| Literature DB >> 34999735 |
Ramanpreet Kaur1,2, Chen Qian1,3, Anthony DiNatale1, Jieyi Zhang1, Michael Marchioli1, Darin Ipe1, Maria Castelli1,4, Chris M McNair5,6, Gaurav Kumar5, Olimpia Meucci1,7, Alessandro Fatatis8,9.
Abstract
Metastasis-initiating cells (MICs) display stem cell-like features, cause metastatic recurrences and defy chemotherapy, which leads to patients' demise. Here we show that prostate and breast cancer patients harbor contingents of tumor cells with high expression of CX3CR1, OCT4a (POU5F1), and NANOG. Impairing CX3CR1 expression or signaling hampered the formation of tumor spheroids by cell lines from which we isolated small subsets co-expressing CX3CR1 and stemness-related markers, similarly to patients' tumors. These rare CX3CR1High cells show transcriptomic profiles enriched in pathways that regulate pluripotency and endowed with metastasis-initiating behavior in murine models. Cancer cells lacking these features (CX3CR1Low) were capable of re-acquiring CX3CR1-associated features over time, implying that MICs can continuously emerge from non-stem cancer cells. CX3CR1 expression also conferred resistance to docetaxel, and prolonged treatment with docetaxel selected CX3CR1High phenotypes with de-enriched transcriptomic profiles for apoptotic pathways. These findings nominate CX3CR1 as a novel marker of stem-like tumor cells and provide conceptual ground for future development of approaches targeting CX3CR1 signaling and (re)expression as therapeutic means to prevent or contain metastasis initiation.Entities:
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Year: 2022 PMID: 34999735 PMCID: PMC8941631 DOI: 10.1038/s41388-021-02174-w
Source DB: PubMed Journal: Oncogene ISSN: 0950-9232 Impact factor: 8.756