Cargando…

Calpain-1 Mediated Disorder of Pyrophosphate Metabolism Contributes to Vascular Calcification Induced by oxLDL

We previously reported that oxidized low density lipoprotein (oxLDL) accelerated the calcification in aorta of rats and rat vascular smooth muscle cells (RVSMCs). However, the molecular mechanism underlying the acceleration remains poorly understood. The present study aimed to investigate the role o...

Descripción completa

Detalles Bibliográficos
Autores principales: Tang, Futian, Chan, Erqing, Lu, Meili, Zhang, Xiaowen, Dai, Chunmei, Mei, Meng, Zhang, Suping, Wang, Hongxin, Song, Qing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4457882/
https://www.ncbi.nlm.nih.gov/pubmed/26047104
http://dx.doi.org/10.1371/journal.pone.0129128
_version_ 1782375015772061696
author Tang, Futian
Chan, Erqing
Lu, Meili
Zhang, Xiaowen
Dai, Chunmei
Mei, Meng
Zhang, Suping
Wang, Hongxin
Song, Qing
author_facet Tang, Futian
Chan, Erqing
Lu, Meili
Zhang, Xiaowen
Dai, Chunmei
Mei, Meng
Zhang, Suping
Wang, Hongxin
Song, Qing
author_sort Tang, Futian
collection PubMed
description We previously reported that oxidized low density lipoprotein (oxLDL) accelerated the calcification in aorta of rats and rat vascular smooth muscle cells (RVSMCs). However, the molecular mechanism underlying the acceleration remains poorly understood. The present study aimed to investigate the role of calpain-1, Ca(2+)-sensitive intracellular cysteine proteases, in the vascular calcification of rats treated with both high dose of vitamin D(2) and high cholesterol diet. The results showed that calpain activity significantly increased in calcified aortic tissue of rats and RVSMCs treated with oxLDL. Specific calpain inhibitor I (CAI, 0.5mg/kg, intraperitoneal) inhibited the vascular calcification in rats with hypercholesterolemia accompanied by the increase in the level of extracellular inorganic pyrophosphate (PPi), the endogenous inhibitor of vascular calcification. In addition, CAI increased the content of adenosine triphosphate (ATP), decreased the activity, mRNA and protein expression of alkaline phosphatase (ALP) and reduced the production of superoxide anion in calcified aortic tissue. CAI also increased the activity of ATP synthase as well as protein expression of ATP5D, δ subunit of ATP synthase. In the in vitro study, suppression of calpain-1 using siRNA assay inhibited the calcium deposition, increased the levels of PPi and ATP, improved the activity of ATP synthase as well as protein expression of ATP5D in RVSMCs treated with oxLDL. Calpain-1 suppression also decreased the activity, mRNA and protein expression of ALP and reduced the mitochondrial ROS (Mito-ROS) production in RVSMCs. However, mito-TEMPO, the mitochondria-targeted ROS scavenger, reduced the calcium deposition, increased the PPi in culture medium, decreased the activity, mRNA and protein expression of ALP in RVSMCs treated with oxLDL. Taken together, the results suggested that calpain-1 activation plays critical role in vascular calcification caused by oxLDL, which might be mediated by PPi metabolism disorder. The results also implied that Mito-ROS might contribute to the PPi metabolism disorder through regulation of the activity and expression of ALP.
format Online
Article
Text
id pubmed-4457882
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-44578822015-06-09 Calpain-1 Mediated Disorder of Pyrophosphate Metabolism Contributes to Vascular Calcification Induced by oxLDL Tang, Futian Chan, Erqing Lu, Meili Zhang, Xiaowen Dai, Chunmei Mei, Meng Zhang, Suping Wang, Hongxin Song, Qing PLoS One Research Article We previously reported that oxidized low density lipoprotein (oxLDL) accelerated the calcification in aorta of rats and rat vascular smooth muscle cells (RVSMCs). However, the molecular mechanism underlying the acceleration remains poorly understood. The present study aimed to investigate the role of calpain-1, Ca(2+)-sensitive intracellular cysteine proteases, in the vascular calcification of rats treated with both high dose of vitamin D(2) and high cholesterol diet. The results showed that calpain activity significantly increased in calcified aortic tissue of rats and RVSMCs treated with oxLDL. Specific calpain inhibitor I (CAI, 0.5mg/kg, intraperitoneal) inhibited the vascular calcification in rats with hypercholesterolemia accompanied by the increase in the level of extracellular inorganic pyrophosphate (PPi), the endogenous inhibitor of vascular calcification. In addition, CAI increased the content of adenosine triphosphate (ATP), decreased the activity, mRNA and protein expression of alkaline phosphatase (ALP) and reduced the production of superoxide anion in calcified aortic tissue. CAI also increased the activity of ATP synthase as well as protein expression of ATP5D, δ subunit of ATP synthase. In the in vitro study, suppression of calpain-1 using siRNA assay inhibited the calcium deposition, increased the levels of PPi and ATP, improved the activity of ATP synthase as well as protein expression of ATP5D in RVSMCs treated with oxLDL. Calpain-1 suppression also decreased the activity, mRNA and protein expression of ALP and reduced the mitochondrial ROS (Mito-ROS) production in RVSMCs. However, mito-TEMPO, the mitochondria-targeted ROS scavenger, reduced the calcium deposition, increased the PPi in culture medium, decreased the activity, mRNA and protein expression of ALP in RVSMCs treated with oxLDL. Taken together, the results suggested that calpain-1 activation plays critical role in vascular calcification caused by oxLDL, which might be mediated by PPi metabolism disorder. The results also implied that Mito-ROS might contribute to the PPi metabolism disorder through regulation of the activity and expression of ALP. Public Library of Science 2015-06-05 /pmc/articles/PMC4457882/ /pubmed/26047104 http://dx.doi.org/10.1371/journal.pone.0129128 Text en © 2015 Tang et al http://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 properly credited.
spellingShingle Research Article
Tang, Futian
Chan, Erqing
Lu, Meili
Zhang, Xiaowen
Dai, Chunmei
Mei, Meng
Zhang, Suping
Wang, Hongxin
Song, Qing
Calpain-1 Mediated Disorder of Pyrophosphate Metabolism Contributes to Vascular Calcification Induced by oxLDL
title Calpain-1 Mediated Disorder of Pyrophosphate Metabolism Contributes to Vascular Calcification Induced by oxLDL
title_full Calpain-1 Mediated Disorder of Pyrophosphate Metabolism Contributes to Vascular Calcification Induced by oxLDL
title_fullStr Calpain-1 Mediated Disorder of Pyrophosphate Metabolism Contributes to Vascular Calcification Induced by oxLDL
title_full_unstemmed Calpain-1 Mediated Disorder of Pyrophosphate Metabolism Contributes to Vascular Calcification Induced by oxLDL
title_short Calpain-1 Mediated Disorder of Pyrophosphate Metabolism Contributes to Vascular Calcification Induced by oxLDL
title_sort calpain-1 mediated disorder of pyrophosphate metabolism contributes to vascular calcification induced by oxldl
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4457882/
https://www.ncbi.nlm.nih.gov/pubmed/26047104
http://dx.doi.org/10.1371/journal.pone.0129128
work_keys_str_mv AT tangfutian calpain1mediateddisorderofpyrophosphatemetabolismcontributestovascularcalcificationinducedbyoxldl
AT chanerqing calpain1mediateddisorderofpyrophosphatemetabolismcontributestovascularcalcificationinducedbyoxldl
AT lumeili calpain1mediateddisorderofpyrophosphatemetabolismcontributestovascularcalcificationinducedbyoxldl
AT zhangxiaowen calpain1mediateddisorderofpyrophosphatemetabolismcontributestovascularcalcificationinducedbyoxldl
AT daichunmei calpain1mediateddisorderofpyrophosphatemetabolismcontributestovascularcalcificationinducedbyoxldl
AT meimeng calpain1mediateddisorderofpyrophosphatemetabolismcontributestovascularcalcificationinducedbyoxldl
AT zhangsuping calpain1mediateddisorderofpyrophosphatemetabolismcontributestovascularcalcificationinducedbyoxldl
AT wanghongxin calpain1mediateddisorderofpyrophosphatemetabolismcontributestovascularcalcificationinducedbyoxldl
AT songqing calpain1mediateddisorderofpyrophosphatemetabolismcontributestovascularcalcificationinducedbyoxldl