Chemistry Reference
In-Depth Information
Burjanadze TV (1979) Hydroxyproline content and location in relation to collagen thermal stability.
Biopolymers. 18:931-938
Burjanadze TV, Bezhitadze MO (1992) Presence of a thermostable domain in the helical part of the type I
collagen molecule and its role in the mechanism of triple helix folding. Biopolymers. 32:951-956
Burjanadze TV, Veis A (1997) A thermodynamic analysis of the contribution of hydroxyproline to the
structural stability of the collagen triple helix. Connect Tiss Res 36:347-365
Burr DB (2002) The contribution of the organic matrix to bones material properties. Bone 31:8-11
Butler WT, Cunningham LW (1966) Evidence for the linkage of a disaccharide to hydroxylysine in
tropocollagen. J Biol Chem 241:3882-3888
Currey JD (2001) Bone strength: what are we trying to measure? Calcif Tissue Int 68:205-210
Dahl T, Sabsay B, Veis A (1998) Type I collagen-phosphophoryn interactions: Specificity of the
monomer-monomer binding. J Struct Biol 123:162-168
Deutsch D. (1989) Structure and function of enamel gene products. Anat Rec 224:189-210
Deutsch D, Palmon A, Dafni L, Mao Z, Leytin V, Young M, Fisher LW (1998) Tuftelin-aspects of protein
and gene structure. Eur J Oral Sci 106:315-323
Deutsch D, Palmon A, Fisher LW, Kolodny N, Termine JD, and Young MF (1991) Sequencing of bovine
enamelin (tuftelin), a novel acidic enamel protein. J Biol Chem 266:16021-16028
Diekwisch TGH, Berman BJ, Gentner S, Slavkin HC (1995) Initial enamel crystals are not spatially
associated with mineralized dentine. Cell Tissue Res 279:149-167
Dimuzio MT, Veis A (1978b) Phosphophoryns—major non-collagenous proteins of the rat incisor dentin.
Calcif Tiss Res 25:169-178.
Dimuzio MT, Veis A (1978a) The biosynthesis of phosphophoryns and dentin collagen in the continuously
erupting rat incisor. J Biol Chem 253:6845-6852
Donoghue P C J, Sansom IJ (2002) Origin and early evolution of vertebrate skeletonization. Microsc Res
Tech 59:352-372
Drake MP, Veis A (1964) Interchain interactions in collagen-fold formation. I. The kinetics of renaturation
of
-gelatin. Biochemistry 3:135-145
Dunglas C, Septier D, Paine ML, Zhu DH, Snead ML, Goldberg M (2002) Ultrastructure of forming
enamel in a mouse bearing a transgene that disrupts the amelogenin self-assembly domains. Calcif
Tissue Int 71:155-166
Farquharson C, Duncan A, Seawright E, Whitehead CC, Robins SP (1996) Distribution and quantification
of pyridinium cross-links of collagen within the different maturational zones of the chick growth
plate. Biochim Biophys Acta 1290:250-256
Fincham AG, Leung W, Tan J, Moradian-Oldak J (1998) Does amelogenin nanosphere assembly proceed
through intermediary-sized structures? Connect Tissue Res 38:237-240
Fincham AG, Moradian-Oldak J, Diekwisch TGH, Lyaruu DM, Wright JT, Bringas PJr, Slavkin HC (1995)
Evidence for amelogenin nanospheres as functional components of secretory-stage enamel. J Struct
Biol 115:50-59
Fincham AG, Moradian-Oldak J, Simmer JP, Sarte PE, Lau EC, Diekwisch T, Slavkin HC (1994) Self-
assembly of a recombinant amelogenin protein generates supramolecular structures. J Struct Biol
112:103-109
Fincham AG, Moradian-Oldak J, Simmer JP (1999) The structural biology of the developing dental enamel
matrix. J Struct Biol 126:270-299
Fisher LW, Torchia DA, Fohr B, Young MF, Fedarko NS (2001) Flexible structures of SIBLING proteins,
bone sialoprotein, and osteopontin. Biochem Biophys Res Commun 280:460-465
Frank S, Boudko S, Mizuno K, Schulthess T, Engel J, Bachinger HP (2003) Collagen triple helix formation
can be nucleated at either end. J Biol Chem 278:7747-7750
Fraser RDB, MacRae TP, Miller A, Suzuki E (1983) Molecular conformation and packing in collagen
fibrils. J Mol Biol 167:495-521
Fratzl P, Groschner M, Vogl G, Plenk H Jr., Eschberger J, Fratzl-Zelman N, Koller K, Klaushofer K (1992)
Mineral crystals in calcified tissues: a comparative study by SAXS. J Bone Min Res 7:329-334
Fratzl P, Paris O, Klaushofer K, Landis WJ (1996) Bone mineralization in an osteogenesis imperfecta
mouse model studied by small-angle X-ray scattering. J Clin Invest 97:396-402
Fukae M, Tanabe T, Murakami C, Dohi N, Uchida T, Shimizu M (1996) Primary structure of porcine 89
kDa enamelin. Adv Dent Res 10:111-118
Gautron J, Hincke MT, Mann K, Panheleux M, Bain M, McKee MD, Solomon SE, Nys Y (2001)
Ovocalyxin-32, a novel chicken eggshell matrix protein, isolation, amino acid sequencing, cloning,
and immunocytochemical localization. J Biol Chem 276:39243-39252.
George A, Sabsay B, Simonian PAL, Veis A (1993) Characterization of a novel dentin matrix acidic
protein. Implications for biomineralization. J Biol Chem 268:12624-12630
Îł
Search WWH ::




Custom Search