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1. Testing mechanisms of DNA sliding by architectural DNA-binding proteins: dynamics of single wild-type and mutant protein molecules in vitro and in vivo

2. Control of the Serine Integrase Reaction: Roles of the Coiled-Coil and Helix E Regions in DNA Site Synapsis and Recombination

3. Cooperative DNA binding by proteins through DNA shape complementarity.

4. Multiple serine transposase dimers assemble the transposon-end synaptic complex during IS607-family transposition.

5. High Free-Energy Barrier of 1D Diffusion Along DNA by Architectural DNA-Binding Proteins

6. Control of Recombination Directionality by the Listeria Phage A118 Protein Gp44 and the Coiled-Coil Motif of Its Serine Integrase

7. Facilitated dissociation of transcription factors from single DNA binding sites

8. Facilitated Dissociation of a Nucleoid Protein from the Bacterial Chromosome

9. Controlled rotation mechanism of DNA strand exchange by the Hin serine recombinase.

10. DNA Sequence Determinants Controlling Affinity, Stability and Shape of DNA Complexes Bound by the Nucleoid Protein Fis.

11. DNA-Segment-Facilitated Dissociation of Fis and NHP6A from DNA Detected via Single-Molecule Mechanical Response

12. Controlling tetramer formation, subunit rotation and DNA ligation during Hin-catalyzed DNA inversion

13. Multiple interfaces between a serine recombinase and an enhancer control site-specific DNA inversion.

14. Control of DNA minor groove width and Fis protein binding by the purine 2-amino group

15. The site-specific integration reaction of Listeria phage A118 integrase, a serine recombinase

16. Force-driven unbinding of proteins HU and Fis from DNA quantified using a thermodynamic Maxwell relation

17. Concentration-dependent exchange accelerates turnover of proteins bound to double-stranded DNA

18. Modulation of HU–DNA interactions by salt concentration and applied force

19. The Hin recombinase assembles a tetrameric protein swivel that exchanges DNA strands

35. Subunit exchange and the role of dimer flexibility in DNA binding by the Fis protein

36. Binding to cisplatin-modified DNA by the Saccharomyces cerevisiae HMGB protein Nhp6A

41. Coactivation of the RpoS-dependent proP P2 promoter by Fis and cyclic AMP receptor protein

42. The cAMP receptor protein CRP can function as an osmoregulator of transcription in Escherichia coli

46. Communication between Hin recombinase and Fis regulatory subunits during coordinate activation of Hin-catalyzed site-specific DNA inversion

47. Cyclic AMP receptor protein functions as a repressor of the osmotically inducible promoter proP P1 in Escherichia coli

49. Identification of new Fis binding sites by DNA scission with Fis-1,10-phenanthroline-copper(I) chimeras

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