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1. Reduced hydrolysis of amelogenin may result in X-linked amelogenesis imperfecta.

2. Weaker dental enamel explains dental decay

3. Leucine rich amelogenin peptide prevents ovariectomy-induced bone loss in mice.

4. Amelogenin X impacts age-dependent increase of frequency and number in labial incisor grooves in C57BL/6.

5. Weaker dental enamel explains dental decay.

6. Amelogenins as potential buffers during secretory-stage amelogenesis.

7. Analysis of enamel development using murine model systems: approaches and limitations.

8. Shear bond strength of dentin and deproteinized enamel of amelogenesis imperfecta mouse incisors.

9. Tracking endogenous amelogenin and ameloblastin in vivo.

10. Wnt-RhoA signaling pathways in fluoride-treated ameloblast-lineage cells.

11. M180 amelogenin processed by MMP20 is sufficient for decussating murine enamel.

12. TGF-ß regulates enamel mineralization and maturation through KLK4 expression.

13. Leucine rich amelogenin peptide alters ameloblast differentiation in vivo.

14. Ameloblasts require active RhoA to generate normal dental enamel.

15. Expression and function of enamel-related gene products in calvarial development.

16. Mouse genetic background influences the dental phenotype.

17. Wnt-RhoA signaling is involved in dental enamel development.

18. The role of amelogenin during enamel-crystallite growth and organization in vivo.

19. Rescue of the murine amelogenin null phenotype with two amelogenin transgenes.

20. The use of mouse models to investigate shear bond strength in amelogenesis imperfecta.

21. Computational study of the chemistry of 3-phenylpropyl radicals.

22. An amelogenin mutation leads to disruption of the odontogenic apparatus and aberrant expression of Notch1.

23. The Amelogenin Proteins and Enamel Development in Humans and Mice.

24. Dental enamel structure is altered by expression of dominant negative RhoA in ameloblasts.

25. Full length amelogenin binds to cell surface LAMP-1 on tooth root/periodontium associated cells.

26. The amelogenin C-terminus is required for enamel development.

27. Amelogenesis imperfecta due to a mutation of the enamelin gene: clinical case with genotype-phenotype correlations.

28. A large X-chromosomal deletion is associated with microphthalmia with linear skin defects (MLS) and amelogenesis imperfecta (XAI).

29. Regeneration of bone and periodontal ligament induced by recombinant amelogenin after periodontitis.

30. Synergistic roles of amelogenin and ameloblastin.

31. The leucine-rich amelogenin peptide alters the amelogenin null enamel phenotype.

32. Human and mouse enamel phenotypes resulting from mutation or altered expression of AMEL, ENAM, MMP20 and KLK4.

33. Physiological implications of DLX homeoproteins in enamel formation.

34. Partial rescue of the amelogenin null dental enamel phenotype.

35. The amelogenin "enamel proteins" and cells in the periodontium.

36. Transgenic mice that express normal and mutated amelogenins.

37. Amelogenin- and enamelysin (Mmp-20)-deficient mice display altered birefringence in the secretory-stage enamel organic extracellular matrix.

38. Amelogenins regulate expression of genes associated with cementoblasts in vitro.

39. Imaging RNA polymerase-amelogenin gene complexes with single molecule resolution using atomic force microscopy.

40. Comparison of body weight and gene expression in amelogenin null and wild-type mice.

41. A developmental comparison of matrix metalloproteinase-20 and amelogenin null mouse enamel.

42. Amelogenin-mediated regulation of osteoclastogenesis, and periodontal cell proliferation and migration.

43. Effects of sodium fluoride on the actin cytoskeleton of murine ameloblasts.

44. Tooth enamel defects in mice with a deletion at the Arhgap 6/Amel X locus.

45. Nested genes: biological implications and use of AFM for analysis.

46. The use of animal models to explore amelogenin variants in amelogenesis imperfecta.

47. Quantifying labial blood flow using optical Doppler tomography.

48. Leucine-rich amelogenin peptide: a candidate signaling molecule during cementogenesis.

49. The small bovine amelogenin LRAP fails to rescue the amelogenin null phenotype.

50. Amelogenin: a potential regulator of cementum-associated genes.

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