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56 results on '"DNA, Catenated chemistry"'

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1. Topoisomerase VI is a chirally-selective, preferential DNA decatenase.

2. Regeneration of Burnt Bridges on a DNA Catenane Walker.

3. Anaphase Bridges: Not All Natural Fibers Are Healthy.

4. DNA Origami Catenanes Templated by Gold Nanoparticles.

5. Closing the DNA replication cycle: from simple circular molecules to supercoiled and knotted DNA catenanes.

6. Topology- and linking number-controlled synthesis of a closed 3 link chain of single-stranded DNA.

7. TopA, the Sulfolobus solfataricus topoisomerase III, is a decatenase.

8. Monitoring the DNA Topoisomerase II Checkpoint in Saccharomyces cerevisiae.

9. DNA Catenation Reveals the Dynamics of DNA Topology During Replication.

10. Interlinked DNA nano-circles for measuring topoisomerase II activity at the level of single decatenation events.

11. Molecular Dynamics Simulation of Supercoiled, Knotted, and Catenated DNA Molecules, Including Modeling of Action of DNA Gyrase.

12. MukB-mediated Catenation of DNA Is ATP and MukEF Independent.

13. Programming a topologically constrained DNA nanostructure into a sensor.

14. Topological DNA Assemblies Containing Identical or Fraternal Twins.

15. Efficient Synthesis of Topologically Linked Three-Ring DNA Catenanes.

16. DNA-binding activity of rat DNA topoisomerase II α C-terminal domain contributes to efficient DNA catenation in vitro.

17. Covalent Linkage of One-Dimensional DNA Arrays Bonded by Paranemic Cohesion.

18. Topological Linkage of DNA Tiles Bonded by Paranemic Cohesion.

19. Generation of supercoils in nicked and gapped DNA drives DNA unknotting and postreplicative decatenation.

20. One-Step Formation of "Chain-Armor"-Stabilized DNA Nanostructures.

21. Electrophoretic mobility of supercoiled, catenated and knotted DNA molecules.

22. Single-molecule analysis uncovers the difference between the kinetics of DNA decatenation by bacterial topoisomerases I and III.

23. Engineering interlocking DNA rings with weak physical interactions.

24. Structural determinants of the catalytic inhibition of human topoisomerase IIα by salicylate analogs and salicylate-based drugs.

25. A novel family of structurally stable double stranded DNA catenanes.

26. A two-ring interlocked DNA catenane rotor undergoing switchable transitions across three states.

28. FtsK-dependent XerCD-dif recombination unlinks replication catenanes in a stepwise manner.

29. BAF complexes facilitate decatenation of DNA by topoisomerase IIα.

30. The benefit of DNA supercoiling during replication.

31. Comparison of DNA decatenation by Escherichia coli topoisomerase IV and topoisomerase III: implications for non-equilibrium topology simplification.

32. Powering the programmed nanostructure and function of gold nanoparticles with catenated DNA machines.

33. Topo IV is the topoisomerase that knots and unknots sister duplexes during DNA replication.

34. Programmed dynamic topologies in DNA catenanes.

35. Design and synthesis of catenated rings based on toroidal DNA structures.

36. Chromosome length influences replication-induced topological stress.

37. Positive supercoiling of mitotic DNA drives decatenation by topoisomerase II in eukaryotes.

38. Triggered polycatenated DNA scaffolds for DNA sensors and aptasensors by a combination of rolling circle amplification and DNAzyme amplification.

39. DNA chirality-dependent stimulation of topoisomerase IV activity by the C-terminal AAA+ domain of FtsK.

40. DNA supercoiling and its role in DNA decatenation and unknotting.

41. Yeast cohesin complex embraces 2 micron plasmid sisters in a tri-linked catenane complex.

42. Plasmid DNA replication and topology as visualized by two-dimensional agarose gel electrophoresis.

43. Simulation of DNA catenanes.

44. Interplay of DNA supercoiling and catenation during the segregation of sister duplexes.

45. The replication of plastid minicircles involves rolling circle intermediates.

46. Analysis of DNA topoisomers, knots, and catenanes by agarose gel electrophoresis.

47. Monitoring single-stranded DNA secondary structure formation by determining the topological state of DNA catenanes.

48. Determinants of specific binding of HMGB1 protein to hemicatenated DNA loops.

49. Long-range communications between DNA sites by the dimeric restriction endonuclease SgrAI.

50. Model carbyne vs ideal and DNA catenanes.

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