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Updated: Aug 15, 2026

A Mouse Model to Assess Innate Immune Response to Staphylococcus aureus Infection
Published on: February 28, 2019
Snm1-deficient mice exhibit accelerated tumorigenesis and susceptibility to infection
Shamima Ahkter1, Christopher T Richie, Nianxiang Zhang
1Department of Molecular Genetics, The University of Texas M.D. Anderson Cancer Center, 1515 Holcombe Boulevard, Houston, Texas 77030, USA.
Abstract:
The eukaryotic SNM1 gene family has been implicated in a number of cellular pathways, including repair of DNA interstrand cross-links, involvement in VDJ recombination, repair of DNA double-strand breaks, and participation in cell cycle checkpoint pathways. In particular, mammalian SNM1 has been shown to be required in a mitotic checkpoint that causes arrest of cells in prophase prior to chromosome condensation in response to spindle poisons. Here, we report on the phenotype of a knockout of Snm1 in the mouse. Snm1-/- mice are viable and fertile but exhibit a complex phenotype. Both homozygous and heterozygous mice show a decline in survival compared to wild-type littermates. In homozygous mutant males, this reduction in survival is principally due to bacterial infections in the preputial and mandibular glands and to a lesser extent to tumorigenesis, while in homozygous and heterozygous females, it is due almost solely to tumorigenesis. The high incidence of bacterial infections in the homozygous mutant males suggests an immune dysfunction; however, examinations of T- and B-cell development and immunoglobulin class switching did not reveal a defect in these pathways. Crossing of Snm1 mutant mice with a Trp53 null mutant resulted in an increase in mortality and a restriction of the tumor type to lymphomas, particularly those of the thymus. Taken together, these findings demonstrate that Snm1 is a tumor suppressor in mice that in addition has a role in immunity.
Insights
The SNM1 gene acts as a tumor suppressor in mice, impacting survival through roles in immunity and preventing cancer. Loss of SNM1 function leads to increased susceptibility to infections and tumor development.
Area of Science:
- Genetics and Molecular Biology
- Immunology
- Cancer Research
Background:
- The SNM1 gene family is involved in DNA repair and cell cycle checkpoints.
- Mammalian SNM1 plays a role in the mitotic checkpoint, arresting cells in prophase.
Purpose of the Study:
- To investigate the in vivo phenotype of Snm1 knockout mice.
- To elucidate the function of SNM1 in tumor suppression and immunity.
Main Methods:
- Generation and analysis of Snm1 knockout mouse models (Snm1-/-).
- Phenotypic characterization including survival rates, susceptibility to infections, and tumor incidence.
- Genetic crosses with Trp53 null mutant mice.
- Immunological assays examining T-cell and B-cell development and immunoglobulin class switching.
Main Results:
- Snm1-/- mice are viable and fertile but show reduced survival.
- Homozygous mutant males exhibit increased bacterial infections and tumorigenesis; females show primarily tumorigenesis.
- Immune cell development and function appear largely intact despite increased infections.
- Crossing with Trp53 null mutants increased mortality and restricted tumors to lymphomas.
Conclusions:
- SNM1 functions as a tumor suppressor in mice.
- SNM1 plays a significant role in immunity, particularly in preventing bacterial infections.
- The study highlights a dual role for SNM1 in maintaining genomic stability and immune function.
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