Syndecan-1 Depletion Has a Differential Impact on Hyaluronic Acid Metabolism and Tumor Cell Behavior in Luminal and Triple-Negative Breast Cancer Cells

Glycosaminoglycans (GAGs) and proteoglycans (PGs) are major components of the glycocalyx. The secreted GAG and CD44 ligand hyaluronic acid (HA), and the cell surface PG syndecan-1 (Sdc-1) modulate the expression and activity of cytokines, chemokines, growth factors, and adhesion molecules, acting as...

Verfasser: Valla, Sofía
Hassan, Nourhan
Luján Vitale, Daiana
Madanes, Daniela
Spinelli, Fiorella Mercedes
Teixeira, Felipe C. O. B.
Greve, Burkhard
Espinoza-Sánchez, Nancy Adriana
Cristina, Carolina
Alaniz, Laura
Götte, Martin
Dokumenttypen:Artikel
Medientypen:Text
Erscheinungsdatum:2021
Publikation in MIAMI:29.08.2022
Datum der letzten Änderung:29.08.2022
Angaben zur Ausgabe:[Electronic ed.]
Quelle:International Journal of Molecular Sciences 22 (2021) 11, 5874, 1-24
Schlagwörter:syndecan-1; hyaluronic acid; breast cancer; stem cells; apoptosis; angiogenesis
Fachgebiet (DDC):610: Medizin und Gesundheit
Lizenz:CC BY 4.0
Sprache:English
Förderung:Finanziert durch den Open-Access-Publikationsfonds der Westfälischen Wilhelms-Universität Münster (WWU Münster).
Format:PDF-Dokument
URN:urn:nbn:de:hbz:6-52099545900
Weitere Identifikatoren:DOI: 10.17879/53009588754
Permalink:https://nbn-resolving.de/urn:nbn:de:hbz:6-52099545900
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  • Onlinezugriff:10.3390_ijms22115874.pdf

    Glycosaminoglycans (GAGs) and proteoglycans (PGs) are major components of the glycocalyx. The secreted GAG and CD44 ligand hyaluronic acid (HA), and the cell surface PG syndecan-1 (Sdc-1) modulate the expression and activity of cytokines, chemokines, growth factors, and adhesion molecules, acting as critical regulators of tumor cell behavior. Here, we studied the effect of Sdc-1 siRNA depletion and HA treatment on hallmark processes of cancer in breast cancer cell lines of different levels of aggressiveness. We analyzed HA synthesis, and parameters relevant to tumor progression, including the stem cell phenotype, Wnt signaling constituents, cell cycle progression and apoptosis, and angiogenic markers in luminal MCF-7 and triple-negative MDA-MB-231 cells. Sdc-1 knockdown enhanced HAS-2 synthesis and HA binding in MCF-7, but not in MDA-MB-231 cells. Sdc-1-depleted MDA-MB-231 cells showed a reduced CD24-/CD44+ population. Furthermore, Sdc-1 depletion was associated with survival signals in both cell lines, affecting cell cycle progression and apoptosis evasion. These changes were linked to the altered expression of KLF4, MSI2, and miR-10b and differential changes in Erk, Akt, and PTEN signaling. We conclude that Sdc-1 knockdown differentially affects HA metabolism in luminal and triple-negative breast cancer model cell lines and impacts the stem phenotype, cell survival, and angiogenic factors.