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Published on: February 20, 2017
LMTK3 confers chemo-resistance in breast cancer
Justin Stebbing1, Kalpit Shah2, Lei Cheng Lit1,3
1Department of Surgery and Cancer, Division of Cancer, Imperial College London, Hammersmith Hospital Campus, Du Cane Road, London, W12 ONN, UK.
Abstract:
Lemur tyrosine kinase 3 (LMTK3) is an oncogenic kinase that is involved in different types of cancer (breast, lung, gastric, colorectal) and biological processes including proliferation, invasion, migration, chromatin remodeling as well as innate and acquired endocrine resistance. However, the role of LMTK3 in response to cytotoxic chemotherapy has not been investigated thus far. Using both 2D and 3D tissue culture models, we found that overexpression of LMTK3 decreased the sensitivity of breast cancer cell lines to cytotoxic (doxorubicin) treatment. In a mouse model we showed that ectopic overexpression of LMTK3 decreases the efficacy of doxorubicin in reducing tumor growth. Interestingly, breast cancer cells overexpressing LMTK3 delayed the generation of double strand breaks (DSBs) after exposure to doxorubicin, as measured by the formation of γH2AX foci. This effect was at least partly mediated by decreased activity of ataxia-telangiectasia mutated kinase (ATM) as indicated by its reduced phosphorylation levels. In addition, our RNA-seq analyses showed that doxorubicin differentially regulated the expression of over 700 genes depending on LMTK3 protein expression levels. Furthermore, these genes were found to promote DNA repair, cell viability and tumorigenesis processes / pathways in LMTK3-overexpressing MCF7 cells. In human cancers, immunohistochemistry staining of LMTK3 in pre- and post-chemotherapy breast tumor pairs from four separate clinical cohorts revealed a significant increase of LMTK3 following both doxorubicin and docetaxel based chemotherapy. In aggregate, our findings show for the first time a contribution of LMTK3 in cytotoxic drug resistance in breast cancer.
Insights
Lemur tyrosine kinase 3 (LMTK3) increases breast cancer resistance to chemotherapy by delaying DNA damage repair. LMTK3 overexpression reduces doxorubicin efficacy and is elevated after chemotherapy in patients.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Lemur tyrosine kinase 3 (LMTK3) is implicated in various cancers and endocrine resistance.
- The role of LMTK3 in response to cytotoxic chemotherapy remains unexplored.
Purpose of the Study:
- To investigate the role of LMTK3 in breast cancer sensitivity to cytotoxic chemotherapy.
- To elucidate the molecular mechanisms underlying LMTK3's effect on chemotherapy response.
Main Methods:
- Utilized 2D and 3D breast cancer cell culture models and a mouse xenograft model.
- Assessed DNA double-strand break (DSB) formation via γH2AX foci and measured ataxia-telangiectasia mutated kinase (ATM) activity.
- Performed RNA-sequencing (RNA-seq) analysis and immunohistochemistry on clinical tumor samples.
Main Results:
- LMTK3 overexpression decreased sensitivity to doxorubicin in vitro and in vivo.
- LMTK3 overexpression delayed doxorubicin-induced DSB formation, partly via reduced ATM activity.
- RNA-seq identified LMTK3-dependent gene expression changes promoting DNA repair and cell viability.
- LMTK3 levels significantly increased in patient tumors post-chemotherapy (doxorubicin, docetaxel).
Conclusions:
- LMTK3 contributes to cytotoxic chemotherapy resistance in breast cancer.
- LMTK3 overexpression confers resistance by impairing DNA damage response pathways.
- Elevated LMTK3 following chemotherapy suggests a role in acquired resistance.
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