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Constitutional Mosaic Epimutations - a hidden cause of cancer?
Per E Lønning1,2, Hans P Eikesdal1,2, Inger M Løes1,2
1K.G.Jebsen Center for Genome Directed Cancer Therapy, Department of Clinical Science, University of Bergen, Norway.
Abstract:
Silencing of tumor suppressor genes by promoter hypermethylation is a key mechanism to facilitate cancer progression in many malignancies. While promoter hypermethylation can occur at later stages of the carcinogenesis process, constitutional methylation of key tumor suppressors may be an initiating event whereby cancer is started. Constitutional BRCA1 methylation due to cis-acting germline genetic variants is associated with a high risk of breast and ovarian cancer. However, this seems to be a rare event, restricted to a very limited number of families. In contrast, mosaic constitutional BRCA1 methylation is detected in 4-7% of newborn females without germline BRCA1 mutations. While the cause of such methylation is poorly understood, mosaic normal tissue BRCA1 methylation is associated with a 2-3 fold increased risk of high-grade serous ovarian cancer (HGSOC). As such, BRCA1 methylation may be the cause of a significant number of ovarian cancers. Given the molecular similarities between HGSOC and basal-like breast cancer, the findings with respect to HGSOC suggest that constitutional BRCA1 methylation could be a risk factor for basal-like breast cancer as well. Similar to BRCA1, some specific germline variants in MLH1 and MSH2 are associated with promoter methylation and a high risk of colorectal cancers in rare hereditary cases of the disease. However, as many as 15% of all colorectal cancers are of the microsatellite instability (MSI) "high" subtype, in which commonly the tumors harbor MLH1 hypermethylation. Constitutional mosaic methylation of MLH1 in normal tissues has been detected but not formally evaluated as a potential risk factor for incidental colorectal cancers. However, the findings with respect to BRCA1 in breast and ovarian cancer raises the question whether mosaic MLH1 methylation is a risk factor for MSI positive colorectal cancer as well. As for MGMT, a promoter variant is associated with elevated methylation across a panel of solid cancers, and MGMT promoter methylation may contribute to an elevated cancer risk in several of these malignancies. We hypothesize that constitutional mosaic promoter methylation of crucial tumor suppressors may trigger certain types of cancer, similar to germline mutations inactivating the same particular genes. Such constitutional methylation events may be a spark to ignite cancer development, and if associated with a significant cancer risk, screening for such epigenetic alterations could be part of cancer prevention programs to reduce cancer mortality in the future.
Insights
Constitutional mosaic methylation of tumor suppressor genes like BRCA1 and MLH1 in normal tissues may initiate cancer. This epigenetic alteration could be a significant risk factor for ovarian and colorectal cancers, warranting further investigation for prevention strategies.
Area of Science:
- Epigenetics and Cancer Biology
- Molecular Oncology
- Cancer Genomics
Background:
- Promoter hypermethylation of tumor suppressor genes is a hallmark of cancer.
- Constitutional methylation, particularly mosaic patterns in normal tissues, is increasingly recognized as a potential initiating event for cancer.
- Specific genes like BRCA1, MLH1, MSH2, and MGMT are implicated in various cancers through methylation-associated silencing.
Purpose of the Study:
- To explore the hypothesis that constitutional mosaic promoter methylation of tumor suppressor genes can trigger cancer development.
- To investigate the potential role of mosaic BRCA1 methylation as a risk factor for high-grade serous ovarian cancer (HGSOC) and basal-like breast cancer.
- To assess whether mosaic MLH1 methylation could be a risk factor for microsatellite instability-high (MSI-high) colorectal cancer.
Main Methods:
- Review of existing literature on gene methylation and cancer risk.
- Analysis of associations between constitutional BRCA1 methylation and HGSOC and basal-like breast cancer risk.
- Extrapolation of findings from BRCA1 to MLH1 and MGMT in the context of colorectal and other solid cancers.
Main Results:
- Mosaic constitutional BRCA1 methylation is found in 4-7% of newborn females and is linked to a 2-3 fold increased risk of HGSOC.
- This methylation may also be a risk factor for basal-like breast cancer due to molecular similarities with HGSOC.
- While rare germline variants in MLH1/MSH2 cause hereditary colorectal cancer via methylation, the role of mosaic MLH1 methylation in sporadic MSI-high colorectal cancer remains unevaluated but plausible.
Conclusions:
- Constitutional mosaic promoter methylation of tumor suppressor genes represents a potential 'spark' for cancer initiation, analogous to germline mutations.
- Epigenetic screening for such alterations could become a future component of cancer prevention programs.
- Further research is needed to formally evaluate mosaic MLH1 methylation as a risk factor for MSI-high colorectal cancer and other malignancies.
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