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.

Cell Stress
|June 22, 2019
PubMed

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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