| Literature DB >> 29330760 |
Taras Afonyushkin1,2, Olga V Oskolkova3,2, Valery N Bochkov4,5.
Abstract
Receptor tyrosine kinase c-Kit and its ligand stem cell factor (SCF) regulate resident vascular wall cells and recruit circulating progenitors. We tested whether SCF may be induced by oxidized palmitoyl-arachidonoyl-phosphatidylcholine (OxPAPC) known to accumulate in atherosclerotic vessels. Gene expression analysis demonstrated OxPAPC-induced upregulation of SCF mRNA and protein in different types of endothelial cells (ECs). Elevated levels of SCF mRNA were observed in aortas of ApoE-/- knockout mice. ECs produced biologically active SCF because conditioned medium from OxPAPC-treated cells stimulated activation (phosphorylation) of c-Kit in naïve ECs. Induction of SCF by OxPAPC was inhibited by knocking down transcription factor NRF2. Inhibition or stimulation of NRF2 by pharmacological or molecular tools induced corresponding changes in SCF expression. Finally, we observed decreased levels of SCF mRNA in aortas of NRF2 knockout mice. We characterize OxPLs as a novel pathology-associated stimulus inducing expression of SCF in endothelial cells. Furthermore, our data point to transcription factor NRF2 as a major mediator of OxPL-induced upregulation of SCF. This mechanism may represent one of the facets of pleiotropic action of NRF2 in vascular wall.Entities:
Keywords: Atherosclerosis; Electrophilic stress response; NRF2; Oxidized phospholipids; SCF; c-Kit
Mesh:
Substances:
Year: 2018 PMID: 29330760 PMCID: PMC5878191 DOI: 10.1007/s10456-017-9590-5
Source DB: PubMed Journal: Angiogenesis ISSN: 0969-6970 Impact factor: 9.596
Fig. 1SCF mRNA is induced in endothelial and monocytic cells by OxPLs and PGA2 in a time- and concentration-dependent manner a Endothelial cells were stimulated with OxPAPC (100 µg/ml, 6 h). Total RNA was extracted using Trizol reagent and analyzed by microarray hybridization (HCAEC; three independent experiments and hybridizations) or qRT-PCR (HAEC, HUVEC; quadruplicate samples from one representative experiment out of three). Levels of SCF mRNA were normalized to β2-microglobulin mRNA. b HUVECs were stimulated with OxPAPC (100 µg/ml) for indicated time periods, followed by analysis of SCF mRNA. c HUVECs were treated with indicated concentrations of OxPAPC for 6 h. qRT-PCR was used for SCF mRNA quantification. d, e Levels of SCF mRNA were analyzed in aortas of aged (12 months old) wild type and ApoE− mice (d) or in aortas of wild type and ApoE− young animals fed for 8 weeks either with chow (6.5% fat) or high-fat diet (15% fat) (e). Total RNA was prepared from homogenized aortas using Trizol reagent. SCF mRNA expression was analyzed by qRT-PCR and normalized to β2-microglobulin mRNA levels
Fig. 2OxPAPC induces expression of cell-associated and secreted SCF protein and stimulates c-Kit phosphorylation. a Two forms of SCF mRNA were quantified in OxPAPC-stimulated HUVECs (100 µg/ml, 6 h) by qRT-PCR using primers selective for individual splice variants. b SCF protein was analyzed by ELISA in extracts of HUVECs or in conditioned media after 12 h of stimulation with 100 µg/ml OxPAPC. c Conditioned media produced by cells stimulated with indicated concentrations of OxPAPC stimulate phosphorylation of c-Kit receptor in HUVECs. d Panel presents ELISA data on the levels of SCF protein in conditioned media. e Pretreatment of cells with c-Kit tyrosine kinase inhibitor imatinib (30 min, 20 µM) attenuated c-Kit phosphorylation in HUVECs incubated with conditioned media from OxPAPC-stimulated cells
Fig. 3Induction of SCF by OxPAPC depends on the transcription factor NRF2. a, b, c and d HUVECs were transfected with siRNAs targeting ATF4 (a), PERK (b), NRF2 (c), or KEAP (d). Twenty-four hours after transfection cells were stimulated with OxPAPC (100 µg/ml, 6 h). Levels of SCF mRNA were analyzed by qRT-PCR in total RNA prepared using Trizol reagent and normalized to β2-microglobulin mRNA. e Protein kinase CK2 inhibitor TBB attenuates induction of SCF by OxPAPC. Cells were pretreated with TBB (20 µM, 30 min) and thereafter stimulated with OxPAPC (100 µg/ml, 6 h); SCF mRNA was quantified as described above. f miR-155 potentiates induction of SCF by OxPAPC. HUVECs were transfected with the RNA oligonucleotide mimicking miR-155 for 24 h and stimulated by OxPAPC (100 µg/ml, 6 h). Levels of SCF mRNA were quantified by qRT-PCR. g Steady-state levels of SCF mRNA are decreased in aortas of NRF2− mice. Total RNA was prepared from aortas of 6 months old NRF2− or wild-type mice and analyzed by qRT-PCR method. The levels of NRF2 mRNA were normalized to β2-microglobulin mRNA