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Published on: May 18, 2020
Characterization of mammary tumors from Brg1 heterozygous mice
S J Bultman1, J I Herschkowitz, V Godfrey
1Department of Genetics, University of North Carolina, Chapel Hill, NC 27599-7264, USA. Scott_Bultman@med.unc.edu
Abstract:
Mammalian SWI/SNF-related complexes have been implicated in cancer based on some of the subunits physically interacting with retinoblastoma (RB) and other proteins involved in carcinogenesis. Additionally, several subunits are mutated or not expressed in tumor-derived cell lines. Strong evidence for a role in tumorigenesis in vivo, however, has been limited to SNF5 mutations that result primarily in malignant rhabdoid tumors (MRTs) in humans and MRTs as well as other sarcomas in mice. We previously generated a null mutation of the Brg1 catalytic subunit in the mouse and reported that homozygotes die during embryogenesis. Here, we demonstrate that Brg1 heterozygotes are susceptible to mammary tumors that are fundamentally different than Snf5 tumors. First, mammary tumors are carcinomas not sarcomas. Second, Brg1+/- tumors arise because of haploinsufficiency rather than loss of heterozygosity. Third, Brg1+/- tumors exhibit genomic instability but not polyploidy based on array comparative genomic hybridization results. We monitored Brg1+/-, Brm-/- double-mutant mice but did not observe any tumors resembling those from Snf5 mutants, indicating that the Brg1+/- and Snf5+/- tumor phenotypes do not differ simply because Brg1 has a closely related paralog whereas Snf5 does not. These findings demonstrate that BRG1 and SNF5 are not functionally equivalent but protect against cancer in different ways. We also demonstrate that Brg1+/- mammary tumors have relatively heterogeneous gene expression profiles with similarities and differences compared to other mouse models of breast cancer. The Brg1+/- expression profiles are not particularly similar to mammary tumors from Wap-T121 transgenic line where RB is perturbed. We were also unable to detect a genetic interaction between the Brg1+/- and Rb+/- tumor phenotypes. These latter findings do not support a BRG1-RB interaction in vivo.
Insights
Brg1 heterozygotes develop mammary carcinomas due to haploinsufficiency, distinct from Snf5-driven tumors. This highlights differential roles of SWI/SNF subunits in cancer protection and tumorigenesis.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- Mammalian SWI/SNF complexes are linked to cancer through subunit interactions with proteins like RB.
- Mutations and altered expression of SWI/SNF subunits are observed in tumor cell lines.
- In vivo evidence for SWI/SNF in tumorigenesis was largely limited to SNF5 mutations causing malignant rhabdoid tumors (MRTs).
Purpose of the Study:
- To investigate the role of the Brg1 catalytic subunit in tumorigenesis.
- To compare the tumor phenotypes arising from Brg1 deficiency with those from Snf5 deficiency.
- To elucidate the functional equivalence and distinct cancer protection mechanisms of BRG1 and SNF5.
Main Methods:
- Generation of Brg1 heterozygous (Brg1+/-) mice.
- Analysis of tumor types and genetic alterations in Brg1+/- mice.
- Comparison of Brg1+/- tumor phenotypes with Snf5 mutant mice.
- Genomic instability assessment using array comparative genomic hybridization.
- Gene expression profiling of Brg1+/- mammary tumors.
- Investigation of genetic interactions between Brg1+/- and Rb+/- phenotypes.
Main Results:
- Brg1 heterozygotes develop mammary carcinomas, distinct from Snf5-driven sarcomas.
- Tumorigenesis in Brg1+/- mice results from haploinsufficiency, not loss of heterozygosity.
- Brg1+/- tumors exhibit genomic instability but not polyploidy.
- Brg1+/- and Snf5+/- tumor phenotypes differ, indicating non-equivalent functions.
- Brg1+/- mammary tumors show heterogeneous gene expression profiles, with limited similarity to other models.
- No genetic interaction was detected between Brg1+/- and Rb+/- phenotypes in vivo.
Conclusions:
- BRG1 and SNF5 are not functionally equivalent and protect against cancer through distinct mechanisms.
- Brg1 haploinsufficiency contributes to mammary carcinoma development.
- The findings challenge a direct in vivo interaction between BRG1 and RB in tumorigenesis.
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