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Your search keyword '"Lieber MR"' showing total 47 results

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47 results on '"Lieber MR"'

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1. Construction of high coverage whole-genome sequencing libraries from single colon crypts without DNA extraction or whole-genome amplification.

3. NAD+ is not utilized as a co-factor for DNA ligation by human DNA ligase IV.

4. Bridging of double-stranded breaks by the nonhomologous end-joining ligation complex is modulated by DNA end chemistry.

5. SCR7 is neither a selective nor a potent inhibitor of human DNA ligase IV.

6. Structure-Specific nuclease activities of Artemis and the Artemis: DNA-PKcs complex.

7. RNA Polymerase Collision versus DNA Structural Distortion: Twists and Turns Can Cause Break Failure.

8. Unifying the DNA end-processing roles of the artemis nuclease: Ku-dependent artemis resection at blunt DNA ends.

9. Complexities due to single-stranded RNA during antibody detection of genomic rna:dna hybrids.

10. Evidence that the DNA endonuclease ARTEMIS also has intrinsic 5'-exonuclease activity.

11. Reproducibility and reliability of SNP analysis using human cellular DNA at or near nanogram levels.

12. Competition between the RNA transcript and the nontemplate DNA strand during R-loop formation in vitro: a nick can serve as a strong R-loop initiation site.

13. Nonhomologous DNA end joining (NHEJ) and chromosomal translocations in humans.

14. G clustering is important for the initiation of transcription-induced R-loops in vitro, whereas high G density without clustering is sufficient thereafter.

15. The structure-specific nicking of small heteroduplexes by the RAG complex: implications for lymphoid chromosomal translocations.

16. DNA structure and human diseases.

17. Extent to which hairpin opening by the Artemis:DNA-PKcs complex can contribute to junctional diversity in V(D)J recombination.

18. Single-stranded DNA ligation and XLF-stimulated incompatible DNA end ligation by the XRCC4-DNA ligase IV complex: influence of terminal DNA sequence.

19. DNA-PKcs dependence of Artemis endonucleolytic activity, differences between hairpins and 5' or 3' overhangs.

20. Roles of nonhomologous DNA end joining, V(D)J recombination, and class switch recombination in chromosomal translocations.

21. DNA structures at chromosomal translocation sites.

22. Hybrid joint formation in human V(D)J recombination requires nonhomologous DNA end joining.

23. Detection and structural analysis of R-loops.

24. Analysis of non-B DNA structure at chromosomal sites in the mammalian genome.

25. The Artemis:DNA-PKcs endonuclease cleaves DNA loops, flaps, and gaps.

26. Double-strand break formation by the RAG complex at the bcl-2 major breakpoint region and at other non-B DNA structures in vitro.

27. Evidence for a triplex DNA conformation at the bcl-2 major breakpoint region of the t(14;18) translocation.

28. A biochemically defined system for mammalian nonhomologous DNA end joining.

29. Stability and strand asymmetry in the non-B DNA structure at the bcl-2 major breakpoint region.

30. Chromosomal translocations and non-B DNA structures in the human genome.

31. A non-B-DNA structure at the Bcl-2 major breakpoint region is cleaved by the RAG complex.

32. DNA substrate length and surrounding sequence affect the activation-induced deaminase activity at cytidine.

33. Kinetic analysis of the nicking and hairpin formation steps in V(D)J recombination.

34. Analysis of the kinetic and equilibrium binding of Ku protein to DNA.

35. DNA length-dependent cooperative interactions in the binding of Ku to DNA.

36. Stable RNA/DNA hybrids in the mammalian genome: inducible intermediates in immunoglobulin class switch recombination.

37. The nonhomologous DNA end joining pathway is important for chromosome stability in primary fibroblasts.

38. The biochemistry and biological significance of nonhomologous DNA end joining: an essential repair process in multicellular eukaryotes.

39. Interaction of DNA-dependent protein kinase with DNA and with Ku: biochemical and atomic-force microscopy studies.

40. Protein-protein and protein-DNA interaction regions within the DNA end-binding protein Ku70-Ku86.

41. Asymmetric mutation around the recombination break point of immunoglobulin class switch sequences on extrachromosomal substrates.

42. Processing of branched DNA intermediates by a complex of human FEN-1 and PCNA.

43. RNA:DNA complex formation upon transcription of immunoglobulin switch regions: implications for the mechanism and regulation of class switch recombination.

44. DNA structural elements required for FEN-1 binding.

45. Restoration of X-ray resistance and V(D)J recombination in mutant cells by Ku cDNA.

46. The characterization of a mammalian DNA structure-specific endonuclease.

47. V(D)J recombination in mammalian cell mutants defective in DNA double-strand break repair.

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