Role and Regulation of Mechanotransductive HIF-1α Stabilisation in Periodontal Ligament Fibroblasts.
Adolescent
Adult
Cells, Cultured
Female
Fibroblasts
/ drug effects
Focal Adhesion Kinase 1
/ antagonists & inhibitors
Genistein
/ pharmacology
Glycine
/ analogs & derivatives
Glycosaminoglycans
/ antagonists & inhibitors
Humans
Hypoxia-Inducible Factor 1, alpha Subunit
/ metabolism
Indazoles
/ pharmacology
Integrins
/ antagonists & inhibitors
Male
Mechanotransduction, Cellular
/ drug effects
Periodontal Ligament
/ cytology
Phosphorylation
Prostaglandin-Endoperoxide Synthases
/ genetics
Prostaglandins
/ biosynthesis
Protein Stability
/ drug effects
Signal Transduction
/ drug effects
Stress, Mechanical
Tooth Movement Techniques
Urea
/ analogs & derivatives
Vascular Endothelial Growth Factor A
/ genetics
HIF-1α
PDLF
mechanotransduction
orthodontics
Journal
International journal of molecular sciences
ISSN: 1422-0067
Titre abrégé: Int J Mol Sci
Pays: Switzerland
ID NLM: 101092791
Informations de publication
Date de publication:
15 Dec 2020
15 Dec 2020
Historique:
received:
16
11
2020
revised:
07
12
2020
accepted:
10
12
2020
entrez:
18
12
2020
pubmed:
19
12
2020
medline:
20
3
2021
Statut:
epublish
Résumé
Orthodontic tooth movement (OTM) creates compressive and tensile strain in the periodontal ligament, causing circulation disorders. Hypoxia-inducible factor 1α (HIF-1α) has been shown to be primarily stabilised by compression, but not hypoxia in periodontal ligament fibroblasts (PDLF) during mechanical strain, which are key regulators of OTM. This study aimed to elucidate the role of heparan sulfate integrin interaction and downstream kinase phosphorylation for HIF-1α stabilisation under compressive and tensile strain and to which extent downstream synthesis of VEGF and prostaglandins is HIF-1α-dependent in a model of simulated OTM in PDLF. PDLF were subjected to compressive or tensile strain for 48 h. In various setups HIF-1α was experimentally stabilised (DMOG) or destabilised (YC-1) and mechanotransduction was inhibited by surfen and genistein. We found that HIF-1α was not stabilised by tensile, but rather by compressive strain. HIF-1α stabilisation had an inductive effect on prostaglandin and VEGF synthesis. As expected, HIF-1α destabilisation reduced VEGF expression, whereas prostaglandin synthesis was increased. Inhibition of integrin mechanotransduction via surfen or genistein prevented stabilisation of HIF-1α. A decrease in VEGF expression was observed, but not in prostaglandin synthesis. Stabilisation of HIF-1α via integrin mechanotransduction and downstream phosphorylation of kinases seems to be essential for the induction of VEGF, but not prostaglandin synthesis by PDLF during compressive (but not tensile) orthodontic strain.
Identifiants
pubmed: 33333756
pii: ijms21249530
doi: 10.3390/ijms21249530
pmc: PMC7765204
pii:
doi:
Substances chimiques
Glycosaminoglycans
0
HIF1A protein, human
0
Hypoxia-Inducible Factor 1, alpha Subunit
0
Indazoles
0
Integrins
0
Prostaglandins
0
VEGFA protein, human
0
Vascular Endothelial Growth Factor A
0
dimethyloxallyl glycine
0
aminoquinuride
08T7936572
3-(5'-hydroxymethyl-2'-furyl)-1-benzylindazole
154453-18-6
Urea
8W8T17847W
Genistein
DH2M523P0H
Prostaglandin-Endoperoxide Synthases
EC 1.14.99.1
Focal Adhesion Kinase 1
EC 2.7.10.2
Glycine
TE7660XO1C
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Subventions
Organisme : Deutsche Forschungsgemeinschaft DFG (German Research Foundation)
ID : KI 2105 / 1-2
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