875 results on '"Blobel, Gerd A."'
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2. Efficient engineering of human and mouse primary cells using peptide-assisted genome editing
3. Targeting the EIF2AK1 signaling pathway rescues red blood cell production in SF3B1-mutant myelodysplastic syndromes with ringed sideroblasts
4. let-7 miRNAs repress HIC2 to regulate BCL11A transcription and hemoglobin switching
5. Elevating fetal hemoglobin: recently discovered regulators and mechanisms
6. BRD4 orchestrates genome folding to promote neural crest differentiation
7. CTCF blocks antisense transcription initiation at divergent promoters
8. Pre-existing immunity does not impair the engraftment of CRISPR-Cas9-edited cells in rhesus macaques conditioned with busulfan or radiation
9. Molecular basis of polycomb group protein–mediated fetal hemoglobin repression
10. Author Correction: HIC2 controls developmental hemoglobin switching by repressing BCL11A transcription
11. Activation of γ-globin expression by hypoxia-inducible factor 1α
12. HIC2 controls developmental hemoglobin switching by repressing BCL11A transcription
13. Dual function NFI factors control fetal hemoglobin silencing in adult erythroid cells
14. Identification and characterization of RBM12 as a novel regulator of fetal hemoglobin expression
15. Mechanistic dissection of theCHD4enhancers reveals cooperative functions among the homotypic ZNF410 clustered motifs
16. Disrupting the adult globin promoter alleviates promoter competition and reactivates fetal globin gene expression
17. Circadian REV-ERBs repress E4bp4 to activate NAMPT-dependent NAD+ biosynthesis and sustain cardiac function
18. Testing the super-enhancer concept
19. Expansion of human hematopoietic stem cells by inhibiting translation
20. Genome folding principles revealed in condensin-depleted mitotic chromosomes
21. Engineering three-dimensional genome folding
22. let-7miRNAs repress HIC2 to regulate BCL11A transcription and hemoglobin switching
23. CTCF and transcription influence chromatin structure re-configuration after mitosis
24. Myo-differentiation reporter screen reveals NF-Y as an activator of PAX3–FOXO1 in rhabdomyosarcoma
25. Supplementary Video S1 from Natural Killer Cell Activation by Ubiquitin-specific Protease 6 Mediates Tumor Suppression in Ewing Sarcoma
26. Supplementary Figure S7 from Natural Killer Cell Activation by Ubiquitin-specific Protease 6 Mediates Tumor Suppression in Ewing Sarcoma
27. FIGURE 6 from Natural Killer Cell Activation by Ubiquitin-specific Protease 6 Mediates Tumor Suppression in Ewing Sarcoma
28. Supplementary Table S1 from Natural Killer Cell Activation by Ubiquitin-specific Protease 6 Mediates Tumor Suppression in Ewing Sarcoma
29. FIGURE 1 from Natural Killer Cell Activation by Ubiquitin-specific Protease 6 Mediates Tumor Suppression in Ewing Sarcoma
30. FIGURE 2 from Natural Killer Cell Activation by Ubiquitin-specific Protease 6 Mediates Tumor Suppression in Ewing Sarcoma
31. FIGURE 5 from Natural Killer Cell Activation by Ubiquitin-specific Protease 6 Mediates Tumor Suppression in Ewing Sarcoma
32. FIGURE 4 from Natural Killer Cell Activation by Ubiquitin-specific Protease 6 Mediates Tumor Suppression in Ewing Sarcoma
33. FIGURE 7 from Natural Killer Cell Activation by Ubiquitin-specific Protease 6 Mediates Tumor Suppression in Ewing Sarcoma
34. Natural Killer Cell Activation by Ubiquitin-specific Protease 6 Mediates Tumor Suppression in Ewing Sarcoma
35. FIGURE 3 from Natural Killer Cell Activation by Ubiquitin-specific Protease 6 Mediates Tumor Suppression in Ewing Sarcoma
36. Alteration of genome folding via contact domain boundary insertion
37. Publisher Correction: Dual function NFI factors control fetal hemoglobin silencing in adult erythroid cells
38. Chromatin structure dynamics during the mitosis-to-G1 phase transition
39. Robust erythroid differentiation system for rhesus hematopoietic progenitor cells allowing preclinical screening of genetic treatment strategies for the hemoglobinopathies
40. Data from Natural killer cell activation by Ubiquitin-specific protease 6 (USP6) mediates tumor suppression in Ewing sarcoma
41. Supplementary Figure S7 from Natural killer cell activation by Ubiquitin-specific protease 6 (USP6) mediates tumor suppression in Ewing sarcoma
42. Supplementary Table S1 from Natural killer cell activation by Ubiquitin-specific protease 6 (USP6) mediates tumor suppression in Ewing sarcoma
43. Supplementary Video S1 from Natural killer cell activation by Ubiquitin-specific protease 6 (USP6) mediates tumor suppression in Ewing sarcoma
44. Genome folding dynamics during the M-to-G1-phase transition
45. Domain-focused CRISPR screen identifies HRI as a fetal hemoglobin regulator in human erythroid cells
46. Publisher Correction: BRD4 orchestrates genome folding to promote neural crest differentiation
47. Context-Dependent Regulation of GATA-1 by Friend of GATA-1
48. Efficient engineering of human and mouse primary cells using peptide-assisted genome editing
49. Supplementary Data from Targeting the EIF2AK1 Signaling Pathway Rescues Red Blood Cell Production in SF3B1-Mutant Myelodysplastic Syndromes With Ringed Sideroblasts
50. Data from Targeting the EIF2AK1 Signaling Pathway Rescues Red Blood Cell Production in SF3B1-Mutant Myelodysplastic Syndromes With Ringed Sideroblasts
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