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Research Article

A study in situ of the effect of metallo- and serine proteinase inhibitors on the birefringence of the secretory stage enamel organic extracellular matrix

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Pages 108-114 | Accepted 17 Sep 2009, Published online: 29 Jan 2010

References

  • Bartlett JD, Beniash E, Lee DH, Smith CE (2004) Decreased mineral content in MMP-20 null mouse enamel is prominent during the maturation stage. J. Dent. Res. 83: 909–913.
  • Bartlett JD, Ganss B, Goldberg M, Moradian-Oldak J, Paine ML, Snead ML, Wen X, White SN, Zhou YL (2006) Protein-protein interactions of the developing enamel matrix. Curr. Top. Dev. Biol. 74: 57–115.
  • Bartlett JD, Ryu OH, Xue J, Simmer JP, Margolis HC (1998) Enamelysin mRNA displays a developmentally defined pattern of expression and encodes a protein which degrades amelogenin. Connect. Tissue Res. 39: 101–109.
  • Bartlett JD, Simmer JP, Xue J, Margolis HC, Moreno EC (1996) Molecular cloning and mRNA tissue distribution of a novel matrix metalloproteinase isolated from porcine enamel organ. Gene 183: 123–128.
  • Beniash E, Simmer JP, Margolis HC (2005) The effect of recombinant mouse amelogenins on the formation and organization of hydroxyapatite crystals in vitro. J. Struct. Biol. 149: 182–190.
  • Bouropoulos N, Moradian-Oldak J (2003) Analysis of hydroxyapatite surface coverage by amelogenin nanospheres following the Langmuir model for protein adsorption. Calcif. Tissue Int. 72: 599–603.
  • Bouropoulos N, Moradian-Oldak J (2004) Induction of apatite by the cooperative effect of amelogenin and the 32-kDa enamelin. J. Dent. Res. 83: 278–282.
  • Eisenmann DR (1998) Amelogenesis. Ten Cate AR. Oral Histology: Development, Structure and Function, 5th. Mosby, St. Louis. 197–217.
  • Espírito Santo AR, Novaes PD, Line SRP (2006) Anisotropic properties of the enamel organic extracellular matrix. Eur. J. Oral Sci. 114: 333–337.
  • Espírito Santo AR, Bartlett JD, Gibson CW, Li Y, Kulkarni AB, Line SRP (2007) Amelogenin and enamelysin (MMP-20)-deficient mice display altered birefringence in the secretory-stage enamel organic extracellular matrix. Connect. Tissue Res. 48: 39–45.
  • Fukae M, Tanabe T, Nagano T, Ando H, Yamakoshi Y, Yamada M, Simmer JP, Oida S (2002) Odontoblasts enhance the maturation of enamel crystals by secreting EMSP1 at the enamel-dentin junction. J. Dent. Res. 81: 668–672.
  • Gerlach RF, Souza AP, Cury JA, Line SRP (2000) Fluoride effect on the activity of enamel matrix proteinases in vitro. Eur. J. Oral Sci. 108: 48–53.
  • Habelitz S, Kullar A, Marshall SJ, Denbesten PK, Balooch M, Marshall GW, Li W (2004) Amelogeninguided crystal growth on fluorapatite glass-ceramic. J. Dent. Res. 83: 698–702.
  • Hu JC, Zhang C, Sun X, Yang Y, Cao X, Ryu O, Simmer JP (2000) Characterization of the mouse and human PRSS17genes, their relationship to other serine proteinases, and expression of PRSS17 in developing mouse incisors. Gene 251: 1–8.
  • Hu JC-C, Sun X, Zhang CH, Liu S, Bartlett JD, Simmer JP (2002) Enamelysin and kallikrein-4 mRNA expression in developing mouse molars. Eur. J. Oral Sci. 110: 307–315.
  • Iijima M, Moradian-Oldak J (2004) Interactions of amelogenin with octacalcium phosphate crystal faces are dose dependent. Calcif. Tissue Int. 74: 522–531.
  • Iijima M, Moriwak Y, Wen HB, Fincham AG, Moradian-Oldak J (2002) Elongated growth of octacalcium phosphate crystals in recombinant amelogenin gels under controlled ionic flow. J. Dent. Res. 81: 69–73.
  • Moradian-Oldak J, Bouropoulos N, Wang L, Gharakhanian N (2002) Analysis of self-assembly and apatite binding properties of amelogenin proteins lacking the hydrophilic C-terminal. Matrix Biol. 21: 197–205.
  • Moradian-Oldak J, Du C, Falini G (2006) On the formation of amelogenin microribbons. Eur. J. Oral Sci. 114: 289–296.
  • Moradian-Oldak J, Tan J, Fincham AG (1998) Interaction of amelogenin with hydroxyapatite crystals: an adherence effect through amelogenin molecular self-association. Biopolymers 46: 225–238.
  • Paine ML, Snead ML (1997) Protein interactions during assembly of the enamel organic extracellular matrix. J. Bone Miner. Res. 12: 221–227.
  • Salvesen G, Nagase H (1989) Inhibition of proteolytic enzymes. Beynon RJ, Bond JS. Proteolytic Enzymes: a Practical Approach, 1st.Oxford University Press, Oxford. 83–102.
  • Shaw WJ, Campbell AA, Paine ML, Snead ML (2004) The C-terminus of the amelogenin, LRPA, is orientated next to the hydroxyapatite surface. J. Biol. Chem. 279: 40263–40266.
  • Simmer JP, Fukae M, Tanabe T, Yamakoshi Y, Uchida T, Xue J, Margolis HC, Shimizu M, DeHart BC, Hu C-C, Bartlett JD (1998) Purification, characterization, and cloning of enamel matrix serine proteinase 1. J. Dent. Res. 77: 377–386.
  • Simmer JP, Hu C-C (2002) Expression, structure, and function of enamel proteinases. Connect. Tissue Res. 43: 441–449.
  • Tanabe T, Fukae M, Shimizu M (1996) Possible actions of metalloproteinases found in porcine enamel in an early secretory stage. Adv. Dent. Res. 10: 170–172.
  • Wallwork ML, Kirkham J, Zhang J, Smith A, Brookes S, Shore RC, Wood SR, Ryu O, Robinson C (2001) Binding of matrix proteins to developing enamel crystals: an atomic force microscope study. Langmuir 17: 2508–2513.
  • Wen HB, Moradian-Oldak J, Fincham AG (1999) Modulation of apatite crystal growth on Bioglass by recombinant amelogenin. Biomaterials 20: 1717–1725.

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