Cargando…
Proteoglycan 4 Modulates Osteogenic Smooth Muscle Cell Differentiation during Vascular Remodeling and Intimal Calcification
Calcification is a prominent feature of late-stage atherosclerosis, but the mechanisms driving this process are unclear. Using a biobank of carotid endarterectomies, we recently showed that Proteoglycan 4 (PRG4) is a key molecular signature of calcified plaques, expressed in smooth muscle cell (SMC)...
Autores principales: | , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8224064/ https://www.ncbi.nlm.nih.gov/pubmed/34063989 http://dx.doi.org/10.3390/cells10061276 |
_version_ | 1783711816395784192 |
---|---|
author | Seime, Till Akbulut, Asim Cengiz Liljeqvist, Moritz Lindquist Siika, Antti Jin, Hong Winski, Greg van Gorp, Rick H. Karlöf, Eva Lengquist, Mariette Buckler, Andrew J. Kronqvist, Malin Waring, Olivia J. Lindeman, Jan H. N. Biessen, Erik A. L. Maegdefessel, Lars Razuvaev, Anton Schurgers, Leon J. Hedin, Ulf Matic, Ljubica |
author_facet | Seime, Till Akbulut, Asim Cengiz Liljeqvist, Moritz Lindquist Siika, Antti Jin, Hong Winski, Greg van Gorp, Rick H. Karlöf, Eva Lengquist, Mariette Buckler, Andrew J. Kronqvist, Malin Waring, Olivia J. Lindeman, Jan H. N. Biessen, Erik A. L. Maegdefessel, Lars Razuvaev, Anton Schurgers, Leon J. Hedin, Ulf Matic, Ljubica |
author_sort | Seime, Till |
collection | PubMed |
description | Calcification is a prominent feature of late-stage atherosclerosis, but the mechanisms driving this process are unclear. Using a biobank of carotid endarterectomies, we recently showed that Proteoglycan 4 (PRG4) is a key molecular signature of calcified plaques, expressed in smooth muscle cell (SMC) rich regions. Here, we aimed to unravel the PRG4 role in vascular remodeling and intimal calcification. PRG4 expression in human carotid endarterectomies correlated with calcification assessed by preoperative computed tomographies. PRG4 localized to SMCs in early intimal thickening, while in advanced lesions it was found in the extracellular matrix, surrounding macro-calcifications. In experimental models, Prg4 was upregulated in SMCs from partially ligated ApoE(−/−) mice and rat carotid intimal hyperplasia, correlating with osteogenic markers and TGFb1. Furthermore, PRG4 was enriched in cells positive for chondrogenic marker SOX9 and around plaque calcifications in ApoE(−/−) mice on warfarin. In vitro, PRG4 was induced in SMCs by IFNg, TGFb1 and calcifying medium, while SMC markers were repressed under calcifying conditions. Silencing experiments showed that PRG4 expression was driven by transcription factors SMAD3 and SOX9. Functionally, the addition of recombinant human PRG4 increased ectopic SMC calcification, while arresting cell migration and proliferation. Mechanistically, it suppressed endogenous PRG4, SMAD3 and SOX9, and restored SMC markers’ expression. PRG4 modulates SMC function and osteogenic phenotype during intimal remodeling and macro-calcification in response to TGFb1 signaling, SMAD3 and SOX9 activation. The effects of PRG4 on SMC phenotype and calcification suggest its role in atherosclerotic plaque stability, warranting further investigations. |
format | Online Article Text |
id | pubmed-8224064 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-82240642021-06-25 Proteoglycan 4 Modulates Osteogenic Smooth Muscle Cell Differentiation during Vascular Remodeling and Intimal Calcification Seime, Till Akbulut, Asim Cengiz Liljeqvist, Moritz Lindquist Siika, Antti Jin, Hong Winski, Greg van Gorp, Rick H. Karlöf, Eva Lengquist, Mariette Buckler, Andrew J. Kronqvist, Malin Waring, Olivia J. Lindeman, Jan H. N. Biessen, Erik A. L. Maegdefessel, Lars Razuvaev, Anton Schurgers, Leon J. Hedin, Ulf Matic, Ljubica Cells Article Calcification is a prominent feature of late-stage atherosclerosis, but the mechanisms driving this process are unclear. Using a biobank of carotid endarterectomies, we recently showed that Proteoglycan 4 (PRG4) is a key molecular signature of calcified plaques, expressed in smooth muscle cell (SMC) rich regions. Here, we aimed to unravel the PRG4 role in vascular remodeling and intimal calcification. PRG4 expression in human carotid endarterectomies correlated with calcification assessed by preoperative computed tomographies. PRG4 localized to SMCs in early intimal thickening, while in advanced lesions it was found in the extracellular matrix, surrounding macro-calcifications. In experimental models, Prg4 was upregulated in SMCs from partially ligated ApoE(−/−) mice and rat carotid intimal hyperplasia, correlating with osteogenic markers and TGFb1. Furthermore, PRG4 was enriched in cells positive for chondrogenic marker SOX9 and around plaque calcifications in ApoE(−/−) mice on warfarin. In vitro, PRG4 was induced in SMCs by IFNg, TGFb1 and calcifying medium, while SMC markers were repressed under calcifying conditions. Silencing experiments showed that PRG4 expression was driven by transcription factors SMAD3 and SOX9. Functionally, the addition of recombinant human PRG4 increased ectopic SMC calcification, while arresting cell migration and proliferation. Mechanistically, it suppressed endogenous PRG4, SMAD3 and SOX9, and restored SMC markers’ expression. PRG4 modulates SMC function and osteogenic phenotype during intimal remodeling and macro-calcification in response to TGFb1 signaling, SMAD3 and SOX9 activation. The effects of PRG4 on SMC phenotype and calcification suggest its role in atherosclerotic plaque stability, warranting further investigations. MDPI 2021-05-21 /pmc/articles/PMC8224064/ /pubmed/34063989 http://dx.doi.org/10.3390/cells10061276 Text en © 2021 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 Seime, Till Akbulut, Asim Cengiz Liljeqvist, Moritz Lindquist Siika, Antti Jin, Hong Winski, Greg van Gorp, Rick H. Karlöf, Eva Lengquist, Mariette Buckler, Andrew J. Kronqvist, Malin Waring, Olivia J. Lindeman, Jan H. N. Biessen, Erik A. L. Maegdefessel, Lars Razuvaev, Anton Schurgers, Leon J. Hedin, Ulf Matic, Ljubica Proteoglycan 4 Modulates Osteogenic Smooth Muscle Cell Differentiation during Vascular Remodeling and Intimal Calcification |
title | Proteoglycan 4 Modulates Osteogenic Smooth Muscle Cell Differentiation during Vascular Remodeling and Intimal Calcification |
title_full | Proteoglycan 4 Modulates Osteogenic Smooth Muscle Cell Differentiation during Vascular Remodeling and Intimal Calcification |
title_fullStr | Proteoglycan 4 Modulates Osteogenic Smooth Muscle Cell Differentiation during Vascular Remodeling and Intimal Calcification |
title_full_unstemmed | Proteoglycan 4 Modulates Osteogenic Smooth Muscle Cell Differentiation during Vascular Remodeling and Intimal Calcification |
title_short | Proteoglycan 4 Modulates Osteogenic Smooth Muscle Cell Differentiation during Vascular Remodeling and Intimal Calcification |
title_sort | proteoglycan 4 modulates osteogenic smooth muscle cell differentiation during vascular remodeling and intimal calcification |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8224064/ https://www.ncbi.nlm.nih.gov/pubmed/34063989 http://dx.doi.org/10.3390/cells10061276 |
work_keys_str_mv | AT seimetill proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT akbulutasimcengiz proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT liljeqvistmoritzlindquist proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT siikaantti proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT jinhong proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT winskigreg proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT vangorprickh proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT karlofeva proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT lengquistmariette proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT bucklerandrewj proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT kronqvistmalin proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT waringoliviaj proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT lindemanjanhn proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT biessenerikal proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT maegdefessellars proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT razuvaevanton proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT schurgersleonj proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT hedinulf proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification AT maticljubica proteoglycan4modulatesosteogenicsmoothmusclecelldifferentiationduringvascularremodelingandintimalcalcification |