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Salidroside Inhibits HMGB1 Acetylation and Release through Upregulation of SirT1 during Inflammation

HMGB1, a highly conserved nonhistone DNA-binding protein, plays an important role in inflammatory diseases. Once released to the extracellular space, HMGB1 acts as a proinflammatory cytokine that triggers inflammatory reaction. Our previous study showed that salidroside exerts anti-inflammatory effe...

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Autores principales: Qi, Zhilin, Zhang, Yao, Qi, Shimei, Ling, Liefeng, Gui, Lin, Yan, Liang, Lv, Jun, Li, Qiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5733170/
https://www.ncbi.nlm.nih.gov/pubmed/29333216
http://dx.doi.org/10.1155/2017/9821543
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author Qi, Zhilin
Zhang, Yao
Qi, Shimei
Ling, Liefeng
Gui, Lin
Yan, Liang
Lv, Jun
Li, Qiang
author_facet Qi, Zhilin
Zhang, Yao
Qi, Shimei
Ling, Liefeng
Gui, Lin
Yan, Liang
Lv, Jun
Li, Qiang
author_sort Qi, Zhilin
collection PubMed
description HMGB1, a highly conserved nonhistone DNA-binding protein, plays an important role in inflammatory diseases. Once released to the extracellular space, HMGB1 acts as a proinflammatory cytokine that triggers inflammatory reaction. Our previous study showed that salidroside exerts anti-inflammatory effect via inhibiting the JAK2-STAT3 signalling pathway. However, whether salidroside inhibits the release of HMGB1 is still unclear. In this study, we aim to study the effects of salidroside on HMGB1 release and then investigate the potential molecular mechanisms. In an experimental rat model of sepsis caused by CLP, salidroside administration significantly attenuated lung injury and reduced the serum HMGB1 level. In RAW264.7 cells, we investigated the effects of salidroside on LPS-induced HMGB1 release and then explored the underlying molecular mechanisms. We found that salidroside significantly inhibited LPS-induced HMGB1 release, and the inhibitory effect was correlated with the HMGB1 acetylation levels. Mechanismly, salidroside inhibits HMGB1 acetylation through the AMPK-SirT1 pathway. In addition, SirT1 overexpression attenuated LPS-induced HMGB1 acetylation and nucleocytoplasmic translocation. Furthermore, in SirT1 shRNA plasmid-transfected cells, salidroside treatment enhanced SirT1 expression and reduced LPS-activated HMGB1 acetylation and nucleocytoplasmic translocation. Collectively, these results demonstrated that salidroside might reduce HMGB1 release through the AMPK-SirT1 signalling pathway and suppress HMGB1 acetylation and nucleocytoplasmic translocation.
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spelling pubmed-57331702018-01-14 Salidroside Inhibits HMGB1 Acetylation and Release through Upregulation of SirT1 during Inflammation Qi, Zhilin Zhang, Yao Qi, Shimei Ling, Liefeng Gui, Lin Yan, Liang Lv, Jun Li, Qiang Oxid Med Cell Longev Research Article HMGB1, a highly conserved nonhistone DNA-binding protein, plays an important role in inflammatory diseases. Once released to the extracellular space, HMGB1 acts as a proinflammatory cytokine that triggers inflammatory reaction. Our previous study showed that salidroside exerts anti-inflammatory effect via inhibiting the JAK2-STAT3 signalling pathway. However, whether salidroside inhibits the release of HMGB1 is still unclear. In this study, we aim to study the effects of salidroside on HMGB1 release and then investigate the potential molecular mechanisms. In an experimental rat model of sepsis caused by CLP, salidroside administration significantly attenuated lung injury and reduced the serum HMGB1 level. In RAW264.7 cells, we investigated the effects of salidroside on LPS-induced HMGB1 release and then explored the underlying molecular mechanisms. We found that salidroside significantly inhibited LPS-induced HMGB1 release, and the inhibitory effect was correlated with the HMGB1 acetylation levels. Mechanismly, salidroside inhibits HMGB1 acetylation through the AMPK-SirT1 pathway. In addition, SirT1 overexpression attenuated LPS-induced HMGB1 acetylation and nucleocytoplasmic translocation. Furthermore, in SirT1 shRNA plasmid-transfected cells, salidroside treatment enhanced SirT1 expression and reduced LPS-activated HMGB1 acetylation and nucleocytoplasmic translocation. Collectively, these results demonstrated that salidroside might reduce HMGB1 release through the AMPK-SirT1 signalling pathway and suppress HMGB1 acetylation and nucleocytoplasmic translocation. Hindawi 2017 2017-12-03 /pmc/articles/PMC5733170/ /pubmed/29333216 http://dx.doi.org/10.1155/2017/9821543 Text en Copyright © 2017 Zhilin Qi et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Qi, Zhilin
Zhang, Yao
Qi, Shimei
Ling, Liefeng
Gui, Lin
Yan, Liang
Lv, Jun
Li, Qiang
Salidroside Inhibits HMGB1 Acetylation and Release through Upregulation of SirT1 during Inflammation
title Salidroside Inhibits HMGB1 Acetylation and Release through Upregulation of SirT1 during Inflammation
title_full Salidroside Inhibits HMGB1 Acetylation and Release through Upregulation of SirT1 during Inflammation
title_fullStr Salidroside Inhibits HMGB1 Acetylation and Release through Upregulation of SirT1 during Inflammation
title_full_unstemmed Salidroside Inhibits HMGB1 Acetylation and Release through Upregulation of SirT1 during Inflammation
title_short Salidroside Inhibits HMGB1 Acetylation and Release through Upregulation of SirT1 during Inflammation
title_sort salidroside inhibits hmgb1 acetylation and release through upregulation of sirt1 during inflammation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5733170/
https://www.ncbi.nlm.nih.gov/pubmed/29333216
http://dx.doi.org/10.1155/2017/9821543
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