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Molecular Dissection of Pro-Fibrotic IL11 Signaling in Cardiac and Pulmonary Fibroblasts

In fibroblasts, TGFβ1 stimulates IL11 upregulation that leads to an autocrine loop of IL11-dependent pro-fibrotic protein translation. The signaling pathways downstream of IL11, which acts via IL6ST, are contentious with both STAT3 and ERK implicated. Here we dissect IL11 signaling in fibroblasts an...

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Autores principales: Widjaja, Anissa A., Viswanathan, Sivakumar, Jinrui, Dong, Singh, Brijesh K., Tan, Jessie, Wei Ting, Joyce Goh, Lamb, David, Shekeran, Shamini G., George, Benjamin L., Schafer, Sebastian, Carling, David, Adami, Eleonora, Cook, Stuart A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8505966/
https://www.ncbi.nlm.nih.gov/pubmed/34651016
http://dx.doi.org/10.3389/fmolb.2021.740650
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author Widjaja, Anissa A.
Viswanathan, Sivakumar
Jinrui, Dong
Singh, Brijesh K.
Tan, Jessie
Wei Ting, Joyce Goh
Lamb, David
Shekeran, Shamini G.
George, Benjamin L.
Schafer, Sebastian
Carling, David
Adami, Eleonora
Cook, Stuart A.
author_facet Widjaja, Anissa A.
Viswanathan, Sivakumar
Jinrui, Dong
Singh, Brijesh K.
Tan, Jessie
Wei Ting, Joyce Goh
Lamb, David
Shekeran, Shamini G.
George, Benjamin L.
Schafer, Sebastian
Carling, David
Adami, Eleonora
Cook, Stuart A.
author_sort Widjaja, Anissa A.
collection PubMed
description In fibroblasts, TGFβ1 stimulates IL11 upregulation that leads to an autocrine loop of IL11-dependent pro-fibrotic protein translation. The signaling pathways downstream of IL11, which acts via IL6ST, are contentious with both STAT3 and ERK implicated. Here we dissect IL11 signaling in fibroblasts and study IL11-dependent protein synthesis pathways in the context of approved anti-fibrotic drug mechanisms of action. We show that IL11-induced ERK activation drives fibrogenesis and while STAT3 phosphorylation (pSTAT3) is also seen, this appears unrelated to fibroblast activation. Ironically, recombinant human IL11, which has been used extensively in mouse experiments to infer STAT3 activity downstream of IL11, increases pSTAT3 in Il11ra1 null mouse fibroblasts. Unexpectedly, inhibition of STAT3 was found to induce severe proteotoxic ER stress, generalized fibroblast dysfunction and cell death. In contrast, inhibition of ERK prevented fibroblast activation in the absence of ER stress. IL11 stimulated an axis of ERK/mTOR/P70RSK protein translation and its selectivity for Collagen 1 synthesis was ascribed to an EPRS-regulated, ribosome stalling mechanism. Surprisingly, the anti-fibrotic drug nintedanib caused dose-dependent ER stress and lesser pSTAT3 expression. Pirfenidone had no effect on ER stress whereas anti-IL11 specifically inhibited the ERK/mTOR axis while reducing ER stress. These studies define the translation-specific signaling pathways downstream of IL11, intersect immune and metabolic signaling and reveal unappreciated effects of nintedanib.
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spelling pubmed-85059662021-10-13 Molecular Dissection of Pro-Fibrotic IL11 Signaling in Cardiac and Pulmonary Fibroblasts Widjaja, Anissa A. Viswanathan, Sivakumar Jinrui, Dong Singh, Brijesh K. Tan, Jessie Wei Ting, Joyce Goh Lamb, David Shekeran, Shamini G. George, Benjamin L. Schafer, Sebastian Carling, David Adami, Eleonora Cook, Stuart A. Front Mol Biosci Molecular Biosciences In fibroblasts, TGFβ1 stimulates IL11 upregulation that leads to an autocrine loop of IL11-dependent pro-fibrotic protein translation. The signaling pathways downstream of IL11, which acts via IL6ST, are contentious with both STAT3 and ERK implicated. Here we dissect IL11 signaling in fibroblasts and study IL11-dependent protein synthesis pathways in the context of approved anti-fibrotic drug mechanisms of action. We show that IL11-induced ERK activation drives fibrogenesis and while STAT3 phosphorylation (pSTAT3) is also seen, this appears unrelated to fibroblast activation. Ironically, recombinant human IL11, which has been used extensively in mouse experiments to infer STAT3 activity downstream of IL11, increases pSTAT3 in Il11ra1 null mouse fibroblasts. Unexpectedly, inhibition of STAT3 was found to induce severe proteotoxic ER stress, generalized fibroblast dysfunction and cell death. In contrast, inhibition of ERK prevented fibroblast activation in the absence of ER stress. IL11 stimulated an axis of ERK/mTOR/P70RSK protein translation and its selectivity for Collagen 1 synthesis was ascribed to an EPRS-regulated, ribosome stalling mechanism. Surprisingly, the anti-fibrotic drug nintedanib caused dose-dependent ER stress and lesser pSTAT3 expression. Pirfenidone had no effect on ER stress whereas anti-IL11 specifically inhibited the ERK/mTOR axis while reducing ER stress. These studies define the translation-specific signaling pathways downstream of IL11, intersect immune and metabolic signaling and reveal unappreciated effects of nintedanib. Frontiers Media S.A. 2021-09-28 /pmc/articles/PMC8505966/ /pubmed/34651016 http://dx.doi.org/10.3389/fmolb.2021.740650 Text en Copyright © 2021 Widjaja, Viswanathan, Jinrui, Singh, Tan, Wei Ting, Lamb, Shekeran, George, Schafer, Carling, Adami and Cook. https://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 Molecular Biosciences
Widjaja, Anissa A.
Viswanathan, Sivakumar
Jinrui, Dong
Singh, Brijesh K.
Tan, Jessie
Wei Ting, Joyce Goh
Lamb, David
Shekeran, Shamini G.
George, Benjamin L.
Schafer, Sebastian
Carling, David
Adami, Eleonora
Cook, Stuart A.
Molecular Dissection of Pro-Fibrotic IL11 Signaling in Cardiac and Pulmonary Fibroblasts
title Molecular Dissection of Pro-Fibrotic IL11 Signaling in Cardiac and Pulmonary Fibroblasts
title_full Molecular Dissection of Pro-Fibrotic IL11 Signaling in Cardiac and Pulmonary Fibroblasts
title_fullStr Molecular Dissection of Pro-Fibrotic IL11 Signaling in Cardiac and Pulmonary Fibroblasts
title_full_unstemmed Molecular Dissection of Pro-Fibrotic IL11 Signaling in Cardiac and Pulmonary Fibroblasts
title_short Molecular Dissection of Pro-Fibrotic IL11 Signaling in Cardiac and Pulmonary Fibroblasts
title_sort molecular dissection of pro-fibrotic il11 signaling in cardiac and pulmonary fibroblasts
topic Molecular Biosciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8505966/
https://www.ncbi.nlm.nih.gov/pubmed/34651016
http://dx.doi.org/10.3389/fmolb.2021.740650
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