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Updated: Dec 28, 2025

Author Spotlight: Characterizing DNA Replication of Pathogenic Repeats to Uncover Mechanisms of Replication Fork Stalling and Expansion
Published on: September 13, 2024
On the wrong DNA track: Molecular mechanisms of repeat-mediated genome instability
Alexandra N Khristich1, Sergei M Mirkin1
1Department of Biology, Tufts University, Medford, Massachusetts 02155.
Abstract:
Expansions of simple tandem repeats are responsible for almost 50 human diseases, the majority of which are severe, degenerative, and not currently treatable or preventable. In this review, we first describe the molecular mechanisms of repeat-induced toxicity, which is the connecting link between repeat expansions and pathology. We then survey alternative DNA structures that are formed by expandable repeats and review the evidence that formation of these structures is at the core of repeat instability. Next, we describe the consequences of the presence of long structure-forming repeats at the molecular level: somatic and intergenerational instability, fragility, and repeat-induced mutagenesis. We discuss the reasons for gender bias in intergenerational repeat instability and the tissue specificity of somatic repeat instability. We also review the known pathways in which DNA replication, transcription, DNA repair, and chromatin state interact and thereby promote repeat instability. We then discuss possible reasons for the persistence of disease-causing DNA repeats in the genome. We describe evidence suggesting that these repeats are a payoff for the advantages of having abundant simple-sequence repeats for eukaryotic genome function and evolvability. Finally, we discuss two unresolved fundamental questions: (i) why does repeat behavior differ between model systems and human pedigrees, and (ii) can we use current knowledge on repeat instability mechanisms to cure repeat expansion diseases?
Insights
Simple tandem repeat expansions cause nearly 50 human diseases. This review explores repeat-induced toxicity, DNA structure formation, and instability mechanisms, seeking insights for potential treatments.
Area of Science:
- Genetics
- Molecular Biology
- Human Pathology
Background:
- Simple tandem repeat expansions are linked to nearly 50 human diseases.
- Many of these diseases are severe, degenerative, and currently untreatable or unpreventable.
Purpose of the Study:
- To review the molecular mechanisms of repeat-induced toxicity and pathology.
- To survey alternative DNA structures formed by expandable repeats and their role in instability.
- To discuss the consequences, causes, and persistence of disease-causing DNA repeats.
Main Methods:
- Literature review of molecular mechanisms.
- Survey of alternative DNA structures formed by expandable repeats.
- Analysis of factors promoting repeat instability (replication, transcription, repair, chromatin).
Main Results:
- Repeat expansions cause toxicity through specific molecular mechanisms.
- Alternative DNA structures are central to repeat instability.
- Instability manifests as somatic/intergenerational issues, fragility, and mutagenesis, with gender and tissue-specific biases.
- Genome function and evolvability may explain the persistence of disease-causing repeats.
Conclusions:
- Understanding repeat instability mechanisms is crucial for addressing repeat expansion diseases.
- Further research is needed to resolve differences between model systems and human data and to develop therapeutic strategies.
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