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Published on: September 26, 2016
Involvement of a Transcription factor, Nfe2, in Breast Cancer Metastasis to Bone
Di Zhang1, Sadahiro Iwabuchi2, Tomohisa Baba1
1Division of Molecular Bioregulation, Cancer Research Institute, Kanazawa University, Kakuma-Machi, Kanazawa, Ishikawa 920-1192, Japan.
Abstract:
Patients with triple negative breast cancer (TNBC) is frequently complicated by bone metastasis, which deteriorates the life expectancy of this patient cohort. In order to develop a novel type of therapy for bone metastasis, we established 4T1.3 clone with a high capacity to metastasize to bone after orthotopic injection, from a murine TNBC cell line, 4T1.0. To elucidate the molecular mechanism underlying a high growth ability of 4T1.3 in a bone cavity, we searched for a novel candidate molecule with a focus on a transcription factor whose expression was selectively enhanced in a bone cavity. Comprehensive gene expression analysis detected enhanced Nfe2 mRNA expression in 4T1.3 grown in a bone cavity, compared with in vitro culture conditions. Moreover, Nfe2 gene transduction into 4T1.0 cells enhanced their capability to form intraosseous tumors. Moreover, Nfe2 shRNA treatment reduced tumor formation arising from intraosseous injection of 4T1.3 clone as well as another mouse TNBC-derived TS/A.3 clone with an augmented intraosseous tumor formation ability. Furthermore, NFE2 expression was associated with in vitro growth advantages of these TNBC cell lines under hypoxic condition, which mimics the bone microenvironment, as well as Wnt pathway activation. These observations suggest that NFE2 can potentially contribute to breast cancer cell survival in the bone microenvironment.
Insights
The transcription factor NFE2 promotes triple-negative breast cancer (TNBC) bone metastasis by enhancing tumor cell survival in the bone microenvironment. This finding offers a potential therapeutic target for TNBC bone metastasis.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Metastasis
Background:
- Triple-negative breast cancer (TNBC) frequently metastasizes to bone, significantly reducing patient survival.
- Understanding the molecular mechanisms of bone metastasis is crucial for developing targeted therapies.
Purpose of the Study:
- To identify molecular factors contributing to the high bone metastatic potential of TNBC.
- To investigate the role of transcription factors in TNBC cell adaptation to the bone microenvironment.
Main Methods:
- Establishment of a highly bone-metastatic murine TNBC cell line (4T1.3).
- Comprehensive gene expression analysis of TNBC cells in bone cavities versus in vitro.
- Gene transduction and shRNA-mediated knockdown of candidate genes (Nfe2).
- Assessment of intraosseous tumor formation and in vitro growth under hypoxic conditions.
Main Results:
- Enhanced Nfe2 mRNA expression was observed in 4T1.3 cells within bone cavities.
- Nfe2 gene transduction into 4T1.0 cells increased intraosseous tumor formation.
- Nfe2 knockdown reduced tumor formation in TNBC cell lines.
- NFE2 expression correlated with enhanced TNBC cell growth under hypoxia and Wnt pathway activation.
Conclusions:
- NFE2 plays a significant role in the survival and growth of TNBC cells in the bone microenvironment.
- NFE2 is a potential therapeutic target for treating TNBC bone metastasis.
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