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1. Conserved chromatin and repetitive patterns reveal slow genome evolution in frogs

2. Global mapping of RNA-chromatin contacts reveals a proximity-dominated connectivity model for ncRNA-gene interactions

3. Centromere Identity and the Regulation of Chromosome Segregation

4. Acetylation of histone H4 lysine 5 and 12 is required for CENP-A deposition into centromeres

5. Global mapping of RNA-chromatin contacts reveals a proximity-dominated connectivity model for ncRNA-gene interactions

6. Identification and characterization of centromeric sequences in Xenopus laevis

7. Mapping protein-DNA interactions with DiMeLo-seq

8. From telomere to telomere: The transcriptional and epigenetic state of human repeat elements

9. Repression of CENP-A assembly in metaphase requires HJURP phosphorylation and inhibition by M18BP1

10. Conserved chromatin and repetitive patterns reveal slow genome evolution in frogs

11. DiMeLo-seq: a long-read, single-molecule method for mapping protein-DNA interactions genome wide

12. Molecular conflicts disrupting centromere maintenance contribute to Xenopus hybrid inviability

13. Complete genomic and epigenetic maps of human centromeres

14. From telomere to telomere: the transcriptional and epigenetic state of human repeat elements

15. DiMeLo-seq: a long-read, single-molecule method for mapping protein-DNA interactions genome-wide

16. CENP-N promotes the compaction of centromeric chromatin

17. The DNA-to-cytoplasm ratio broadly activates zygotic gene expression in Xenopus

18. Identification and characterization of centromeric sequences in

19. Measurement of Mesoscale Conformational Dynamics of Freely Diffusing Molecules with Tracking FCS

20. Constitutive centromere-associated network contacts confer differential stability on CENP-A nucleosomes in vitro and in the cell

21. RNA-mediated regulation of heterochromatin

22. Mapping Transcriptome-Wide and Genome-Wide RNA–DNA Contacts with Chromatin-Associated RNA Sequencing (ChAR-seq)

23. Chromatin-Associated RNA Sequencing (ChAR-seq)

24. <scp>CDK</scp> phosphorylation of Xenopus laevis M18 <scp>BP</scp> 1 promotes its metaphase centromere localization

25. Chromatin-associated RNA sequencing (ChAR-seq) maps genome-wide RNA-to-DNA contacts

26. Author response: Chromatin-associated RNA sequencing (ChAR-seq) maps genome-wide RNA-to-DNA contacts

27. Centromere and Kinetochore Assembly in

28. A cell-free CENP-A assembly system defines the chromatin requirements for centromere maintenance

29. MIS12/MIND Control at the Kinetochore

30. RNA-dependent stabilization of SUV39H1 at constitutive heterochromatin

33. Form and function of topologically associating genomic domains in budding yeast

34. Intramolecular dynamics of single molecules in free diffusion

35. Reply to 'CENP-A octamers do not confer a reduction in nucleosome height by AFM'

36. Esperanto for histones: CENP-A, not CenH3, is the centromeric histone H3 variant

37. The Power of Xenopus Egg Extract for Reconstitution of Centromere and Kinetochore Function

38. Variable chromatin structure revealed by in situ spatially correlated DNA cleavage mapping

39. Chromosome Segregation: Reconstituting the Kinetochore

40. Mapping of Nucleosomes and DNA-Bound Proteins in Living Cells with Ionizing Radiation

41. A cell-free system for functional centromere and kinetochore assembly

42. Imaging nanometre-scale structure in cells using in situ aberration correction

43. CENP-C recruits M18BP1 to centromeres to promote CENP-A chromatin assembly

44. In vitro centromere and kinetochore assembly on defined chromatin templates

45. Dynamics of CENP-N kinetochore binding during the cell cycle

46. Recurrent point mutations in the kinetochore gene KNSTRN in cutaneous squamous cell carcinoma

47. Local Geometry and Elasticity in Compact Chromatin Structure

48. Dual recognition of CENP-A nucleosomes is required for centromere assembly

49. RB's original CIN?: Figure 1

50. Image analysis benchmarking methods for high-content screen design

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