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1. Human RAD52 stimulates the RAD51-mediated homology search.

2. The forkhead DNA-binding domain binds specific G2-rich RNA sequences.

3. 53BP1 interacts with the RNA primer from Okazaki fragments to support their processing during unperturbed DNA replication.

4. Congenital mirror movements are associated with defective polymerisation of RAD51.

5. Identification of key residues of the DNA glycosylase OGG1 controlling efficient DNA sampling and recruitment to oxidized bases in living cells.

6. ComFC mediates transport and handling of single-stranded DNA during natural transformation.

7. Sir3 heterochromatin protein promotes non-homologous end joining by direct inhibition of Sae2.

8. Lamin B1 sequesters 53BP1 to control its recruitment to DNA damage.

9. The meiosis-specific MEIOB-SPATA22 complex cooperates with RPA to form a compacted mixed MEIOB/SPATA22/RPA/ssDNA complex.

10. Mechanism of MRX inhibition by Rif2 at telomeres.

11. Identification of the periplasmic DNA receptor for natural transformation of Helicobacter pylori.

12. Role of the Srs2-Rad51 Interaction Domain in Crossover Control in Saccharomyces cerevisiae .

14. The translesion DNA polymerases Pol ζ and Rev1 are activated independently of PCNA ubiquitination upon UV radiation in mutants of DNA polymerase δ.

15. Structural basis for the substrate selectivity of Helicobacter pylori NucT nuclease activity.

16. A role for Tau protein in maintaining ribosomal DNA stability and cytidine deaminase-deficient cell survival.

17. Srs2 promotes synthesis-dependent strand annealing by disrupting DNA polymerase δ-extending D-loops.

18. Rad52 sumoylation prevents the toxicity of unproductive Rad51 filaments independently of the anti-recombinase Srs2.

19. Rad51 paralogues Rad55-Rad57 balance the antirecombinase Srs2 in Rad51 filament formation.

20. Srs2 removes deadly recombination intermediates independently of its interaction with SUMO-modified PCNA.

21. The Srs2 helicase activity is stimulated by Rad51 filaments on dsDNA: implications for crossover incidence during mitotic recombination.

22. UvrD helicase, unlike Rep helicase, dismantles RecA nucleoprotein filaments in Escherichia coli.

23. Suppression of homologous and homeologous recombination by the bacterial MutS2 protein.

24. The Srs2 helicase prevents recombination by disrupting Rad51 nucleoprotein filaments.

25. UV lesions located on the leading strand inhibit DNA replication but do not inhibit SV40 T-antigen helicase activity.

26. Differential replication of a single N-2-acetylaminofluorene lesion in the leading or lagging strand DNA in a human cell extract.

27. Cellular strategies for accommodating replication-hindering adducts in DNA: control by the SOS response in Escherichia coli.

28. Frequency and fidelity of translesion synthesis of site-specific N-2-acetylaminofluorene adducts during DNA replication in a human cell extract.

29. Mutagenic replication in human cell extracts of DNA containing site-specific N-2-acetylaminofluorene adducts.

30. Greater susceptibility to mutations in lagging strand of DNA replication in Escherichia coli than in leading strand.

31. Polymorphism in N-2-acetylaminofluorene induced DNA structure as revealed by DNase I footprinting.

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