966 results on '"Dekker, Job"'
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2. Spatial and temporal organization of the genome: Current state and future aims of the 4D nucleome project
3. Mitotic chromosomes scale to nuclear-cytoplasmic ratio and cell size in Xenopus.
4. The little skate genome and the evolutionary emergence of wing-like fins
5. RNA-mediated symmetry breaking enables singular olfactory receptor choice
6. Author Correction: Expanded encyclopaedias of DNA elements in the human and mouse genomes
7. Mitotic chromosomes are self-entangled and disentangle through a topoisomerase-II-dependent two-stage exit from mitosis
8. The little skate genome and the evolutionary emergence of wing-like fin appendages
9. Multi-omics comparison of malignant and normal uveal melanocytes reveals molecular features of uveal melanoma
10. Diverse silent chromatin states modulate genome compartmentalization and loop extrusion barriers
11. Multiscale reorganization of the genome following DNA damage facilitates chromosome translocations via nuclear actin polymerization
12. Reconstitution of Adenovirus DNA Replication with Purified Replication Proteins
13. A cohesin traffic pattern genetically linked to gene regulation
14. Mechanisms of insertions at a DNA double-strand break
15. Expanded encyclopaedias of DNA elements in the human and mouse genomes
16. Expanded encyclopaedias of DNA elements in the human and mouse genomes.
17. CTCF–CTCF loops and intra-TAD interactions show differential dependence on cohesin ring integrity
18. Measuring Inaccessible Chromatin Genome-Wide Using Protect-seq
19. Cohesin-mediated loop anchors confine the locations of human replication origins
20. CTCF sites display cell cycle–dependent dynamics in factor binding and nucleosome positioning
21. Spatial organization of transcribed eukaryotic genes
22. Loops, topologically associating domains, compartments, and territories are elastic and robust to dramatic nuclear volume swelling
23. Nutritional control regulates symbiont proliferation and life history in coral-dinoflagellate symbiosis
24. The chromosome folding problem and how cells solve it.
25. Polymer Physics Models Reveal Structural Folding Features of Single-Molecule Gene Chromatin Conformations.
26. Author Correction: Multiscale reorganization of the genome following DNA damage facilitates chromosome translocations via nuclear actin polymerization
27. Systematic evaluation of chromosome conformation capture assays
28. The 4D nucleome project
29. Targeted Degradation of CTCF Decouples Local Insulation of Chromosome Domains from Genomic Compartmentalization
30. Genetic and spatial organization of the unusual chromosomes of the dinoflagellate Symbiodinium microadriaticum
31. Liquid chromatin Hi-C characterizes compartment-dependent chromatin interaction dynamics
32. mRNA initiation and termination are spatially coordinated
33. Revisiting chromatin packaging in mouse sperm
34. Mitotic chromosomes harbor cell type and species-specific structural features within a universal looping architecture
35. Multi-contact 3C reveals that the human genome during interphase is largely not entangled
36. Inner nuclear protein Matrin-3 coordinates cell differentiation by stabilizing chromatin architecture
37. Detecting chromatin interactions between and along sister chromatids with SisterC
38. Condensin-driven remodelling of X chromosome topology during dosage compensation
39. Enhancer-driven 3D chromatin domain folding modulates transcription in human mammary tumor cells
40. Editorial overview: Multiscale regulation of genome folding in space, time, and across the tree of life
41. A pathway for mitotic chromosome formation
42. A chromosome folding intermediate at the condensin-to-cohesin transition during telophase
43. Heterochromatin drives compartmentalization of inverted and conventional nuclei
44. Single-allele chromatin interactions identify regulatory hubs in dynamic compartmentalized domains
45. A Mechanical Basis for Chromosome Function
46. Shelterin components mediate genome reorganization in response to replication stress
47. Protein arginine methyltransferase 5 (Prmt5) localizes to chromatin loop anchors and modulates expression of genes at TAD boundaries during early adipogenesis
48. Capturing Chromosome Conformation
49. Clustering of strong replicators associated with active promoters is sufficient to establish an early‐replicating domain
50. The non-canonical SMC protein SmcHD1 antagonises TAD formation and compartmentalisation on the inactive X chromosome
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