A new immunization and treatment strategy for mouse mammary tumor virus (MMTV) associated cancers
Ori Braitbard1, Maayan Roniger1, Allan Bar-Sinai1
1Department of Cell and Developmental Biology, Alexander Silberman Institute of Life Sciences, The Hebrew University of Jerusalem, Jerusalem, Israel.
Abstract:
Mouse Mammary Tumor Virus (MMTV) causes mammary carcinoma or lymphoma in mice. An increasing body of evidence in recent years supports its involvement also in human sporadic breast cancer. It is thus of importance to develop new strategies to impair the development, growth and metastasis of MMTV-associated cancers. The signal peptide of the envelope precursor protein of this virus: MMTV-p14 (p14) is an excellent target for such strategies, due to unique characteristics distinct from its regular endoplasmic reticulum targeting function. These include cell surface expression in: murine cancer cells that harbor the virus, human breast cancer (MCF-7) cells that ectopically express p14, as well as cultured human cells derived from an invasive ductal breast carcinoma positive for MMTV sequences. These findings support its use in signal peptide-based immune targeting. Indeed, priming and boosting mice with p14 elicits a specific anti-signal peptide immune response sufficient for protective vaccination against MMTV-associated tumors. Furthermore, passive immunization using a combination of anti-p14 monoclonal antibodies or the transfer of T-cells from immunized mice (Adoptive Cell Transfer) is also therapeutically effective. With reports demonstrating involvement of MMTV in human breast cancer, we propose the immune-mediated targeting of p14 as a strategy for prevention, treatment and diagnosis of MMTV-associated cancers.
Insights
Mouse Mammary Tumor Virus (MMTV) causes cancers. Targeting its MMTV-p14 protein via immune strategies shows promise for preventing and treating MMTV-associated human breast cancer.
Area of Science:
- Oncology
- Virology
- Immunology
Background:
- Mouse Mammary Tumor Virus (MMTV) is linked to mammary carcinoma and lymphoma in mice.
- Emerging evidence suggests MMTV's role in human sporadic breast cancer.
- Developing strategies against MMTV-associated cancers is crucial.
Purpose of the Study:
- To investigate the MMTV-p14 signal peptide as a target for immune-mediated cancer strategies.
- To evaluate the potential of p14-based therapies for MMTV-associated cancers.
Main Methods:
- Assessed cell surface expression of MMTV-p14 in various cancer cell models.
- Investigated immune responses in mice immunized with p14.
- Evaluated therapeutic efficacy of passive immunization with anti-p14 antibodies and Adoptive Cell Transfer.
Main Results:
- MMTV-p14 is expressed on the cell surface of MMTV-infected murine cancer cells and human breast cancer cells ectopically expressing p14.
- p14 immunization elicits protective anti-signal peptide immune responses against MMTV-associated tumors.
- Passive immunization and Adoptive Cell Transfer demonstrated therapeutic effectiveness.
Conclusions:
- MMTV-p14 is a viable target for signal peptide-based immune strategies.
- Immune-mediated targeting of p14 offers a potential approach for the prevention, treatment, and diagnosis of MMTV-associated cancers.
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