The heparan sulfate proteoglycan syndecan-1 regulates colon cancer stem cell function via a focal adhesion kinase-Wnt signaling axisOpen Access

Kumar Katakam S, Tria V, Sim WC, Yip GW, Molgora S, Karnavas T, Elghonaimy EA, Pelucchi P, Piscitelli E, Ibrahim SA, Zucchi I, Reinbold R, Greve B, Götte M.

Research article (journal) | Peer reviewed

Abstract

In colon cancer, downregulation of the transmembrane heparan sulfate proteoglycan syndecan-1 (Sdc-1) is associated with increased invasiveness, metastasis, and dedifferentiation. As Sdc-1 modulates signaling pathways relevant to stem cell function, we tested the hypothesis that it may regulate a tumor-initiating cell phenotype. Sdc-1 small-interfering RNA knockdown in the human colon cancer cell lines Caco2 and HT-29 resulted in an increased side population (SP), enhanced aldehyde dehydrogenase 1 activity, and higher expression of CD133, LGR5, EPCAM, NANOG, SRY (sex-determining region Y)-box 2, KLF2, and TCF4/TCF7L2. Sdc-1 knockdown enhanced sphere formation, cell viability, Matrigel invasiveness, and epithelial-to-mesenchymal transition-related gene expression. Sdc-1-depleted HT-29 xenograft growth was increased compared to controls. Decreased Sdc-1 expression was associated with an increased activation of β1-integrins, focal adhesion kinase (FAK), and wingless-type (Wnt) signaling. Pharmacological FAK and Wnt inhibition blocked the enhanced stem cell phenotype and invasive growth. Sequential flow cytometric SP enrichment substantially enhanced the stem cell phenotype of Sdc-1-depleted cells, which showed increased resistance to doxorubicin chemotherapy and irradiation. In conclusion, Sdc-1 depletion cooperatively enhances activation of integrins and FAK, which then generates signals for increased invasiveness and cancer stem cell properties. Our findings may provide a novel concept to target a stemness-associated signaling axis as a therapeutic strategy to reduce metastatic spread and cancer recurrence.

Details about the publication

JournalThe FEBS Journal (FEBS J)
Volume2020
Statusonline first
Release year2020 (01/05/2020)
Language in which the publication is writtenEnglish
DOI10.1111/febs.15356
Link to the full texthttps://doi.org/10.1111/febs.15356
KeywordsKrebsforschung; Stammzellforschung; Strahlentherapie

Authors from the University of Münster

Götte, Martin
Department of Gynecology and Obstetrics
Greve, Burkhard
Clinic for Radiotherapy

Projects the publication originates from

Duration: 01/07/2015 - 30/06/2019
Funded by: EC H2020 - Marie Skłodowska-Curie Actions - Research and Innovation Staff Exchange
Type of project: EU-project hosted at University of Münster
Duration: 01/01/2010 - 31/12/2012
Funded by: German-Israeli Foundation for Scientific Research and Development
Type of project: Individual project
Duration: 10/03/2009 - 31/03/2014 | 1st Funding period
Funded by: DFG - International Research Training Group
Type of project: Main DFG-project hosted at University of Münster

Promotionen, aus denen die Publikation resultiert

Syndecan-1 and heparanase as novel regulators of colon cancer stem cell function
Candidate: Kumar Katakam, Sampath | Supervisors: Götte, Martin; Moerschbacher, Bruno; Greve, Burkhard
Period of time: 01/09/2011 - 01/04/2015
Doctoral examination procedure finished at: Doctoral examination procedure at University of Münster