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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. The HMGB chromatin protein Nhp6A can bypass obstacles when traveling on DNA

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

4. Cooperative DNA binding by proteins through DNA shape complementarity

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 a Nucleoid Protein from the Bacterial Chromosome

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

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

10. Variation of the folding and dynamics of theEscherichia colichromosome with growth conditions

11. Counting proteins bound to a single DNA molecule

12. Intrasubunit and Intersubunit Interactions Controlling Assembly of Active Synaptic Complexes during Hin-Catalyzed DNA Recombination

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

14. Chromatin-dependent binding of the S. cerevisiae HMGB protein Nhp6A affects nucleosome dynamics and transcription

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

16. Mechanical Constraints on Hin Subunit Rotation Imposed by the Fis/Enhancer System and DNA Supercoiling during Site-Specific Recombination

17. Bacterial Site‐Specific DNA Inversion Systems

18. Fis Targets Assembly of the Xis Nucleoprotein Filament to Promote Excisive Recombination by Phage Lambda

19. Structure of the cooperative Xis–DNA complex reveals a micronucleoprotein filament that regulates phage lambda intasome assembly

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

21. Site-specific DNA Inversion by Serine Recombinases

22. Determinants of HMGB Proteins Required To Promote RAG1/2-Recombination Signal Sequence Complex Assembly and Catalysis during V(D)J Recombination

23. Architecture of the Hin Synaptic Complex during Recombination

24. Stepwise Dissection of the Hin-catalyzed Recombination Reaction from Synapsis to Resolution

25. Activation of transcription initiation from a stable RNA promoter by a Fis protein-mediated DNA structural transmission mechanism

26. Differential Affinity and Cooperativity Functions of the Amino-terminal 70 Residues of λ Integrase

27. Regulation of Directionality in Bacteriophage λ Site-specific Recombination: Structure of the Xis Protein

28. Identification of the tRNA-Dihydrouridine Synthase Family

29. The DNA Architectural Protein HMGB1 Displays Two Distinct Modes of Action That Promote Enhanceosome Assembly

30. Binding to Cisplatin-Modified DNA by the Saccharomyces cerevisiae HMGB Protein Nhp6A

31. Testing water-mediated DNA recognition by the Hin recombinase

32. Architecture of fis-activated transcription complexes at the Escherichia coli rrnB P1 and rrnE P1 promoters

33. The C-terminal domains of the RNA polymerase α subunits: contact site with fis and localization during co-activation with CRP at the Escherichia coli proP P2 promoter

34. Major Nucleoid Proteins in the Structure and Function of theEscherichia coliChromosome

35. Nuclear Localization of theSaccharomyces cerevisiaeHMG Protein NHP6A Occurs by a Ran-Independent Nonclassical Pathway

36. Coactivation of the RpoS-Dependent proP P2 Promoter by Fis and Cyclic AMP Receptor Protein

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

38. Assembly of a Tightly Interwound DNA Recombination Complex Poised for Deletion

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

40. Conversion of a β-strand to anα-helix induced by a single-site mutation observed in the crystal structure of fis mutant pro26Ala

41. Determinants of DNA Binding and Bending by theSaccharomyces cerevisiae High Mobility Group Protein NHP6A That Are Important for Its Biological Activities

42. The transactivation region of the Fis protein that controls site-specific DNA inversion contains extended mobile beta -hairpin arms

43. Activation of RpoS-dependent proP P2 transcription by the Fis protein in vitro

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

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

46. Yeast HMG proteins NHP6A/B potentiate promoter-specific transcriptional activation in vivo and assembly of preinitiation complexes in vitro

47. DNA Looping by Saccharomyces cerevisiae High Mobility Group Proteins NHP6A/B

48. Sequence, regulation, and functions of fis in Salmonella typhimurium

49. Crystallization and preliminary X-ray crystallographic analysis of the excisionase–DNA complex from bacteriophage λ

50. Robust Translation of the Nucleoid Protein Fis Requires a Remote Upstream AU Element and Is Enhanced by RNA Secondary Structure

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