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1. Yeast Nucleolin Nsr1 Impedes Replication and Elevates Genome Instability at an Actively Transcribed Guanine-Rich G4 DNA-Forming Sequence

2. The Interplay between G-quadruplex and Transcription

3. G-Quadruplex Structures in Bacteria: Biological Relevance and Potential as an Antimicrobial Target

4. The activity of yeast Apn2 AP endonuclease at uracil-derived AP sites is dependent on the major carbon source

5. The activity of yeast Apn2 AP endonuclease at uracil-derived AP sites is dependent on the major carbon source

6. Regulation of autophagy by DNA G-quadruplexes

7. The etiology of uracil residues in the Saccharomyces cerevisiae genomic DNA

8. The Functional Consequences of Eukaryotic Topoisomerase 1 Interaction with G-Quadruplex DNA

9. Unscheduled DNA synthesis leads to elevated uracil residues at highly transcribed genomic loci in Saccharomyces cerevisiae

11. The role of topoisomerase I in suppressing genome instability associated with a highly transcribed guanine-rich sequence is not restricted to preventing RNA:DNA hybrid accumulation

12. G Quadruplex in Plants: A Ubiquitous Regulatory Element and Its Biological Relevance

13. The Top1 paradox: Friend and foe of the eukaryotic genome

14. Transcription as a source of genome instability

15. Guanine repeat-containing sequences confer transcription-dependent instability in an orientation-specific manner in yeast

16. Abasic Sites in the Transcribed Strand of Yeast DNA Are Removed by Transcription-Coupled Nucleotide Excision Repair

17. dUTP incorporation into genomic DNA is linked to transcription in yeast

18. Transcription-associated mutagenesis in yeast is directly proportional to the level of gene expression and influenced by the direction of DNA replication

19. Topoisomerase 1-dependent deletions initiated by incision at ribonucleotides are biased to the non-transcribed strand of a highly activated reporter

20. Sites of instability in the human TCF3 (E2A) gene adopt G-quadruplex DNA structures in vitro

21. The E Box Motif CAGGTG Enhances Somatic Hypermutation without Enhancing Transcription

22. Effects of Sequence and Structure on the Hypermutability of Immunoglobulin Genes

23. Molecular Aspects of Somatic Hypermutation of Immunoglobulin Genes

24. RNA∶DNA hybrids initiate quasi-palindrome-associated mutations in highly transcribed yeast DNA

25. Two distinct mechanisms of Topoisomerase 1-dependent mutagenesis in yeast

26. The dCMP transferase activity of yeast Rev1 is biologically relevant during the bypass of endogenously generated AP sites

27. Mutagenic processing of ribonucleotides in DNA by yeast topoisomerase I

28. POLN, a nuclear PolA family DNA polymerase homologous to the DNA cross-link sensitivity protein Mus308

29. Topoisomerase I Plays a Critical Role in Suppressing Genome Instability at a Highly Transcribed G-Quadruplex-Forming Sequence

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