Open AccessMedicineBiology

R. Iyer, A. Pluciennik

2021.2.9Journal of Huntingtons Disease

DOI: 10.3233/jhd-200438

tlooto Summary

The current state of mechanistic knowledge of MMR is discussed and the roles of key enzymes in this pathway are reviewed, including mutagenic function of MMR in CAG repeat expansion and mechanistic hypotheses that have been proposed are considered.

Abstract

DNA mismatch repair (MMR) is a highly conserved genome stabilizing pathway that corrects DNA replication errors, limits chromosomal rearrangements, and mediates the cellular response to many types of DNA damage. Counterintuitively, MMR is also involved in the generation of mutations, as evidenced by its role in causing somatic triplet repeat expansion in Huntington’s disease (HD) and other neurodegenerative disorders. In this review, we discuss the current state of mechanistic knowledge of MMR and review the roles of key enzymes in this pathway. We also present the evidence for mutagenic function of MMR in CAG repeat expansion and consider mechanistic hypotheses that have been proposed. Understanding the role of MMR in CAG expansion may shed light on potential avenues for therapeutic intervention in HD.

Citation format

IYER, R.; PLUCIENNIK, A. DNA mismatch repair and its role in huntington’s disease. Journal of Huntingtons Disease, 2021, 10: 75–94.