlm.nih.gov/pubmed/30298952
http://dx.doi.org/10.1111/imcb.12212
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author Ayaub, Ehab A
Tandon, Karun
Padwal, Manreet
Imani, Jewel
Patel, Hemisha
Dubey, Anisha
Mekhael, Olivia
Upagupta, Chandak
Ayoub, Anmar
Dvorkin‐Gheva, Anna
Murphy, James
Kolb, Philipp S
Lhotak, Sarka
Dickhout, Jeffrey G
Austin, Rick C
Kolb, Martin R J
Richards, Carl D
Ask, Kjetil
author_facet Ayaub, Ehab A
Tandon, Karun
Padwal, Manreet
Imani, Jewel
Patel, Hemisha
Dubey, Anisha
Mekhael, Olivia
Upagupta, Chandak
Ayoub, Anmar
Dvorkin‐Gheva, Anna
Murphy, James
Kolb, Philipp S
Lhotak, Sarka
Dickhout, Jeffrey G
Austin, Rick C
Kolb, Martin R J
Richards, Carl D
Ask, Kjetil
author_sort Ayaub, Ehab A
collection PubMed
description Although recent evidence has shown that IL‐6 is involved in enhanced alternative activation of macrophages toward a profibrotic phenotype, the mechanisms leading to their increased secretory capacity are not fully understood. Here, we investigated the effect of IL‐6 on endoplasmic reticulum (ER) expansion and alternative activation of macrophages in vitro. An essential mediator in this ER expansion process is the IRE1 pathway, which possesses a kinase and endoribonuclease domain to cleave XBP1 into a spliced bioactive molecule. To investigate the IRE1‐XBP1 expansion pathway, IL‐4/IL‐13 and IL‐4/IL‐13/IL‐6‐mediated alternative programming of murine bone marrow‐derived and human THP1 macrophages were assessed by arginase activity in cell lysates, CD206 and arginase‐1 expression by flow cytometry, and secreted CCL18 by ELISA, respectively. Ultrastructural intracellular morphology and ER biogenesis were examined by transmission electron microscopy and immunofluorescence. Transcription profiling of 128 genes were assessed by NanoString and Pharmacological inhibition of the IRE1‐XBP1 arm was achieved using STF‐083010 and was verified by RT‐PCR. The addition of IL‐6 to the conventional alternative programming cocktail IL‐4/IL‐13 resulted in increased ER and mitochondrial expansion, profibrotic profiles and unfolded protein response‐mediated induction of molecular chaperones. IRE1‐XBP1 inhibition substantially reduced the IL‐6‐mediated hyperpolarization and normalized the above effects. In conclusion, the addition of IL‐6 enhances ER expansion and the profibrotic capacity of IL‐4/IL‐13‐mediated activation of macrophages. Therapeutic strategies targeting IL‐6 or the IRE1‐XBP1 axis may be beneficial to prevent the profibrotic capacity of macrophages.
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spelling pubmed-73795432020-07-24 IL‐6 mediates ER expansion during hyperpolarization of alternatively activated macrophages Ayaub, Ehab A Tandon, Karun Padwal, Manreet Imani, Jewel Patel, Hemisha Dubey, Anisha Mekhael, Olivia Upagupta, Chandak Ayoub, Anmar Dvorkin‐Gheva, Anna Murphy, James Kolb, Philipp S Lhotak, Sarka Dickhout, Jeffrey G Austin, Rick C Kolb, Martin R J Richards, Carl D Ask, Kjetil Immunol Cell Biol Original Articles Although recent evidence has shown that IL‐6 is involved in enhanced alternative activation of macrophages toward a profibrotic phenotype, the mechanisms leading to their increased secretory capacity are not fully understood. Here, we investigated the effect of IL‐6 on endoplasmic reticulum (ER) expansion and alternative activation of macrophages in vitro. An essential mediator in this ER expansion process is the IRE1 pathway, which possesses a kinase and endoribonuclease domain to cleave XBP1 into a spliced bioactive molecule. To investigate the IRE1‐XBP1 expansion pathway, IL‐4/IL‐13 and IL‐4/IL‐13/IL‐6‐mediated alternative programming of murine bone marrow‐derived and human THP1 macrophages were assessed by arginase activity in cell lysates, CD206 and arginase‐1 expression by flow cytometry, and secreted CCL18 by ELISA, respectively. Ultrastructural intracellular morphology and ER biogenesis were examined by transmission electron microscopy and immunofluorescence. Transcription profiling of 128 genes were assessed by NanoString and Pharmacological inhibition of the IRE1‐XBP1 arm was achieved using STF‐083010 and was verified by RT‐PCR. The addition of IL‐6 to the conventional alternative programming cocktail IL‐4/IL‐13 resulted in increased ER and mitochondrial expansion, profibrotic profiles and unfolded protein response‐mediated induction of molecular chaperones. IRE1‐XBP1 inhibition substantially reduced the IL‐6‐mediated hyperpolarization and normalized the above effects. In conclusion, the addition of IL‐6 enhances ER expansion and the profibrotic capacity of IL‐4/IL‐13‐mediated activation of macrophages. Therapeutic strategies targeting IL‐6 or the IRE1‐XBP1 axis may be beneficial to prevent the profibrotic capacity of macrophages. John Wiley and Sons Inc. 2018-11-14 2019-02 /pmc/articles/PMC7379543/ /pubmed/30298952 http://dx.doi.org/10.1111/imcb.12212 Text en © 2018 The Authors Immunology & Cell Biology published by John Wiley & Sons Australia, Ltd on behalf of Australasian Society for Immunology Inc. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Articles
Ayaub, Ehab A
Tandon, Karun
Padwal, Manreet
Imani, Jewel
Patel, Hemisha
Dubey, Anisha
Mekhael, Olivia
Upagupta, Chandak
Ayoub, Anmar
Dvorkin‐Gheva, Anna
Murphy, James
Kolb, Philipp S
Lhotak, Sarka
Dickhout, Jeffrey G
Austin, Rick C
Kolb, Martin R J
Richards, Carl D
Ask, Kjetil
IL‐6 mediates ER expansion during hyperpolarization of alternatively activated macrophages
title IL‐6 mediates ER expansion during hyperpolarization of alternatively activated macrophages
title_full IL‐6 mediates ER expansion during hyperpolarization of alternatively activated macrophages
title_fullStr IL‐6 mediates ER expansion during hyperpolarization of alternatively activated macrophages
title_full_unstemmed IL‐6 mediates ER expansion during hyperpolarization of alternatively activated macrophages
title_short IL‐6 mediates ER expansion during hyperpolarization of alternatively activated macrophages
title_sort il‐6 mediates er expansion during hyperpolarization of alternatively activated macrophages
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7379543/
https://www.ncbi.nlm.nih.gov/pubmed/30298952
http://dx.doi.org/10.1111/imcb.12212
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