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Increased tumorigenesis associated with loss of the tumor suppressor gene Cadm1
Louise van der Weyden1, Mark J Arends, Alistair G Rust
1Experimental Cancer Genetics, The Wellcome Trust Sanger Institute, Hinxton, Cambridge, CB10 1HH, UK. lvdw@sanger.ac.uk
Background:
CADM1 encodes an immunoglobulin superfamily (IGSF) cell adhesion molecule. Inactivation of CADM1, either by promoter hypermethylation or loss of heterozygosity, has been reported in a wide variety of tumor types, thus it has been postulated as a tumor suppressor gene.
Findings:
We show for the first time that Cadm1 homozygous null mice die significantly faster than wildtype controls due to the spontaneous development of tumors at an earlier age and an increased tumor incidence of predominantly lymphomas, but also some solid tumors. Tumorigenesis was accelerated after irradiation of Cadm1 mice, with the reduced latency in tumor formation suggesting there are genes that collaborate with loss of Cadm1 in tumorigenesis. To identify these co-operating genetic events, we performed a Sleeping Beauty transposon-mediated insertional mutagenesis screen in Cadm1 mice, and identified several common insertion sites (CIS) found specifically on a Cadm1-null background (and not wildtype background).
Conclusion:
We confirm that Cadm1 is indeed a bona fide tumor suppressor gene and provide new insights into genetic partners that co-operate in tumorigenesis when Cadm1-expression is lost.
Insights
Cadmium 1 (CADM1) acts as a tumor suppressor gene. Loss of CADM1 accelerates tumor development, particularly lymphomas, and identifies collaborating genes in tumorigenesis.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- CADM1, encoding an immunoglobulin superfamily cell adhesion molecule, is implicated as a tumor suppressor due to its inactivation in various cancers.
- Inactivation mechanisms include promoter hypermethylation and loss of heterozygosity.
Purpose of the Study:
- To validate CADM1 as a tumor suppressor gene.
- To identify genetic partners cooperating in tumorigenesis upon CADM1 loss.
Main Methods:
- Generation and analysis of Cadm1 homozygous null mice.
- Irradiation studies to assess accelerated tumorigenesis.
- Sleeping Beauty transposon-mediated insertional mutagenesis screen in Cadm1-null mice.
Main Results:
- Cadm1 null mice exhibit accelerated tumor development, increased incidence of lymphomas and solid tumors, and reduced lifespan compared to wildtype controls.
- Irradiation of Cadm1 null mice further accelerates tumorigenesis.
- Identification of common insertion sites (CIS) specific to the Cadm1-null background.
Conclusions:
- CADM1 is confirmed as a bona fide tumor suppressor gene.
- New genetic collaborators in tumorigenesis associated with CADM1 loss have been identified.
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