115 results on '"Oberg A"'
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2. LHX2 Regulates Shh Expression in the Limb Independent of the ZPA Regulatory Sequence
3. Regulation of LIM homeodomain 2 (Lhx2) in the distal limb bud during patterning and development
4. Differential Regulation of Lhx9 Expression in Mouse and Chicken Limbs
5. An E‐Box Binding Site is Sufficient for ZPA Regulatory Sequence (ZRS) Activity in the Limb
6. An E‐Box Binding Site is Sufficient for ZPA Regulatory Sequence (ZRS) Activity in the Limb
7. Regulation of LIM homeodomain 2 (Lhx2) in the distal limb bud during patterning and development
8. The Role of Sox9 in Regulating Joint Development through a Gdf5 Enhancer
9. LHX2 Regulates Shh Expression in the Limb Independent of the ZPA Regulatory Sequence
10. Differential Regulation of Lhx9 Expression in Mouse and Chicken Limbs
11. The SOX11 Transcription Factor Upregulates Growth Differentiation Factor‐5 During Joint Formation Through a Downstream Enhancer Element
12. ZPA Regulatory Sequence (ZRS) Activity in the Limb is Eliminated by Loss of Hand2, Twist1, and Hoxd13 Binding Sites
13. ETS Binding Sites are Critical for Activity of the LHX2‐Associated Sub‐AER Regulatory Module 1 (LASARM1)
14. The ZPA Regulatory Sequence (ZRS) Hand2 and Twist1 Binding Sites are Not Necessary for ZRS Activity
15. The Role of the SOX11 Transcription Factor in Regulating Growth Differentiation Factor‐5 During Joint Formation
16. The SOX11 Transcription Factor Upregulates Growth Differentiation Factor‐5 During Joint Formation Through a Downstream Enhancer Element
17. The Role of the SOX11 Transcription Factor in Regulating Growth Differentiation Factor‐5 During Joint Formation
18. The ZPA Regulatory Sequence (ZRS) Hand2 and Twist1 Binding Sites are Not Necessary for ZRS Activity
19. ETS Binding Sites are Critical for Activity of the LHX2‐Associated Sub‐AER Regulatory Module 1 (LASARM1)
20. ZPA Regulatory Sequence (ZRS) Activity in the Limb is Eliminated by Loss of Hand2, Twist1, and Hoxd13 Binding Sites
21. Loss of HAND2 and HOXD13 Binding Sites in the ZPA Regulatory Sequence (ZRS) is not Sufficient to Disrupt Activity in the Limb
22. An ELK4 Binding Site is Critical for Activity of the LHX2 ‐Associated Sub‐AER Regulatory Module 1 ( LASARM1)
23. The Pattern of EGR1 Expression During Chick Limb Development Suggests a Role in Regulating SHH Expression and/or Termination
24. CNS Activity of an LHX2 ‐Associated Cis ‐Regulatory Module
25. The Multi‐Organ Activity of an Lmx1b ‐Associated cis ‐Regulatory Module Suggests a Global Role in Regulating Lmx1b‐Mediated Development
26. AER‐Related FGFs Upregulate LHX2 Through MEK in the RAS‐Associated Signaling Pathway During the Maintenance of ZPA‐Related SHH Expression
27. The Pattern of SOX11 During Chicken Limb Development Suggests a Role in Myogenesis
28. Regulation of a GDF5 Associated Enhancer During Limb Development
29. Activity of LHX2 ‐associated cis ‐Regulatory Modules During Limb Development
30. An ELK4 Binding Site is Critical for Activity of the LHX2 ‐Associated Sub‐AER Regulatory Module 1 ( LASARM1)
31. Loss of HAND2 and HOXD13 Binding Sites in the ZPA Regulatory Sequence (ZRS) is not Sufficient to Disrupt Activity in the Limb
32. The Pattern of SOX11 During Chicken Limb Development Suggests a Role in Myogenesis
33. The Multi‐Organ Activity of an Lmx1b ‐Associated cis ‐Regulatory Module Suggests a Global Role in Regulating Lmx1b‐Mediated Development
34. CNS Activity of an LHX2 ‐Associated Cis ‐Regulatory Module
35. AER‐Related FGFs Upregulate LHX2 Through MEK in the RAS‐Associated Signaling Pathway During the Maintenance of ZPA‐Related SHH Expression
36. The Pattern of EGR1 Expression During Chick Limb Development Suggests a Role in Regulating SHH Expression and/or Termination
37. The Activity of LHx2‐Associated cis Regulatory Modules
38. Mechanism of Fgf‐Mediated Lhx2 Upregulation
39. Regulation of a GDF5 Associated Enhancer During Limb Development
40. Activity of LHX2 ‐associated cis ‐Regulatory Modules During Limb Development
41. Mechanism of Fgf‐Mediated Lhx2 Upregulation
42. The Activity of LHx2‐Associated cis Regulatory Modules
43. Lmx1b‐dependent Activity of an Associated Enhancer Suggests Lmx1b Autoregulation
44. Identification of a Novel Silencer within an Lmx1b Mediated Cis‐regulatory Module
45. LHX2 is a necessary intermediate in FGF‐induced SHH expression during limb development
46. GDF5 Is a Direct Target of LMX1B Regulation During Limb Dorsalization
47. Lmx1b‐Mediated Emx2‐ Associated Regulatory Region Active During Limb Development
48. Identification of Potential Lmx1b‐Regulated Enhancers During Limb Development
49. Regulation of the NOGO‐Associated Enhancer
50. LHX2: a critical link in the FGF to SHH pathway? (541.2)
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