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Published on: June 13, 2014
The internally truncated LRP5 receptor presents a therapeutic target in breast cancer
Peyman Björklund1, Jessica Svedlund, Anna-Karin Olsson
1Department of Surgical Sciences, Endocrine Unit, Uppsala University, Uppsala University Hospital, Uppsala, Sweden.
Background:
Breast cancer is a common malignant disease, which may be caused by a number of genes deregulated by genomic or epigenomic events. Deregulated WNT/beta-catenin signaling with accumulation of beta-catenin is common in breast tumors, but mutations in WNT signaling pathway components have been rare. An aberrantly spliced internally truncated LRP5 receptor (LRP5Delta666-809, LRP5Delta) was shown recently to be resistant to DKK1 inhibition, and was required for beta-catenin accumulation in hyperparathyroid tumors and parathyroid tumor growth.
Methodology/Principal Findings:
Here we show, by reverse transcription PCR and Western blot analysis, that LRP5Delta is frequently expressed in breast tumors of different cancer stage (58-100%), including carcinoma in situ and metastatic carcinoma. LRP5Delta was required in MCF7 breast cancer cells for the non-phosphorylated active beta-catenin level, transcription activity of beta-catenin, cell growth in vitro, and breast tumor growth in a xenograft SCID mouse model. WNT3 ligand, but not WNT1 and WNT3A augmented the endogenous beta-catenin activity of MCF7 cells in a DKK1-insensitive manner. Furthermore, an anti-LRP5 antibody attenuated beta-catenin activity, inhibited cell growth, and induced apoptosis in LRP5Delta-positive MCF7 and T-47D breast cancer cells, but not in control cells.
Conclusions/Significance:
Our results suggest that the LRP5Delta receptor is strongly implicated in mammary gland tumorigenesis and that its aberrant expression present an early event during disease progression. LRP5 antibody therapy may have a significant role in the treatment of breast cancer.
Insights
Aberrantly spliced LRP5Delta receptor is frequently found in breast tumors, driving beta-catenin accumulation and tumor growth. LRP5Delta expression is an early event in breast cancer, suggesting LRP5 antibody therapy as a potential treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Breast cancer involves deregulated WNT/beta-catenin signaling, but pathway mutations are rare.
- An internally truncated LRP5 receptor (LRP5Delta) resists DKK1 inhibition and promotes beta-catenin accumulation.
- LRP5Delta is implicated in hyperparathyroid tumor growth.
Purpose of the Study:
- Investigate the role of LRP5Delta in breast cancer.
- Determine if LRP5Delta is a therapeutic target for breast cancer.
Main Methods:
- Reverse transcription PCR and Western blot analysis to detect LRP5Delta expression in breast tumors.
- In vitro studies using MCF7 and T-47D breast cancer cells.
- In vivo xenograft mouse model to assess tumor growth.
- Treatment with WNT ligands and anti-LRP5 antibody.
Main Results:
- LRP5Delta is frequently expressed (58-100%) in breast tumors across various stages.
- LRP5Delta is essential for active beta-catenin levels, transcription, and cell growth in vitro and in vivo.
- WNT3 ligand enhanced beta-catenin activity independently of DKK1.
- Anti-LRP5 antibody inhibited cell growth and induced apoptosis in LRP5Delta-positive cells.
Conclusions:
- Aberrant LRP5Delta expression is strongly implicated in mammary gland tumorigenesis and is an early event in disease progression.
- LRP5Delta receptor is a potential therapeutic target for breast cancer.
- LRP5 antibody therapy shows promise for treating breast cancer.
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