45 results on '"Haro, Endika"'
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2. Failure of digit tip regeneration in the absence of Lmx1b suggests Lmx1b functions disparate from dorsoventral polarity
3. Orphan CpG islands amplify poised enhancer regulatory activity and determine target gene responsiveness
4. Synergistic insulation of regulatory domains by developmental genes and clusters of CTCF sites
5. Identification of limb-specific Lmx1b auto-regulatory modules with Nail-patella syndrome pathogenicity
6. Failure of digit tip regeneration in the absence of Lmx1b suggests Lmx1b functions disparate from dorsoventral polarity
7. Supplemental Material for “Failure of digit tip regeneration in the absence of Lmx1b suggests Lmx1b functions disparate from dorsoventral polarity” [Dataset]
8. Absence of digit tip regeneration in Lmx1b-deficient nailless digits suggests a role for Lmx1b distinct from patterning
9. Analysis of regeneration in digit tips lacking dorso-ventral patterning suggests a role for Lmx1b other than dorsalization
10. Enhancer-gene specificity in development and disease
11. Dorso-ventral polarity is not required for digit tip regeneration
12. Enhancer-gene specificity in development and disease
13. Failure of digit tip regeneration in the absence of Lmx1b suggests Lmx1b functions disparate from dorsoventral polarity
14. Two limb-specific enhancers control Lmx1b expression in a modular and autoregulatory manner
15. Orphan CpG islands amplify poised enhancer regulatory activity and determine target gene responsiveness
16. Identification of limb-specific Lmx1b auto-regulatory modules with Nail-patella syndrome pathogenicity
17. Enhancer-gene specificity in development and disease.
18. Identification of limb-specific Lmx1b auto-regulatory modules with Nail-Patella Syndrome pathogenicity
19. Implementation of transgenic platform based on the application of CRISPR/Cas9 technology in mouse zygotes
20. Autoregulation of Lmx1b during limb development: A role in Nail-Patella Syndrome?
21. Absence of digit tip regeneration in a mouse model lacking nails
22. Identification of limb-specific Lmx1b auto-regulatory modules with Nail-Patella Syndrome pathogenicity
23. Two Lmx1b-associated cis-regulatory modules (LARM1/2) mediate Lmx1b auto-amplification during limb dorsalization and their disruption can cause a limb-specific form of Nail-Patella syndrome
24. Loss of enhancer-mediated Lmx1b autoregulation disrupts limb dorsalization and causes nail patella sindrome
25. Regulation of a GDF5 Associated Enhancer During Limb Development
26. Role of hox genes in regulating digit patterning
27. Role of Hox genes in regulating digit patterning
28. Lmx1b‐dependent Activity of an Associated Enhancer Suggests Lmx1b Autoregulation
29. Identification of a Novel Silencer within an Lmx1b Mediated Cis‐regulatory Module
30. GDF5 Is a Direct Target of LMX1B Regulation During Limb Dorsalization
31. Lmx1b-targeted cis-regulatory modules involved in limb dorsalization
32. Lmx1b Binds to a Gdf5‐Associated Enhancer Element Active During Limb Dorsalization
33. Characterization of a NOGO‐A associated enhancer element in chicken
34. Lmx1b‐Mediated Limb Dorsalization: Identification of a Potential Regulatory Sequence for Keratocan, Lumican, and Decorin
35. Sp6 and Sp8 transcription factors are necessary mediators of Wnt/ ß Catenin function in the limb ectoderm
36. Regulation of the NOGO‐Associated Enhancer
37. Evidence for Lmx1b Self‐Regulation During Limb Dorsalization
38. Identification of Potential Lmx1b‐Regulated Enhancers During Limb Development
39. Lmx1b‐Mediated Emx2‐ Associated Regulatory Region Active During Limb Development
40. Sp6 and Sp8 transcription factors control AER formation and dorsal-ventral patterning in limb development
41. Sp6 and Sp8 Transcription Factors Control AER Formation and Dorsal-Ventral Patterning in Limb Development
42. A clinical and experimental overview of sirenomelia: insight into the mechanisms of congenital limb malformations
43. A clinical and experimental overview of sirenomelia: insight into the mechanisms of congenital limb malformations
44. Failure of digit tip regeneration in the absence of Lmx1bsuggests Lmx1b functions disparate from dorsoventral polarity
45. Sox, Fox, and Lmx1b binding sites differentially regulate a Gdf5-Associated regulatory region during elbow development.
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