All Stories

  1. Cotranscriptional R-loop formation by Mfd involves topological partitioning of DNA
  2. Reconstruction of bacterial transcription-coupled repair at single-molecule resolution
  3. Simple calibration of TIR field depth using the supercoiling response of DNA
  4. A Novel Initiation Pathway in Escherichia Coli Transcription
  5. Pausing in Escherichia coli Transcription Initiation
  6. DNA replication: Unlocking the secrets of fork arrest
  7. A dynamic DNA-repair complex observed by correlative single-molecule nanomanipulation and fluorescence
  8. Single-Molecule Analysis of Transcription-Coupled Repair
  9. A highly processive topoisomerase I: studies at the single-molecule level
  10. Watching single molecules in action
  11. Mfd as a central partner of transcription coupled repair
  12. Initiation of transcription-coupled repair characterized at single-molecule resolution
  13. Magnetic Trap Construction
  14. Single-Molecule Studies Using Magnetic Traps
  15. Biology, one molecule at a time
  16. RNA Polymerases as Molecular Motors
  17. The Engine and the Brake
  18. Real-time Detection of DNA Unwinding by Escherichia coli RNAP: From Transcription Initiation to Termination
  19. Optical investigations of the RNA polymerase molecular motor
  20. Abortive Initiation and Productive Initiation by RNA Polymerase Involve DNA Scrunching
  21. FtsK: a groovy helicase
  22. Chromatin Remodeling: RSC Motors along the DNA
  23. DNA Mechanics and Statistical Mechanics
  24. Twisting and stretching DNA
  25. Topoisomerase IV Bends and Overtwists DNA upon Binding
  26. Tracking Topoisomerase Activity at the Single-Molecule Level
  27. Single-molecule DNA nanomanipulation: Improved resolution through use of shorter DNA fragments
  28. Twisting DNA: single molecule studies
  29. Real-Time Detection of Single-Molecule DNA Compaction by Condensin I
  30. Promoter unwinding and promoter clearance by RNA polymerase: Detection by single-molecule DNA nanomanipulation
  31. Single-Molecule DNA Nanomanipulation: Detection of Promoter-Unwinding Events by RNA Polymerase
  32. Stretching of macromolecules and proteins
  33. Tracking enzymatic steps of DNA topoisomerases using single-molecule micromanipulation
  34. The Manipulation of Single Biomolecules
  35. Twisting and stretching single DNA molecules
  36. Study of DNA Motors by Single Molecule Micromanipulation
  37. Study of DNA Motors by Single Molecule Micromanipulation
  38. Stress-Induced Structural Transitions in DNA and Proteins
  39. Single-molecule analysis of DNA uncoiling by a type II topoisomerase
  40. Le jokari moléculaire
  41. Phase coexistence in a single DNA molecule
  42. Micro-Mechanical Measurement of the Torsional Modulus of DNA
  43. Twisting and stretching a DNA molecule leads to structural transitions
  44. Physical Approaches to the Study of DNA
  45. Homologous pairing in stretched supercoiled DNA
  46. Behavior of Supercoiled DNA
  47. Structures of Supercoiled DNA and their Biological Implications
  48. The Elasticity of a Single Supercoiled DNA Molecule
  49. Twisting a Single DNA Molecule: Experiments and Models