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35 results on '"SOXB1 Transcription Factor"'

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1. Maternal investment in fish oocytes and eggs: The molecular cargo and its contributions to fertility and early development.

2. Direct pericyte-to-neuron reprogramming via unfolding of a neural stem cell-like program

3. Sox2 conditional mutation in mouse causes ataxic symptoms, cerebellar vermis hypoplasia, and postnatal defects of Bergmann glia

4. Expression of stemness genes in primary breast cancer tissues: the role of SOX2 as a prognostic marker for detection of early recurrence

5. Altered miRNA expression is associated with neuronal fate in G93A-SOD1 ependymal stem progenitor cells

6. Sox2 and Mitf cross-regulatory interactions consolidate progenitor and melanocyte lineages in the cranial neural crest

7. Hippocampal development and neural stem cell maintenance require Sox2-dependent regulation of Shh

8. Impaired generation of mature neurons by neural stem cells from hypomorphic Sox2 mutants

9. Rapid Conversion of Fibroblasts into Functional Forebrain GABAergic Interneurons by Direct Genetic Reprogramming

10. Multipotent cell lineages in early mouse development depend on SOX2 function

11. Sox2 is required to maintain cancer stem cells in a mouse model of high-grade oligodendroglioma

12. Fate of D3 mouse embryonic stem cells exposed to X-rays or carbon ions

13. Sox2 is required for embryonic development of the ventral telencephalon through the activation of the ventral determinants Nkx2.1 and Shh

14. Post-natal cardiomyocytes can generate iPS cells with an enhanced capacity toward cardiomyogenic re-differentation

15. Serine 111 phosphorylation regulates OCT4A protein subcellular distribution and degradation

16. Sox2 and Pax6 maintain the proliferative and developmental potential of gliogenic neural stem cells In vitro

17. Altered miRNA expression is associated with neuronal fate in G93A-SOD1 ependymal stem progenitor cells

18. Sox2 is required to maintain cancer stem cells in a mouse model of high-grade oligodendroglioma

19. C/EBPδ Gene Targets in Human Keratinocytes

20. Sox2 is required for embryonic development of the ventral telencephalon through the activation of the ventral determinants Nkx2.1 and Shh

21. Sphere-forming cell subsets with cancer stem cell properties in human musculoskeletal sarcomas

22. Sox2 and Mitf cross-regulatory interactions consolidate progenitor and melanocyte lineages in the cranial neural crest

23. Post-natal cardiomyocytes can generate iPS cells with an enhanced capacity toward cardiomyogenic re-differentation

24. Reprogramming: So simple, so complex

25. Sox2 and Pax6 maintain the proliferative and developmental potential of gliogenic neural stem cells In vitro

26. Hippocampal development and neural stem cell maintenance require Sox2-dependent regulation of Shh

27. Impaired generation of mature neurons by neural stem cells from hypomorphic Sox2 mutants

28. Conserved POU binding DNA sites in the Sox2 upstream enhancer regulate gene expression in embryonic and neural stem cells

29. Sox2 deficiency causes neurodegeneration and impaired neurogenesis in the adult mouse brain

30. Conserved POU binding DNA sites in the Sox2 upstream enhancer regulate gene expression in embryonic and neural stem cells

31. Sox2 deficiency causes neurodegeneration and impaired neurogenesis in the adult mouse brain

32. Multipotent cell lineages in early mouse development depend on SOX2 function

33. Sox2 regulatory sequences direct expression of a (beta)-geo transgene to telencephalic neural stem cells and precursors of the mouse embryo, revealing regionalization of gene expression in CNS stem cells

34. Sox2 regulatory sequences direct expression of a (beta)-geo transgene to telencephalic neural stem cells and precursors of the mouse embryo, revealing regionalization of gene expression in CNS stem cells

35. Genes involved in regulation of stem cell properties: studies on their expression in a small cohort of neuroblastoma patients

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