# DNA mismatch and damage patterns revealed by single-molecule sequencing

*PRI Rank #15 · Topics and Trends in Most Cited DNA Repair Mechanisms Papers, Class of 2026*

*Canonical URL: https://pri.pepkio.com/top-papers/dna-repair-mechanisms/2026/rank-15*

| Field | Value |
| --- | --- |
| Rank | #15 |
| 18m citations | 41 |
| Journal | Nature |
| Year | 2024 |
| DOI | 10.1038/s41586-024-07532-8 |
| Corresponding authors | Gilad D. Evrony |
| Institution | New York University Grossman School of Medicine, United States |

**Ranking page:** [Topics and Trends in Most Cited DNA Repair Mechanisms Papers, Class of 2026](https://pri.pepkio.com/top-papers/dna-repair-mechanisms/2026)

**Paper link:** [10.1038/s41586-024-07532-8](https://doi.org/10.1038/s41586-024-07532-8)

## Topics

DNA mismatch · DNA damage patterns · single-molecule sequencing · mismatch detection · sequencing error profiling · base modifications · sequencing accuracy · error signatures · DNA damage · long-read sequencing · nucleotide misincorporation · damage-induced mutations · single-molecule resolution · sequencing artifacts

## Cite this ranking

```
Pepkio Research Index (PRI). Topics and Trends in Most Cited DNA Repair Mechanisms Papers, Class of 2026. https://pri.pepkio.com/top-papers/dna-repair-mechanisms/2026. Accessed 2026-07-21.

Zheng Su, Tinsley Li, Thematic Shifts in Early-High-Impact Cancer Genomics and Diagnostics Research: A Bibliometric and Semantic Analysis. bioRxiv 2026.07.04.736459; doi: https://doi.org/10.64898/2026.07.04.736459
```