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90 results on '"Lothar Schermelleh"'

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1. MCPH1 inhibits Condensin II during interphase by regulating its SMC2-Kleisin interface

2. The SET1 Complex Selects Actively Transcribed Target Genes via Multivalent Interaction with CpG Island Chromatin

3. A Pooled shRNA Screen Identifies Rbm15, Spen, and Wtap as Factors Required for Xist RNA-Mediated Silencing

4. Targeting Polycomb to Pericentric Heterochromatin in Embryonic Stem Cells Reveals a Role for H2AK119u1 in PRC2 Recruitment

5. 3D-structured illumination microscopy provides novel insight into architecture of human centrosomes

6. A molecular mechanism of mitotic centrosome assembly in Drosophila

9. RASER-FISH: non-denaturing fluorescence in situ hybridization for preservation of three-dimensional interphase chromatin structure

10. A role of Lck annular lipids in the steady upkeep of active Lck in T cells

11. Replication Labeling Methods for Super-Resolution Imaging of Chromosome Territories and Chromatin Domains

12. Role of the membrane anchor in the regulation of Lck activity

13. Super-resolution microscopy: a brief history and new avenues

15. MCPH1 inhibits Condensin II during interphase by regulating its SMC2-Kleisin interface

17. MCPH1 inhibits condensin II during interphase by regulating its SMC2-kleisin interface

18. Structured illumination microscopy with noise-controlled image reconstructions

19. Time-resolved structured illumination microscopy reveals key principles of Xist RNA spreading

20. Cold‐induced chromatin compaction and nuclear retention of clock mRNAs resets the circadian rhythm

21. Deep probabilistic tracking of particles in fluorescence microscopy images

22. High-Accuracy Correction of 3D Chromatic Shifts in the Age of Super-Resolution Biological Imaging Using Chromagnon

23. Cold induced chromatin compaction and nuclear retention of clock mRNAs resets the circadian rhythm

24. Chromatin arranges in chains of mesoscale domains with nanoscale functional topography independent of cohesin

25. Accurate and fiducial-marker-free correction for three-dimensional chromatic shift in biological fluorescence microscopy

26. PCGF3/5–PRC1 initiates Polycomb recruitment in X chromosome inactivation

27. Stabilization of chromatin topology safeguards genome integrity

28. Super-resolution microscopy demystified

29. Super-resolution structured illumination microscopy: past, present and future

30. Loss of sister kinetochore co-orientation and peri-centromeric cohesin protection after meiosis I depends on cleavage of centromeric REC8

31. Imaging‐assisted time‐resolved dentine sampling to track weaning histories

32. Stabilization of chromatin topology safeguards genome integrity

33. Quantitative 3D structured illumination microscopy of nuclear structures

34. Strategic and practical guidelines for successful structured illumination microscopy

36. Fluorescence screening of collagen preservation in tooth dentine

37. Role of Cdc48/p97 as a SUMO-targeted segregase curbing Rad51–Rad52 interaction

38. Suv4-20h2 mediates chromatin compaction and is important for cohesin recruitment to heterochromatin

39. Dissection of cell cycle–dependent dynamics of Dnmt1 by FRAP and diffusion-coupled modeling

41. Functional nuclear organization of transcription and DNA replication: a topographical marriage between chromatin domains and the interchromatin compartment

42. Myb-binding protein 1a (Mybbp1a) regulates levels and processing of pre-ribosomal RNA

43. Nucleic Acids Res

44. The polyserine domain of the lysyl-5 hydroxylase Jmjd6 mediates subnuclear localization

45. Subdiffraction multicolor imaging of the nuclear periphery with 3D structured illumination microscopy

46. Synthesis of DNA dumbbell based inhibitors for the human DNA methyltransferase Dnmt1

47. 4D Visualization of replication foci in mammalian cells corresponding to individual replicons

48. Erratum: SIMcheck: a Toolbox for Successful Super-resolution Structured Illumination Microscopy

49. 3D-structured illumination microscopy provides novel insight into architecture of human centrosomes

50. Dynein light chain 1 and a spindle-associated adaptor promote dynein asymmetry and spindle orientation

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