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1. Lamina Associated Domains and Gene Regulation in Development and Cancer

2. The Genomic Landscape of the Somatic Linker Histone Subtypes H1.1 to H1.5 in Human Cells

3. Nuclear pore proteins nup153 and megator define transcriptionally active regions in the Drosophila genome.

4. Genome-wide profiling of DNA repair identifies higher-order coordination in single cells

5. H3K27me3 dictates atypical genome-nuclear lamina interactions and allelic asymmetry during early embryogenesis

6. Combinatorial single-cell profiling of all major chromatin types with MAbID

7. A pendulum of induction between the epiblast and extra-embryonic endoderm supports post-implantation progression

8. Attach and stretch

9. Simultaneous Quantification of Spatial Genome Positioning and Transcriptomics in Single Cells with scDamT-Seq

11. Nuclear chromosome locations dictate segregation error frequencies

13. Single-cell profiling of transcriptome and histone modifications with EpiDamID

14. Nuclear chromosome locations dictate segregation error frequencies

15. DamID to Map Genome-Protein Interactions in Preimplantation Mouse Embryos

16. DamID to Map Genome-Protein Interactions in Preimplantation Mouse Embryos

17. Single-Cell DamID to Capture Contacts Between DNA and the Nuclear Lamina in Individual Mammalian Cells

18. Single-Cell DamID to Capture Contacts Between DNA and the Nuclear Lamina in Individual Mammalian Cells

19. Alcohol-derived DNA crosslinks are repaired by two distinct mechanisms

20. Simultaneous quantification of protein-DNA interactions and transcriptomes in single cells with scDamT-seq

21. Genome-lamina interactions are established de novo in the early mouse embryo

22. Lamina Associated Domains and Gene Regulation in Development and Cancer

23. Simultaneous quantification of protein-DNA contacts and transcriptomes in single cells

24. Chemically-defined induction of a primitive endoderm and epiblast-like niche supports post-implantation progression from blastoids

25. Modeling of DNA methylation in cis reveals principles of chromatin folding in vivo in the absence of crosslinking and ligation

26. Genome-wide Maps of Nuclear Lamina Interactions in Single Human Cells

27. Differential spatial and structural organization of the X chromosome underlies dosage compensation in C. elegans

28. Stochastic genome-nuclear lamina interactions

29. DamC reveals principles of chromatin folding in vivo without crosslinking and ligation

30. Single-Cell Dynamics of Genome-Nuclear Lamina Interactions

31. Constitutive nuclear lamina–genome interactions are highly conserved and associated with A/T-rich sequence

32. Systematic Protein Location Mapping Reveals Five Principal Chromatin Types in Drosophila Cells

33. Genome–nuclear lamina interactions and gene regulation

34. Genome-wide Analysis Reveals MOF as a Key Regulator of Dosage Compensation and Gene Expression in Drosophila

35. Cotranscriptional recruitment of the dosage compensation complex to X-linked target genes

36. MOF-Regulated Acetylation of MSL-3 in the Drosophila Dosage Compensation Complex

37. Domains of genome-wide gene expression dysregulation in Down's syndrome

38. The Genomic Landscape of the Somatic Linker Histone Subtypes H1.1 to H1.5 in Human Cells

39. The CD27 and CD70 costimulatory pathway inhibits effector function of T helper 17 cells and attenuates associated autoimmunity

40. Correction: Corrigendum: Domains of genome-wide gene expression dysregulation in Down’s syndrome

41. Transcription-Coupled Methylation of Histone H3 at Lysine 36 Regulates Dosage Compensation by Enhancing Recruitment of the MSL Complex in Drosophila melanogaster▿

42. Nuclear pore components are involved in the transcriptional regulation of dosage compensation in Drosophila

43. Spatial chromatin organization and gene regulation at the nuclear lamina

44. The MOF Chromobarrel Domain Controls Genome-wide H4K16 Acetylation and Spreading of the MSL Complex

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