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Breast Cancer Research
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Breast Cancer Research
Article
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Breast Cancer Research
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Targeting IL13Ralpha2 activates STAT6-TP63 pathway to suppress breast cancer lung metastasis

Authors: Papageorgis, P.; Ozturk, S.; Lambert, A. W.; Neophytou, Christiana M.; Tzatsos, Alexandros; Wong, C. K.; Thiagalingam, S.; +9 Authors

Targeting IL13Ralpha2 activates STAT6-TP63 pathway to suppress breast cancer lung metastasis

Abstract

Abstract Introduction Basal-like breast cancer (BLBC) is an aggressive subtype often characterized by distant metastasis, poor patient prognosis, and limited treatment options. Therefore, the discovery of alternative targets to restrain its metastatic potential is urgently needed. In this study, we aimed to identify novel genes that drive metastasis of BLBC and to elucidate the underlying mechanisms of action. Methods An unbiased approach using gene expression profiling of a BLBC progression model and in silico leveraging of pre-existing tumor transcriptomes were used to uncover metastasis-promoting genes. Lentiviral-mediated knockdown of interleukin-13 receptor alpha 2 (IL13Ralpha2) coupled with whole-body in vivo bioluminescence imaging was performed to assess its role in regulating breast cancer tumor growth and lung metastasis. Gene expression microarray analysis was followed by in vitro validation and cell migration assays to elucidate the downstream molecular pathways involved in this process. Results We found that overexpression of the decoy receptor IL13Ralpha2 is significantly enriched in basal compared with luminal primary breast tumors as well as in a subset of metastatic basal-B breast cancer cells. Importantly, breast cancer patients with high-grade tumors and increased IL13Ralpha2 levels had significantly worse prognosis for metastasis-free survival compared with patients with low expression. Depletion of IL13Ralpha2 in metastatic breast cancer cells modestly delayed primary tumor growth but dramatically suppressed lung metastasis in vivo. Furthermore, IL13Ralpha2 silencing was associated with enhanced IL-13-mediated phosphorylation of signal transducer and activator of transcription 6 (STAT6) and impaired migratory ability of metastatic breast cancer cells. Interestingly, genome-wide transcriptional analysis revealed that IL13Ralpha2 knockdown and IL-13 treatment cooperatively upregulated the metastasis suppressor tumor protein 63 (TP63) in a STAT6-dependent manner. These observations are consistent with increased metastasis-free survival of breast cancer patients with high levels of TP63 and STAT6 expression and suggest that the STAT6-TP63 pathway could be involved in impairing metastatic dissemination of breast cancer cells to the lungs. Conclusion Our findings indicate that IL13Ralpha2 could be used as a promising biomarker to predict patient outcome and provide a rationale for assessing the efficacy of anti-IL13Ralpha2 therapies in a subset of highly aggressive basal-like breast tumors as a strategy to prevent metastatic disease.

Country
Cyprus
Keywords

Lung Neoplasms, cell migration, STAT6 protein, cancer inhibition, interleukin 13 receptor alpha2, animal cell, recurrence free survival, metastasis free survival, lung tumor, gene silencing, genetics, Neoplasm Metastasis, Phosphorylation, disease free survival, transcription factor, Medicine(all), basal like breast cancer, breast tumor, phosphorylation, lung metastasis, metastasis inhibition, gene expression regulation, Prognosis, molecular mechanics, bioluminescence, Gene Expression Regulation, Neoplastic, female, cancer grading, Female, secondary, Lentivirinae, signal transduction, Research Article, Signal Transduction, in vitro study, gene overexpression, animal experiment, Breast Neoplasms, cancer prognosis, Article, Disease-Free Survival, animal tissue, in vivo study, STAT3 protein, Cell Line, Tumor, breast cancer cell line, TP63 protein, human, protein targeting, gene expression profiling, metastasis, Humans, controlled study, human, procedures, protein expression, mouse, tumor suppressor protein, gene identification, nonhuman, protein depletion, human cell, animal model, Gene Expression Profiling, Tumor Suppressor Proteins, genetic transcription, tumor cell line, prediction, protein p63, protein phosphorylation, STAT6 protein, human, tumor marker, gene expression, Interleukin-13 Receptor alpha2 Subunit, interleukin 13, cell migration assay, pathology, prognosis, microarray analysis, computer model, STAT6 Transcription Factor, transcriptome, upregulation, Transcription Factors

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selected citations
These citations are derived from selected sources.
This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Citations provided by BIP!
popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Influence provided by BIP!
impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
BIP!Impulse provided by BIP!
76
Top 10%
Top 10%
Top 10%
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