FAK activity sustains intrinsic and acquired ovarian cancer resistance to platinum chemotherapy.
Ontology highlight
ABSTRACT: Gene copy number alterations, tumor cell stemness, and the development of platinum chemotherapy resistance contribute to high-grade serous ovarian cancer (HGSOC) recurrence. Stem phenotypes involving Wnt-β-catenin, aldehyde dehydrogenase activities, intrinsic platinum resistance, and tumorsphere formation are here associated with spontaneous gains in Kras, Myc and FAK (KMF) genes in a new aggressive murine model of ovarian cancer. Adhesion-independent FAK signaling sustained KMF and human tumorsphere proliferation as well as resistance to cisplatin cytotoxicity. Platinum-resistant tumorspheres can acquire a dependence on FAK for growth. Accordingly, increased FAK tyrosine phosphorylation was observed within HGSOC patient tumors surviving neo-adjuva
SUBMITTER: Diaz Osterman CJ
PROVIDER: S-EPMC6721800 | biostudies-literature | 2019 Sep
REPOSITORIES: biostudies-literature
ACCESS DATA