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Inflammatory Caspase Activity Mediates HMGB1 Release and Differentiation in Myoblasts Affected by Peripheral Arterial Disease

Introduction: We previously showed that caspase-1 and -11, which are activated by inflammasomes, mediate recovery from muscle ischemia in mice. We hypothesized that similar to murine models, inflammatory caspases modulate myogenicity and inflammation in ischemic muscle disease. Methods: Caspase acti...

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Autores principales: Ferrari, Ricardo, Xie, Bowen, Assaf, Edwyn, Morder, Kristin, Scott, Melanie, Liao, Hong, Calderon, Michael J., Ross, Mark, Loughran, Patricia, Watkins, Simon C., Pipinos, Iraklis, Casale, George, Tzeng, Edith, McEnaney, Ryan, Sachdev, Ulka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8997414/
https://www.ncbi.nlm.nih.gov/pubmed/35406727
http://dx.doi.org/10.3390/cells11071163
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author Ferrari, Ricardo
Xie, Bowen
Assaf, Edwyn
Morder, Kristin
Scott, Melanie
Liao, Hong
Calderon, Michael J.
Ross, Mark
Loughran, Patricia
Watkins, Simon C.
Pipinos, Iraklis
Casale, George
Tzeng, Edith
McEnaney, Ryan
Sachdev, Ulka
author_facet Ferrari, Ricardo
Xie, Bowen
Assaf, Edwyn
Morder, Kristin
Scott, Melanie
Liao, Hong
Calderon, Michael J.
Ross, Mark
Loughran, Patricia
Watkins, Simon C.
Pipinos, Iraklis
Casale, George
Tzeng, Edith
McEnaney, Ryan
Sachdev, Ulka
author_sort Ferrari, Ricardo
collection PubMed
description Introduction: We previously showed that caspase-1 and -11, which are activated by inflammasomes, mediate recovery from muscle ischemia in mice. We hypothesized that similar to murine models, inflammatory caspases modulate myogenicity and inflammation in ischemic muscle disease. Methods: Caspase activity was measured in ischemic and perfused human myoblasts in response to the NLRP3 and AIM2 inflammasome agonists (nigericin and poly(dA:dT), respectively) with and without specific caspase-1 or pan-caspase inhibition. mRNA levels of myogenic markers and caspase-1 were assessed, and protein levels of caspases-1, -4, -5, and -3 were measured by Western blot. Results: When compared to perfused cells, ischemic myoblasts demonstrated attenuated MyoD and myogenin and elevated caspase-1 mRNA. Ischemic myoblasts also had significantly higher enzymatic caspase activity with poly(dA:dT) (p < 0.001), but not nigericin stimulation. Inhibition of caspase activity including caspase-4/-5, but not caspase-1, blocked activation effects of poly(dA:dT). Ischemic myoblasts had elevated cleaved caspase-5. Inhibition of caspase activity deterred differentiation in ischemic but not perfused myoblasts and reduced the release of HMGB1 from both groups. Conclusion: Inflammatory caspases can be activated in ischemic myoblasts by AIM2 and influence ischemic myoblast differentiation and release of pro-angiogenic HMGB1. AIM2 inflammasome involvement suggests a role as a DNA damage sensor, and our data suggest that caspase-5 rather than caspase-1 may mediate the downstream mediator of this pathway.
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spelling pubmed-89974142022-04-12 Inflammatory Caspase Activity Mediates HMGB1 Release and Differentiation in Myoblasts Affected by Peripheral Arterial Disease Ferrari, Ricardo Xie, Bowen Assaf, Edwyn Morder, Kristin Scott, Melanie Liao, Hong Calderon, Michael J. Ross, Mark Loughran, Patricia Watkins, Simon C. Pipinos, Iraklis Casale, George Tzeng, Edith McEnaney, Ryan Sachdev, Ulka Cells Article Introduction: We previously showed that caspase-1 and -11, which are activated by inflammasomes, mediate recovery from muscle ischemia in mice. We hypothesized that similar to murine models, inflammatory caspases modulate myogenicity and inflammation in ischemic muscle disease. Methods: Caspase activity was measured in ischemic and perfused human myoblasts in response to the NLRP3 and AIM2 inflammasome agonists (nigericin and poly(dA:dT), respectively) with and without specific caspase-1 or pan-caspase inhibition. mRNA levels of myogenic markers and caspase-1 were assessed, and protein levels of caspases-1, -4, -5, and -3 were measured by Western blot. Results: When compared to perfused cells, ischemic myoblasts demonstrated attenuated MyoD and myogenin and elevated caspase-1 mRNA. Ischemic myoblasts also had significantly higher enzymatic caspase activity with poly(dA:dT) (p < 0.001), but not nigericin stimulation. Inhibition of caspase activity including caspase-4/-5, but not caspase-1, blocked activation effects of poly(dA:dT). Ischemic myoblasts had elevated cleaved caspase-5. Inhibition of caspase activity deterred differentiation in ischemic but not perfused myoblasts and reduced the release of HMGB1 from both groups. Conclusion: Inflammatory caspases can be activated in ischemic myoblasts by AIM2 and influence ischemic myoblast differentiation and release of pro-angiogenic HMGB1. AIM2 inflammasome involvement suggests a role as a DNA damage sensor, and our data suggest that caspase-5 rather than caspase-1 may mediate the downstream mediator of this pathway. MDPI 2022-03-30 /pmc/articles/PMC8997414/ /pubmed/35406727 http://dx.doi.org/10.3390/cells11071163 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ferrari, Ricardo
Xie, Bowen
Assaf, Edwyn
Morder, Kristin
Scott, Melanie
Liao, Hong
Calderon, Michael J.
Ross, Mark
Loughran, Patricia
Watkins, Simon C.
Pipinos, Iraklis
Casale, George
Tzeng, Edith
McEnaney, Ryan
Sachdev, Ulka
Inflammatory Caspase Activity Mediates HMGB1 Release and Differentiation in Myoblasts Affected by Peripheral Arterial Disease
title Inflammatory Caspase Activity Mediates HMGB1 Release and Differentiation in Myoblasts Affected by Peripheral Arterial Disease
title_full Inflammatory Caspase Activity Mediates HMGB1 Release and Differentiation in Myoblasts Affected by Peripheral Arterial Disease
title_fullStr Inflammatory Caspase Activity Mediates HMGB1 Release and Differentiation in Myoblasts Affected by Peripheral Arterial Disease
title_full_unstemmed Inflammatory Caspase Activity Mediates HMGB1 Release and Differentiation in Myoblasts Affected by Peripheral Arterial Disease
title_short Inflammatory Caspase Activity Mediates HMGB1 Release and Differentiation in Myoblasts Affected by Peripheral Arterial Disease
title_sort inflammatory caspase activity mediates hmgb1 release and differentiation in myoblasts affected by peripheral arterial disease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8997414/
https://www.ncbi.nlm.nih.gov/pubmed/35406727
http://dx.doi.org/10.3390/cells11071163
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