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Crosstalk between 1,25(OH)2-Vitamin D3 and the growth factors EGF and PDGF-BB: Impact on CYP24A1 expression and cell proliferation
Uppsala universitet, Medicinska och farmaceutiska vetenskapsområdet, Farmaceutiska fakulteten, Institutionen för farmaceutisk biovetenskap. (Johan Lennartsson)ORCID-id: 0000-0002-6058-5966
Uppsala universitet, Medicinska och farmaceutiska vetenskapsområdet, Farmaceutiska fakulteten, Institutionen för farmaceutisk biovetenskap. (Johan Lennartsson)ORCID-id: 0000-0003-1195-3539
Uppsala universitet, Medicinska och farmaceutiska vetenskapsområdet, Farmaceutiska fakulteten, Institutionen för farmaceutisk biovetenskap.ORCID-id: 0000-0002-0915-5303
Uppsala universitet, Medicinska och farmaceutiska vetenskapsområdet, Farmaceutiska fakulteten, Institutionen för farmaceutisk biovetenskap.ORCID-id: 0000-0003-2883-1925
Vise andre og tillknytning
2024 (engelsk)Inngår i: Biochemical and Biophysical Research Communications - BBRC, ISSN 0006-291X, E-ISSN 1090-2104, Vol. 736, artikkel-id 150866Artikkel i tidsskrift (Fagfellevurdert) Published
Abstract [en]

This study explored the signaling interplay between the vitamin D receptor (VDR) and receptor tyrosine kinases (RTKs). Epidermal growth factor (EGF) and platelet-derived growth factor (PDGF)-BB promotes cell proliferation in normal and cancer cells. At the same time, the active form of vitamin D (1,25(OH)2-vitamin D3) inhibits proliferation in some cells. Although EGF receptors (EGFR) and PDGF receptors (PDGFR) activate similar downstream pathways, we found that they interact with VDR signaling in distinct ways. We confirmed that 1,25(OH)2-vitamin D3 induces CYP24A1 gene expression in U2OS, T98G, and U251 cells. We found this to be potentiated when combined with EGF. In contrast, PDGF-BB did not impact 1,25(OH)2-vitamin D3-induced CYP24A1 expression in U2OS cells. The increase in CYP24A1 expression due to the combined action of EGF and 1,25(OH)2-vitamin D3 was dependent on AKT and ERK1/2 activation. Another VDR-responsive gene, CYP27B1, was unaffected by the addition of EGF, suggesting that EGF may have gene-specific effects on VDR signaling. While PDGF-BB did not influence CYP24A1 expression, 1,25(OH)2-vitamin D3 significantly influenced PDGF-BB-induced receptor phosphorylation and cell proliferation. In summary, we found that EGF, but not PDGF-BB, influenced the expression of the VDR-dependent gene CYP24A1, while 1,25(OH)2-vitamin D3 had an inhibitory effect on PDGFR signaling and proliferation. These findings highlight unique crosstalk between 1,25(OH)2-vitamin D3 signaling and EGF or PDGF-BB.

sted, utgiver, år, opplag, sider
Elsevier, 2024. Vol. 736, artikkel-id 150866
Emneord [en]
EGF, PDGF, Vitamin D3, CYP24A1, ERK1/2, Proliferation, Crosstalk
HSV kategori
Identifikatorer
URN: urn:nbn:se:uu:diva-531217DOI: 10.1016/j.bbrc.2024.150866ISI: 001343747900001OAI: oai:DiVA.org:uu-531217DiVA, id: diva2:1868791
Forskningsfinansiär
Swedish Cancer Society, 211427Pj01HSwedish Cancer Society, 222306Pj
Merknad

Title and authors in the list of papers of Erik Wåhlén's thesis: Olsson, F., Wåhlén, E., Lennartsson, J., Maria, N. Unique signaling cross-talk between 1,25(OH) 2 -vitamin D3 and the growth factors EGF and PDGF

Tilgjengelig fra: 2024-06-12 Laget: 2024-06-12 Sist oppdatert: 2025-08-12bibliografisk kontrollert
Inngår i avhandling
1. Regulation and signal transduction of the platelet-derived growth factor receptor and the epidermal growth factor receptor
Åpne denne publikasjonen i ny fane eller vindu >>Regulation and signal transduction of the platelet-derived growth factor receptor and the epidermal growth factor receptor
2024 (engelsk)Doktoravhandling, med artikler (Annet vitenskapelig)
Abstract [en]

Receptor tyrosine kinases (RTKs) are crucial regulators of cellular processes, including growth, differentiation, and survival. They function by transmitting extracellular signals through membrane receptors to intracellular signaling pathways. Among these RTKs, the platelet-derived growth factor receptors (PDGFRs) and the epidermal growth factor receptor (EGFR) are vital for maintaining cellular homeostasis and are implicated in various pathological conditions, including cancer. In addition to these pathways, nuclear receptors such as the vitamin D receptor (VDR) also play a significant role in modulating cellular functions. The VDR regulates gene expression in response to the active form of vitamin D, and its cross-talk with RTK pathways offers a complex layer of regulatory control that affects cellular proliferation and differentiation.

This thesis investigates the complex signaling mechanisms of PDGFRs and EGFR, emphasizing the influence of lipid rafts, Rho GTPases, and cross-talk with vitamin D receptor (VDR) signaling.

Paper I focuses on the consequences of lipid raft disruption on PDGFR-β signaling. The research highlights that disrupting lipid rafts alters the association of PDGFR-β with some of its downstream signaling components, reducing the activity of ERK1/2 and AKT in BJ-hTERT fibroblasts and AKT and Src in U2OS osteosarcoma cells. 

Paper II explores the differential impact of cholesterol depletion on EGFR and PDGFR-β signaling. We found that EGFR and PDGFR-β internalize into distinct compartments after activation, converging only after prolonged stimulation. Cholesterol depletion enhanced EGFR dimerization and activation while reducing downstream AKT and ERK1/2 phosphorylation, suggesting distinct membrane microdomain dependencies for these receptors.

Paper III explores the impact of Rho GTPase depletion on the phosphorylation and internalization of PDGFR-α and -β. The findißngs suggest that the depletion of Cdc42, Rac1, or RhoA significantly diminishes PDGFR phosphorylation, and downstream stability of STAT1 and activation of STAT1 and STAT3 indicating that these Rho GTPases are integral for the optimal signaling of PDGFRs.

Paper IV examines the cross-talk between VDR and RTK signaling. We discovered that EGF, but not PDGF-BB, enhances VDR-mediated CYP24A1 expression, indicating a selective interaction between these pathways. Additionally, 1,25(OH)2-vitamin D3 inhibited PDGF-BB-induced proliferation and PDGFR-β phosphorylation, revealing a complex interplay.

Collectively, these studies elucidate the nuanced regulatory mechanisms of PDGFRs and EGFR, emphasizing the roles of lipid rafts, Rho GTPases, and cross-talk with nuclear receptors. 

sted, utgiver, år, opplag, sider
Uppsala: Acta Universitatis Upsaliensis, 2024. s. 57
Serie
Digital Comprehensive Summaries of Uppsala Dissertations from the Faculty of Pharmacy, ISSN 1651-6192 ; 354
Emneord
Receptor Tyrosine Kinases (RTKs), Platelet-Derived Growth Factor Receptors (PDGFR), Epidermal Growth Factor Receptor (EGFR), Signal Transduction, Lipid Rafts, Rho GTPases, Vitamin D Receptor (VDR) Signaling, Endocytosis, Cross-Talk, AKT Pathway, STAT pathway, ERK1/2 Pathway.
HSV kategori
Identifikatorer
urn:nbn:se:uu:diva-531567 (URN)978-91-513-2162-2 (ISBN)
Disputas
2024-09-06, B21, BMC, Husargatan 3, Uppsala, 09:15 (engelsk)
Opponent
Veileder
Forskningsfinansiär
Swedish Cancer Society, 21 1427 Pj 01H
Tilgjengelig fra: 2024-08-09 Laget: 2024-06-14 Sist oppdatert: 2025-02-20
2. Steroid and Tyrosine Kinase Receptor Signaling: Implications for Cell Functions
Åpne denne publikasjonen i ny fane eller vindu >>Steroid and Tyrosine Kinase Receptor Signaling: Implications for Cell Functions
2025 (engelsk)Doktoravhandling, med artikler (Annet vitenskapelig)
Abstract [en]

Cell communication mediated by growth factors and steroid hormones plays a critical role in regulating proliferation, migration and survival. Dysregulation of these signaling pathways is commonly implicated in the progression of cancer. Among steroid hormones, vitamin D metabolites, in particular 1α,25-dihydroxyvitamin D3 have demonstrated anti-tumor properties. In paper I, we investigated the effects of 1α,25-dihydroxyvitamin D3 and its analog tacalcitol on cell signaling and anchorage-independent growth in glioblastoma cell lines T98G and U251. Both compounds modulated key signaling proteins, including STAT3 and suppressed anchorage-independent growth, supporting their potential to reduce tumorigenicity in glioblastoma. The effects of tacalcitol were stronger than for 1α,25-dihydroxyvitamin D3, indicating that even minor modifications of vitamin D can impact its effect on signaling. In paper II, we explored the role of protein disulphide-isomerase A3 (PDIA3), an alternative receptor for 1α,25-dihydroxyvitamin D3-mediated signaling. Silencing PDIA3 in prostate cancer (PC3, DU145) cells disrupted proliferation, increased migration, and altered the expression of vitamin D-regulating enzymes and transcription factors. Cellular thermal shift assay indicated that 1α,25-dihydroxyvitamin D3 directly or indirectly interacts with PDIA3, suggesting PDIA3 involvement in mediating 1α,25-dihydroxyvitamin D3 responses. In paper III, we studied the crosstalk between 1α,25-dihydroxyvitamin D3 and the growth factors epidermal growth factor (EGF) and platelet-derived growth factor (PDGF) -BB in U2OS cells. EGF enhanced vitamin D-induced expression of the catabolic enzyme CYP24A1 via AKT and ERK1/2 pathways, while 1α,25-dihydroxyvitamin D3 suppressed PDGF-induced proliferation and receptor phosphorylation, highlighting reciprocal regulation between 1α,25-dihydroxyvitamin D3 and growth factor signaling. In paper IV, we examined the effects of the oxidized cholesterol derivative 24-hydroxycholesterol in T98G glioblastoma cells. 24-hydroxycholesterol altered the cell morphology, suppressed proliferation and enhanced migration. 24-hydroxycholesterol increased the expression of epithelial-to-mesenchymal transition markers in a liver X receptor (LXR)-dependent manner. This thesis provides insight into the effects of 1α,25-dihydroxyvitamin D3-mediated signaling in the regulation of cancer cell behavior and crosstalk with growth factor signaling involving EGF and PDGF. The thesis supports the role of PDIA3 in 1α,25-dihydroxyvitamin D3-signaling responses. By modulating key pathways that control proliferation, migration, and differentiation, 1α,25-dihydroxyvitamin D3 and vitamin D analogs demonstrate mechanisms that may contribute to anti-cancer activity and offer potential targets for therapeutic intervention.

sted, utgiver, år, opplag, sider
Uppsala: Acta Universitatis Upsaliensis, 2025. s. 78
Serie
Digital Comprehensive Summaries of Uppsala Dissertations from the Faculty of Pharmacy, ISSN 1651-6192 ; 382
Emneord
1α, 25-dihydroxyvitamin D₃, Cell Signaling, Crosstalk, Vitamin D Analog, Protein Disulphide-Isomerase A3 (PDIA3), Platelet-Derived Growth Factor (PDGF), Epidermal Growth Factor (EGF), 24-Hydroxycholesterol, Proliferation, Migration.
HSV kategori
Identifikatorer
urn:nbn:se:uu:diva-564673 (URN)978-91-513-2553-8 (ISBN)
Disputas
2025-10-03, B7:101, BMC, Husargatan 3, Uppsala, 09:15 (engelsk)
Opponent
Veileder
Tilgjengelig fra: 2025-09-09 Laget: 2025-08-12 Sist oppdatert: 2025-09-09

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