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1. Conserved Cis-Acting Range Extender Element Mediates Extreme Long-Range Enhancer Activity in Mammals

2. Increased enhancer–promoter interactions during developmental enhancer activation in mammals

3. Dynamic enhancer landscapes in human craniofacial development

4. Single-cell, whole-embryo phenotyping of mammalian developmental disorders

5. A gene desert required for regulatory control of pleiotropic Shox2 expression and embryonic survival

6. Topologically associating domain boundaries are required for normal genome function

7. A noncoding single-nucleotide polymorphism at 8q24 drives IDH1-mutant glioma formation

8. Genome-wide fetalization of enhancer architecture in heart disease

9. Author Correction: Expanded encyclopaedias of DNA elements in the human and mouse genomes

10. Differential Etv2 threshold requirement for endothelial and erythropoietic development

11. Perfect and imperfect views of ultraconserved sequences

12. Uncovering Hidden Enhancers Through Unbiased In Vivo Testing

13. Integrative analysis of the 3D genome and epigenome in mouse embryonic tissues

14. A non-coding single nucleotide polymorphism at 8q24 drives IDH1-mutant glioma formation

15. Characterization of Mammalian In Vivo Enhancers Using Mouse Transgenesis and CRISPR Genome Editing

16. Transcriptional network orchestrating regional patterning of cortical progenitors

17. Deletion of a non-canonical regulatory sequence causes loss of Scn1a expression and epileptic phenotypes in mice

18. Coding and noncoding variants in EBF3 are involved in HADDS and simplex autism

19. Plant single-cell solutions for energy and the environment.

20. Ultraconserved enhancer function does not require perfect sequence conservation

21. Author Correction: An atlas of dynamic chromatin landscapes in mouse fetal development

22. Topologically Associating Domain Boundaries are Commonly Required for Normal Genome Function

23. Loss of Extreme Long-Range Enhancers in Human Neural Crest Drives a Craniofacial Disorder

24. Author Correction: An atlas of dynamic chromatin landscapes in mouse fetal development

25. De Novo Mutation in an Enhancer of EBF3 in simplex autism

26. Genomic analyses implicate noncoding de novo variants in congenital heart disease

27. Supervised enhancer prediction with epigenetic pattern recognition and targeted validation

28. Spatiotemporal DNA methylome dynamics of the developing mouse fetus

29. The changing mouse embryo transcriptome at whole tissue and single-cell resolution

30. An atlas of dynamic chromatin landscapes in mouse fetal development

31. Expanded encyclopaedias of DNA elements in the human and mouse genomes

32. Expanded encyclopaedias of DNA elements in the human and mouse genomes.

33. Comprehensive In Vivo Interrogation Reveals Phenotypic Impact of Human Enhancer Variants.

34. A gene desert required for regulatory control of pleiotropic Shox2 expression and embryonic survival

35. Transcriptional Network Orchestrating Regional Patterning of Cortical Progenitors

36. Genomic Resolution of DLX-Orchestrated Transcriptional Circuits Driving Development of Forebrain GABAergic Neurons

37. Cardiac Reprogramming Factors Synergistically Activate Genome-wide Cardiogenic Stage-Specific Enhancers

38. Noncoding deletions reveal a gene that is critical for intestinal function

39. Molecular Mechanisms Driving Switch Behavior in Xylem Cell Differentiation

40. High-Throughput Single-Cell Transcriptome Profiling of Plant Cell Types

41. Genome-Wide Fetalization of Enhancer Architecture in Heart Disease

42. Deletion of a non-canonical regulatory sequence causes loss of Scn1a expression and epileptic phenotypes in mice

43. Parkinson-Associated SNCA Enhancer Variants Revealed by Open Chromatin in Mouse Dopamine Neurons.

44. Nr2f1 enhancers have distinct functions in controlling Nr2f1 expression during cortical development.

45. Author Correction: Single-nucleus analysis of accessible chromatin in developing mouse forebrain reveals cell-type-specific transcriptional regulation

46. Relationship between genetic variation at PPP1R3B and levels of liver glycogen and triglyceride

47. Single-nucleus analysis of accessible chromatin in developing mouse forebrain reveals cell-type-specific transcriptional regulation

48. Enhancer redundancy provides phenotypic robustness in mammalian development

49. Ultraconserved Enhancers Are Required for Normal Development.

50. A cross-organism framework for supervised enhancer prediction with epigenetic pattern recognition and targeted validation

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