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35 results on '"Replisome"'

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1. The interplay of RNA:DNA hybrid structure and G-quadruplexes determines the outcome of R-loop-replisome collisions

2. Allosteric communication in DNA polymerase clamp loaders relies on a critical hydrogen-bonded junction

3. Cohesion is established during DNA replication utilising chromosome associated cohesin rings as well as those loaded de novo onto nascent DNAs

4. Mcm10 promotes rapid isomerization of CMG-DNA for replisome bypass of lagging strand DNA blocks

5. Frequent exchange of the DNA polymerase during bacterial chromosome replication

6. Transcription leads to pervasive replisome instability in bacteria

7. The interplay of RNA:DNA hybrid structure and G-quadruplexes determines the outcome of R-loop-replisome collisions

8. Allosteric communication in DNA polymerase clamp loaders relies on a critical hydrogen-bonded junction

9. Cohesion is established during DNA replication utilising chromosome associated cohesin rings as well as those loaded de novo onto nascent DNAs

10. Epigenetic memory independent of symmetric histone inheritance

11. Ctf4 organizes sister replisomes and Pol α into a replication factory

12. Spatial and temporal organization of RecA in the Escherichia coli DNA-damage response

13. MCM2–7-dependent cohesin loading during S phase promotes sister-chromatid cohesion

14. The interplay of RNA:DNA hybrid structure and G-quadruplexes determines the outcome of R-loop-replisome collisions.

15. Mcm10 promotes rapid isomerization of CMG-DNA for replisome bypass of lagging strand DNA blocks

16. Single-molecule visualization of fast polymerase turnover in the bacterial replisome

17. Frequent exchange of the DNA polymerase during bacterial chromosome replication

18. Transcription leads to pervasive replisome instability in bacteria

19. Allosteric communication in DNA polymerase clamp loaders relies on a critical hydrogen-bonded junction.

20. The structure of SV40 large T hexameric helicase in complex with AT-rich origin DNA

21. MutSα maintains the mismatch repair capability by inhibiting PCNA unloading

22. Cohesion is established during DNA replication utilising chromosome associated cohesin rings as well as those loaded de novo onto nascent DNAs.

23. Dna2 nuclease-helicase structure, mechanism and regulation by Rpa

24. cryo-EM structures of the E. coli replicative DNA polymerase reveal its dynamic interactions with the DNA sliding clamp, exonuclease and τ

25. Imaging and energetics of single SSB-ssDNA molecules reveal intramolecular condensation and insight into RecOR function

26. Cdc6 ATPase activity disengages Cdc6 from the pre-replicative complex to promote DNA replication

27. Structural dynamics of E. coli single-stranded DNA binding protein reveal DNA wrapping and unwrapping pathways

28. Cooperative base pair melting by helicase and polymerase positioned one nucleotide from each other

29. Reconstitution of a eukaryotic replisome reveals suppression mechanisms that define leading/lagging strand operation

30. DNA binding polarity, dimerization, and ATPase ring remodeling in the CMG helicase of the eukaryotic replisome

31. Preparing to unwind

32. Mcm10 promotes rapid isomerization of CMG-DNA for replisome bypass of lagging strand DNA blocks.

33. Frequent exchange of the DNA polymerase during bacterial chromosome replication.

34. Transcription leads to pervasive replisome instability in bacteria.

35. [Untitled]

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