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Updated: Jun 26, 2026

Orthotopic Transplantation of Breast Tumors as Preclinical Models for Breast Cancer
Published on: May 18, 2020
Rassf3 is responsible in part for resistance to mammary tumor development in neu transgenic mice
Isabelle C Jacquemart1, Alison E B Springs, Wen Y Chen
1Department of Biological Sciences, Clemson University, Clemson, SC 29634, USA.
Abstract:
MMTV/neu transgenic mouse line is a well-documented model for studying HER2/neu-related breast cancer. Approximately 80% of these mice develop mammary tumors by 11 months of age, whereas a small percentage appears to have naturally acquired resistance to HER2/neu tumorigenesis. To identify factors responsible for tumor resistance in these transgenic mice, comparative genetic profiling was used to screen alterations in gene expression in the mammary gland. A novel gene, the RAS association domain (RalGDS/AF-6) family 3 (Rassf3), which belongs to a family of RAS effectors and tumor suppressor genes, was identified. Data indicated 1) that Rassf3 is overexpressed in mammary gland of tumor-resistant MMTV/neu mice compared to tumor-susceptible MMTV/neu littermates or non-transgenic mice, and 2) Rassf3 is significantly up-regulated in neu-specific mouse mammary tumors compared to adjacent normal tissues. In vitro overexpression of RASSF3 inhibited cell proliferation in HER2/neu positive human and mouse breast cancer cell lines, possibly through induction of apoptosis. A novel MMTV/Rassf3-neu bi-transgenic mouse line, overexpressing Rassf3 and neu genes in mammary glands, was established. Mammary tumor incidence in bi-transgenic mice was delayed compared to their MMTV/neu+/- littermates. These data suggest that Rassf3 may influence mammary tumor incidence in MMTV/neu transgenic mice.
Insights
RAS association domain family 3 (Rassf3) overexpression correlates with resistance to HER2/neu-driven breast cancer in mice. Rassf3 may act as a tumor suppressor, delaying mammary tumor development.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- The MMTV/neu transgenic mouse is a model for HER2/neu-driven breast cancer.
- A subset of these mice exhibits natural resistance to mammary tumor development.
- Understanding resistance mechanisms is crucial for therapeutic strategies.
Purpose of the Study:
- To identify genetic factors contributing to HER2/neu-driven breast cancer resistance.
- To investigate the role of the Rassf3 gene in mammary tumorigenesis.
Main Methods:
- Comparative genetic profiling of mammary glands from resistant and susceptible MMTV/neu mice.
- Gene expression analysis.
- In vitro cell proliferation assays.
- Generation of a bi-transgenic MMTV/Rassf3-neu mouse model.
Main Results:
- Rassf3 was identified as a novel gene overexpressed in resistant MMTV/neu mice.
- Rassf3 is upregulated in HER2/neu-positive mammary tumors.
- RASSF3 overexpression inhibited proliferation and induced apoptosis in cancer cell lines.
- Bi-transgenic mice showed delayed mammary tumor incidence.
Conclusions:
- Rassf3 overexpression is associated with resistance to HER2/neu-induced mammary tumors.
- Rassf3 functions as a tumor suppressor in this model.
- Rassf3 warrants further investigation as a potential therapeutic target.
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