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    RAC1B function is essential for breast cancer stem cell maintenance and chemoresistance of breast tumor cells

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    Authors
    Chen, Fuhui
    Gurler, Sevim B
    Novo, D.
    Selli, C.
    Alferez, Denis G
    Eroglu, Secil
    Pavlou, Kyriaki
    Zhang, Jingwei
    Sims, A. H.
    Humphreys, N. E.
    Adamson, A.
    Campbell, A.
    Sansom, O. J.
    Tournier, Cathy
    Clarke, Robert B
    Brennan, Keith
    Streuli, C. H.
    Ucar, Ahmet
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    Affiliation
    Manchester Breast Centre, Division of Cancer Sciences, School of Medical Sciences, Faculty of Biology, Medicine and Health, University of Manchester, Manchester, UK
    Issue Date
    2023
    
    Metadata
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    Abstract
    Breast cancer stem cells (BCSC) are presumed to be responsible for treatment resistance, tumor recurrence and metastasis of breast tumors. However, development of BCSC-targeting therapies has been held back by their heterogeneity and the lack of BCSC-selective molecular targets. Here, we demonstrate that RAC1B, the only known alternatively spliced variant of the small GTPase RAC1, is expressed in a subset of BCSCs in vivo and its function is required for the maintenance of BCSCs and their chemoresistance to doxorubicin. In human breast cancer cell line MCF7, RAC1B is required for BCSC plasticity and chemoresistance to doxorubicin in vitro and for tumor-initiating abilities in vivo. Unlike Rac1, Rac1b function is dispensable for normal mammary gland development and mammary epithelial stem cell (MaSC) activity. In contrast, loss of Rac1b function in a mouse model of breast cancer hampers the BCSC activity and increases their chemosensitivity to doxorubicin treatment. Collectively, our data suggest that RAC1B is a clinically relevant molecular target for the development of BCSC-targeting therapies that may improve the effectiveness of doxorubicin-mediated chemotherapy.
    Citation
    Chen F, Gurler SB, Novo D, Selli C, Alferez DG, Eroglu S, et al. RAC1B function is essential for breast cancer stem cell maintenance and chemoresistance of breast tumor cells. Oncogene. 2023 Jan 5. PubMed PMID: 36599922. Epub 2023/01/05. eng.
    Journal
    Oncogene
    URI
    http://hdl.handle.net/10541/625939
    DOI
    10.1038/s41388-022-02574-6
    PubMed ID
    36599922
    Additional Links
    https://dx.doi.org/10.1038/s41388-022-02574-6
    Type
    Article
    Language
    en
    ae974a485f413a2113503eed53cd6c53
    10.1038/s41388-022-02574-6
    Scopus Count
    Collections
    All Paterson Institute for Cancer Research

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