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Updated: May 4, 2026

Monitoring Breast Cancer Growth and Metastatic Colony Formation in Mice using Bioluminescence
Published on: November 5, 2021
Metabotropic glutamate receptor-1 contributes to progression in triple negative breast cancer
Malathi Banda1, Cecilia L Speyer1, Sara N Semma2
1Department of Surgery, Wayne State University School of Medicine, Detroit, Michigan, United States of America ; Barbara Ann Karmanos Cancer Institute, Detroit, Michigan, United States of America.
Abstract:
TNBC is an aggressive breast cancer subtype that does not express hormone receptors (estrogen and progesterone receptors, ER and PR) or amplified human epidermal growth factor receptor type 2 (HER2), and there currently exist no targeted therapies effective against it. Consequently, finding new molecular targets in triple negative breast cancer (TNBC) is critical to improving patient outcomes. Previously, we have detected the expression of metabotropic glutamate receptor-1 (gene: GRM1; protein: mGluR1) in TNBC and observed that targeting glutamatergic signaling inhibits TNBC growth both in vitro and in vivo. In this study, we explored how mGluR1 contributes to TNBC progression, using the isogenic MCF10 progression series, which models breast carcinogenesis from nontransformed epithelium to malignant basal-like breast cancer. We observed that mGluR1 is expressed in human breast cancer and that in MCF10A cells, which model nontransformed mammary epithelium, but not in MCF10AT1 cells, which model atypical ductal hyperplasia, mGluR1 overexpression results in increased proliferation, anchorage-independent growth, and invasiveness. In contrast, mGluR1 knockdown results in a decrease in these activities in malignant MCF10CA1d cells. Similarly, pharmacologic inhibition of glutamatergic signaling in MCF10CA1d cells results in a decrease in proliferation and anchorage-independent growth. Finally, transduction of MCF10AT1 cells, which express c-Ha-ras, using a lentiviral construct expressing GRM1 results in transformation to carcinoma in 90% of resultant xenografts. We conclude that mGluR1 cooperates with other factors in hyperplastic mammary epithelium to contribute to TNBC progression and therefore propose that glutamatergic signaling represents a promising new molecular target for TNBC therapy.
Insights
Metabotropic glutamate receptor-1 (mGluR1) drives triple-negative breast cancer (TNBC) progression. Targeting glutamatergic signaling may offer new therapeutic strategies for TNBC patients.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Triple-negative breast cancer (TNBC) lacks targeted therapies due to its aggressive nature and absence of hormone receptors (ER, PR) and HER2.
- Identifying novel molecular targets is crucial for improving TNBC patient outcomes.
- Previous studies indicated metabotropic glutamate receptor-1 (mGluR1) expression in TNBC and its role in inhibiting tumor growth via glutamatergic signaling.
Purpose of the Study:
- To investigate the role of mGluR1 in TNBC progression.
- To explore glutamatergic signaling as a potential therapeutic target for TNBC.
Main Methods:
- Utilized the isogenic MCF10 cell line progression series to model breast carcinogenesis.
- Assessed mGluR1 expression and its functional impact on proliferation, anchorage-independent growth, and invasiveness.
- Employed mGluR1 knockdown and pharmacologic inhibition of glutamatergic signaling.
- Investigated the oncogenic potential of GRM1 (gene for mGluR1) in vivo using xenografts.
Main Results:
- mGluR1 overexpression increased proliferation, anchorage-independent growth, and invasiveness in early-stage breast cancer models (MCF10A).
- mGluR1 knockdown decreased these aggressive phenotypes in malignant TNBC cells (MCF10CA1d).
- Pharmacologic inhibition of glutamatergic signaling reduced proliferation and anchorage-independent growth in TNBC cells.
- Overexpression of GRM1 in hyperplastic cells led to carcinoma formation in 90% of xenografts.
Conclusions:
- mGluR1 plays a significant role in TNBC progression, cooperating with other factors in hyperplastic mammary epithelium.
- Glutamatergic signaling represents a promising therapeutic target for triple-negative breast cancer.
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