151 results on '"Nicolis, Silvia K."'
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2. Sox2 Acts in Thalamic Neurons to Control the Development of Retina-Thalamus-Cortex Connectivity
3. Supplementary Materials and Methods and Figures 1 - 3 from Sox2 Is Required to Maintain Cancer Stem Cells in a Mouse Model of High-Grade Oligodendroglioma
4. Supplementary Table 1 from Sox2 Is Required to Maintain Cancer Stem Cells in a Mouse Model of High-Grade Oligodendroglioma
5. Data from Sox2 Is Required to Maintain Cancer Stem Cells in a Mouse Model of High-Grade Oligodendroglioma
6. Genomic glucocorticoid action in embryonic mouse neural stem cells
7. Hooked Up from a Distance: Charting Genome-Wide Long-Range Interaction Maps in Neural Cells Chromatin to Identify Novel Candidate Genes for Neurodevelopmental Disorders
8. SoxD genes are required for adult neural stem cell activation
9. Bridging between mouse and human enhancer-promoter long-range interactions in neural stem cells, to understand enhancer function in neurodevelopmental disease
10. Deconstructing Sox2 Function in Brain Development and Disease
11. List of Contributors
12. Sox2-Dependent Regulation of Neural Stem Cells and CNS Development
13. SoxD genes are required for adult neural stem cell activation
14. A direct physical interaction between Nanog and Sox2 regulates embryonic stem cell self‐renewal
15. FOS Rescues Neuronal Differentiation of Sox2-Deleted Neural Stem Cells by Genome-Wide Regulation of Common SOX2 and AP1(FOS-JUN) Target Genes
16. Supplementary figures and table from An early Sox2-dependent gene expression programme required for hippocampal dentate gyrus development
17. FOS Rescues Neuronal Differentiation of Sox2-Deleted Neural Stem Cells by Genome-Wide Regulation of Common SOX2 and AP1(FOS-JUN) Target Genes
18. Sox2 controls neural stem cell self-renewal through a Fos-centered gene regulatory network
19. Sox2 Controls Neural Stem Cell Self-Renewal Through a Fos-Centered Gene Regulatory Network
20. An early Sox2-dependent gene expression programme required for hippocampal dentate gyrus development
21. Multipotent cell lineages in early mouse development depend on SOX2 function
22. Sox2 and Pax6 maintain the proliferative and developmental potential of gliogenic neural stem cells In vitro
23. Sox2‐dependent maintenance of mouse oligodendroglioma involves the Sox2‐mediated downregulation of Cdkn2b, Ebf1, Zfp423, and Hey2
24. An early Sox2-dependent gene expression program required for hippocampal dentate gyrus development
25. Sox2 controls neural stem cell self-renewal through a Fos-centered gene regulatory network
26. Mapping the Global Chromatin Connectivity Network for Sox2 Function in Neural Stem Cell Maintenance
27. Mapping the Global Chromatin Connectivity Network for Sox2 Function in Neural Stem Cell Maintenance
28. Mapping the Global Chromatin Connectivity Network for Sox2 Function in Neural Stem Cell Maintenance
29. More than just Stem Cells: Functional Roles of the Transcription Factor Sox2 in Differentiated Glia and Neurons
30. Mapping the Global Chromatin Connectivity Network for Sox2 Function in Neural Stem Cell Maintenance
31. Sox2-Dependent 3D Chromatin Interactomes in Transcription, Neural Stem Cell Proliferation and Neurodevelopmental Diseases
32. Sox2‐dependent maintenance of mouse oligodendroglioma involves the Sox2‐mediated downregulation of Cdkn2b, Ebf1, Zfp423, and Hey2.
33. Sox2 is required for olfactory pit formation and olfactory neurogenesis through BMP restriction and Hes5 upregulation
34. Sox2 conditional mutation in mouse causes ataxic symptoms, cerebellar vermis hypoplasia, and postnatal defects of Bergmann glia
35. Sox2 conditional mutation in mouse causes ataxic symptoms, cerebellar vermis hypoplasia, and postnatal defects of Bergmann glia
36. Sox2 is required for olfactory pit formation and olfactory neurogenesis through BMP restriction and Hes5 upregulation
37. Analysis of neural crest-derived clones reveals novel aspects of facial development
38. Analysis of neural crest-derived clones reveals novel aspects of facial development
39. Analysis of neural crest–derived clones reveals novel aspects of facial development
40. Sox2 Is Required to Maintain Cancer Stem Cells in a Mouse Model of High-Grade Oligodendroglioma
41. DNA Damage in Mammalian Neural Stem Cells Leads to Astrocytic Differentiation Mediated by BMP2 Signaling through JAK-STAT
42. R26R-GR: A Cre-Activable Dual Fluorescent Protein Reporter Mouse
43. Signaling through BMP receptors promotes respiratory identity in the foregut via repression of Sox2
44. Sox2 roles in neural stem cells
45. Hippocampal development and neural stem cell maintenance require Sox2-dependent regulation of Shh
46. Impaired generation of mature neurons by neural stem cells from hypomorphic Sox2 mutants
47. Cancer stem cells and “stemness” genes in neuro-oncology
48. New Role of the Regulatory Gene SOX2 in Hematopoiesis.
49. Conserved POU Binding DNA Sites in the Sox2 Upstream Enhancer Regulate Gene Expression in Embryonic and Neural Stem Cells
50. Sox2deficiency causes neurodegeneration and impaired neurogenesis in the adult mouse brain
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