Proteoglycans and glycosaminoglycans as regulators of cancer stem cell function and therapeutic resistanceOpen Access

Vitale D, Kumar Katakam S, Greve B, Jang B, Oh ES, Alaniz L, Götte M.

Forschungsartikel (Zeitschrift) | Peer reviewed

Zusammenfassung

In contrast to the bulk of the tumor, a subset of cancer cells called cancer stem cells (CSC; or tumor-initiating cells) is characterized by self-renewal, unlimited proliferative potential, expression of multidrug resistance proteins, active DNA repair capacity, apoptosis resistance, and a considerable developmental plasticity. Due to these properties, CSCs display increased resistance to chemo- and radiotherapy. Recent findings indicate that aberrant functions of proteoglycans (PGs) and glycosaminoglycans (GAGs) contribute substantially to the CSC phenotype and therapeutic resistance. In this review, we summarize how the diverse functions of the glycoproteins and carbohydrates facilitate acquisition and maintenance of the CSC phenotype, and how this knowledge can be exploited to develop novel anticancer therapies. For example, the large transmembrane chondroitin sulfate PG NG2/CSPG4 marks stem cell (SC) populations in brain tumors. Cell surface heparan sulfate PGs of the syndecan and glypican families modulate the stemness-associated Wnt, hedgehog, and notch signaling pathways, whereas the interplay of hyaluronan in the SC niche with CSC CD44 determines the maintenance of stemness and promotes therapeutic resistance. A better understanding of the molecular mechanisms by which PGs and GAGs regulate CSC function will aid the development of targeted therapeutic approaches which could avoid relapse after an otherwise successful conventional therapy. Chimeric antigen receptor T cells, PG-primed dendritic cells, PG-targeted antibody-drug conjugates, and inhibitory peptides and glycans have already shown highly promising results in preclinical models.

Details zur Publikation

FachzeitschriftThe FEBS Journal (FEBS J)
Jahrgang / Bandnr. / Volume286
Ausgabe / Heftnr. / Issue15
Seitenbereich2870-2882
StatusVeröffentlicht
Veröffentlichungsjahr2019 (27.06.2019)
Sprache, in der die Publikation verfasst istEnglisch
DOI10.1111/febs.14967
Link zum Volltextdoi: 10.1111/febs.14967
StichwörterStammzellforschung; Glykobiologie; Krebsforschung

Autor*innen der Universität Münster

Götte, Martin
Klinik für Frauenheilkunde und Geburtshilfe
Greve, Burkhard
Klinik für Strahlentherapie - Radioonkologie -

Projekte, aus denen die Publikation entstanden ist

Laufzeit: 01.07.2015 - 30.06.2019
Gefördert durch: EU H2020 - Marie Skłodowska-Curie Actions - Research and Innovation Staff Exchange
Art des Projekts: EU-Projekt koordiniert an der Universität Münster
Laufzeit: 10.03.2009 - 31.03.2014 | 1. Förderperiode
Gefördert durch: DFG - Internationales Graduiertenkolleg
Art des Projekts: DFG-Hauptprojekt koordiniert an der Universität Münster

Promotionen, aus denen die Publikation resultiert

Syndecan-1 and heparanase as novel regulators of colon cancer stem cell function
Promovend*in: Kumar Katakam, Sampath | Betreuer*innen: Götte, Martin; Moerschbacher, Bruno; Greve, Burkhard
Zeitraum: 01.09.2011 - 01.04.2015
Promotionsverfahren erfolgt(e) an: Promotionsverfahren an der Universität Münster