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Carcinogen inducibility in vivo and down-regulation of DMBT1 during breast carcinogenesis
Jan Mollenhauer1, Burkhard Helmke, Daniel Medina
1Department of Molecular Genome Analysis, Deutsches Krebsforschungszentrum, Heidelberg, Germany. j.mollenhauer@dkfz-heidelberg.de
Abstract:
Deleted in malignant brain tumors 1 (DMBT1) has been proposed as a candidate tumor suppressor for brain and epithelial cancer. Initial studies suggested loss of expression rather than mutation as the predominant mode of DMBT1 inactivation. However, in situ studies in lung cancer demonstrated highly sophisticated changes of DMBT1 expression and localization, pointing to a chronological order of events. Here we report on the investigation of DMBT1 in breast cancer in order to test whether these principles might also be attributable to other tumor types. Comprehensive mutational analyses did not uncover unambiguous inactivating DMBT1 mutations in breast cancer. Expression analyses in the human and mouse mammary glands pointed to the necessity of DMBT1 induction. While age-dependent and hormonal effects could be ruled out, 9 of 10 mice showed induction of Dmbt1 expression after administration of the carcinogen 7,12-dimethybenz(alpha)anthracene prior to the onset of tumorigenesis or other histopathological changes. DMBT1 displayed significant up-regulation in human tumor-flanking tissues compared to in normal breast tissues (P < 0.05). However, the breast tumor cells displayed a switch from lumenal secretion to secretion to the extracellular matrix and a significant down-regulation compared to that in matched normal flanking tissues (P < 0.01). We concluded that loss of expression also is the predominant mode of DMBT1 inactivation in breast cancer. The dynamic behavior of DMBT1 in lung carcinoma is fully reflected in breast cancer, which suggests that this behavior might be common to tumor types arising from monolayered epithelia.
Insights
Deleted in malignant brain tumors 1 (DMBT1) acts as a tumor suppressor. In breast cancer, DMBT1 loss of expression, not mutation, is the primary inactivation mode, mirroring lung cancer dynamics.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Deleted in malignant brain tumors 1 (DMBT1) is a candidate tumor suppressor gene implicated in brain and epithelial cancers.
- Previous research suggested loss of expression as the primary inactivation mechanism, with complex expression changes observed in lung cancer.
Purpose of the Study:
- To investigate the role and inactivation mechanisms of DMBT1 in breast cancer.
- To determine if the expression dynamics observed in lung cancer are also applicable to breast cancer.
Main Methods:
- Comprehensive mutational analysis of DMBT1 in breast cancer.
- Expression analysis of DMBT1 in human and mouse mammary glands.
- Investigating DMBT1 expression changes following carcinogen administration in mice.
- Comparing DMBT1 expression in human breast tumor tissues and matched normal flanking tissues.
Main Results:
- No unambiguous inactivating DMBT1 mutations were found in breast cancer.
- DMBT1 expression requires induction in mammary glands; age and hormonal effects were ruled out.
- Carcinogen administration induced Dmbt1 expression in mice prior to tumor development.
- DMBT1 showed significant up-regulation in tumor-flanking tissues but significant down-regulation in breast tumor cells compared to normal tissues.
Conclusions:
- Loss of DMBT1 expression is the predominant mode of inactivation in breast cancer.
- The dynamic expression behavior of DMBT1 in breast cancer mirrors that in lung cancer.
- This dynamic behavior may be a common feature of tumor types arising from monolayered epithelia.
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