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Your search keyword '"Mirny, Leonid A."' showing total 47 results

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47 results on '"Mirny, Leonid A."'

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1. Transcription shapes 3D chromatin organization by interacting with loop extrusion.

2. Diverse silent chromatin states modulate genome compartmentalization and loop extrusion barriers.

3. Live-cell micromanipulation of a genomic locus reveals interphase chromatin mechanics.

4. Systematic evaluation of chromosome conformation capture assays.

5. Keeping chromatin in the loop(s).

6. The interplay between asymmetric and symmetric DNA loop extrusion.

7. Chromatin organization by an interplay of loop extrusion and compartmental segregation.

8. A mechanism of cohesin-dependent loop extrusion organizes zygotic genome architecture.

9. Single-nucleus Hi-C reveals unique chromatin reorganization at oocyte-to-zygote transition.

10. Super-resolution imaging reveals distinct chromatin folding for different epigenetic states.

11. Modeling chromosomes: Beyond pretty pictures.

12. Genome-wide maps of nuclear lamina interactions in single human cells.

13. Chromatin loops as allosteric modulators of enhancer-promoter interactions.

14. Exploring the three-dimensional organization of genomes: interpreting chromatin interaction data.

15. Higher-order chromatin structure: bridging physics and biology.

16. High order chromatin architecture shapes the landscape of chromosomal alterations in cancer.

17. The fractal globule as a model of chromatin architecture in the cell.

18. Comprehensive mapping of long-range interactions reveals folding principles of the human genome.

19. Molecular basis of CTCF binding polarity in genome folding.

20. The 4D nucleome project

21. Targeted Degradation of CTCF Decouples Local Insulation of Chromosome Domains from Genomic Compartmentalization

22. The interplay between asymmetric and symmetric DNA loop extrusion.

23. Loop extrusion: theory meets single-molecule experiments.

24. History of chromosome rearrangements reflects the spatial organization of yeast chromosomes.

25. The 3D Genome as Moderator of Chromosomal Communication.

26. Cohesin-dependent globules and heterochromatin shape 3D genome architecture in S. pombe.

27. Bridging the Resolution Gap in Structural Modeling of 3D Genome Organization.

28. Three-Dimensional Genome Architecture Influences Partner Selection for Chromosomal Translocations in Human Disease

29. Highly structured homolog pairing reflects functional organization of the Drosophila genome.

30. Polymer models of topological insulators.

31. Dynamics of CTCF- and cohesin-mediated chromatin looping revealed by live-cell imaging.

32. Promoter and enhancer RNAs regulate chromatin reorganization and activation of miR-10b/HOXD locus, and neoplastic transformation in glioma.

33. Organization of the Mitotic Chromosome.

34. The 3D Genome as Moderator of Chromosomal Communication

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

36. Ultrastructural Details of Mammalian Chromosome Architecture.

37. Chromosome Compaction by Active Loop Extrusion

38. Extensive Heterogeneity and Intrinsic Variation in Spatial Genome Organization.

39. Super-resolution imaging reveals distinct chromatin folding for different epigenetic states

40. Exploring the three-dimensional organization of genomes: interpreting chromatin interaction data

41. Three-Dimensional Genome Architecture Influences Partner Selection for Chromosomal Translocations in Human Disease

42. History of chromosome rearrangements reflects the spatial organization of yeast chromosomes

43. Higher-order chromatin structure: bridging physics and biology

44. Bridging the resolution gap in structural modeling of 3D genome organization

45. The fractal globule as a model of chromatin architecture in the cell

46. Hi-C: A Method to Study the Three-dimensional Architecture of Genomes

47. Chromatin Loops as Allosteric Modulators of Enhancer-Promoter Interactions

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