scholarly article | Q13442814 |
P50 | author | Wendy Shaw | Q56669217 |
Garry W Buchko | Q56808207 | ||
P2093 | author name string | Susan Krueger | |
Nasib Karl Maluf | |||
John S Philo | |||
Barbara J Tarasevich | |||
Genyao Lin | |||
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The leucine rich amelogenin protein (LRAP) adsorbs as monomers or dimers onto surfaces. | Q30475727 | ||
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Specific amelogenin gene splice products have signaling effects on cells in culture and in implants in vivo | Q30656624 | ||
Activation of recombinant bovine matrix metalloproteinase-20 and its hydrolysis of two amelogenin oligopeptides | Q33178995 | ||
The tooth enamel protein, porcine amelogenin, is an intrinsically disordered protein with an extended molecular configuration in the monomeric form | Q33411458 | ||
The leucine-rich amelogenin peptide alters the amelogenin null enamel phenotype | Q33666402 | ||
The structural biology of the developing dental enamel matrix | Q33707684 | ||
Amelogenins: assembly, processing and control of crystal morphology | Q34375929 | ||
Partial high-resolution structure of phosphorylated and non-phosphorylated leucine-rich amelogenin protein adsorbed to hydroxyapatite | Q35161638 | ||
Dissecting amelogenin protein nanospheres: characterization of metastable oligomers | Q35266477 | ||
The Amelogenin Proteins and Enamel Development in Humans and Mice | Q35639526 | ||
Rescue of the murine amelogenin null phenotype with two amelogenin transgenes | Q35727312 | ||
Effect of phosphorylation on the interaction of calcium with leucine-rich amelogenin peptide | Q36251080 | ||
Phosphorylation and ionic strength alter the LRAP-HAP interface in the N-terminus | Q36765783 | ||
Neutron reflectometry studies of the adsorbed structure of the amelogenin, LRAP. | Q36789990 | ||
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Phosphorylated proteins and control over apatite nucleation, crystal growth, and inhibition. | Q37285119 | ||
Leucine rich amelogenin peptide alters ameloblast differentiation in vivo | Q37315627 | ||
Leucine-rich amelogenin peptide induces osteogenesis by activation of the Wnt pathway | Q37378529 | ||
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The influence of Leucine-rich amelogenin peptide on MSC fate by inducing Wnt10b expression | Q39526669 | ||
Critical evaluation of Nanoparticle Tracking Analysis (NTA) by NanoSight for the measurement of nanoparticles and protein aggregates | Q39973841 | ||
Bone sialoprotein expression enhances osteoblast differentiation and matrix mineralization in vitro | Q40119310 | ||
The chemistry of enamel development. | Q40454870 | ||
Leucine-rich amelogenin peptide: a candidate signaling molecule during cementogenesis | Q40509614 | ||
The role of enamel matrix proteins in the development of cementum and periodontal tissues | Q41504115 | ||
Self-assembly properties of recombinant engineered amelogenin proteins analyzed by dynamic light scattering and atomic force microscopy | Q41756111 | ||
Mmp-20 and Klk4 cleavage site preferences for amelogenin sequences | Q42566135 | ||
Determination of the conformations of cAMP receptor protein and its T127L,S128A mutant with and without cAMP from small angle neutron scattering measurements | Q42682048 | ||
Leucine-rich amelogenin peptide induces osteogenesis in mouse embryonic stem cells | Q43089632 | ||
Interaction of amelogenin with hydroxyapatite crystals: an adherence effect through amelogenin molecular self-association | Q43770312 | ||
Detection of monodisperse aggregates of a recombinant amelogenin by dynamic light scattering | Q43970002 | ||
Self-assembly and effect on crystal growth of the leucine-rich amelogenin peptide | Q44604289 | ||
Evidence for amelogenin "nanospheres" as functional components of secretory-stage enamel matrix. | Q44987880 | ||
The COOH terminus of the amelogenin, LRAP, is oriented next to the hydroxyapatite surface | Q45010264 | ||
Temperature and pH-dependent supramolecular self-assembly of amelogenin molecules: a dynamic light-scattering analysis | Q46065009 | ||
The effect of LRAP on enamel organ epithelial cell differentiation | Q46066754 | ||
Quantitative analysis of amelogenin solubility | Q46164076 | ||
Enamel formation in vitro in mouse molar explants exposed to amelogenin polypeptides ATMP and LRAP on enamel development | Q46206686 | ||
Comparative calcium binding of leucine-rich amelogenin peptide and full-length amelogenin | Q46281839 | ||
Differential effect of amelogenin peptides on osteogenic differentiation in vitro: identification of possible new drugs for bone repair and regeneration | Q46291658 | ||
Analysis of amelogenin proteins using monospecific antibodies to defined sequences | Q46294980 | ||
Ten-year results following treatment of intra-bony defects with enamel matrix proteins and guided tissue regeneration | Q47438287 | ||
Comparison of the crystal and solution structures of calmodulin and troponin C | Q48112277 | ||
Identification of the leucine-rich amelogenin peptide (LRAP) as the translation product of an alternatively spliced transcript | Q48235654 | ||
Cyclical changes in pH in bovine developing enamel as sequential bands. | Q50875205 | ||
Improved methods for fitting sedimentation coefficient distributions derived by time-derivative techniques. | Q51940791 | ||
Properties of dissociatively extracted fetal tooth matrix proteins. I. Principal molecular species in developing bovine enamel | Q71364245 | ||
Enamel matrix derivative (EMDOGAIN) in the treatment of intrabony periodontal defects | Q73732983 | ||
P433 | issue | 1 | |
P304 | page(s) | 81-91 | |
P577 | publication date | 2014-10-25 | |
P1433 | published in | Journal of Structural Biology | Q3186947 |
P1476 | title | The leucine-rich amelogenin protein (LRAP) is primarily monomeric and unstructured in physiological solution | |
P478 | volume | 190 |
Q55559827 | Amelogenin is a Potential Biomarker for the Aggressiveness in Odontogenic Tumors |
Q47166228 | Dose-Dependent Rescue of KO Amelogenin Enamel by Transgenes in Vivo |
Q46276385 | Dynamic interactions of amelogenin with hydroxyapatite surfaces are dependent on protein phosphorylation and solution pH. |
Q89365381 | Identification of major matrix metalloproteinase-20 proteolytic processing products of murine amelogenin and tyrosine-rich amelogenin peptide using a nuclear magnetic resonance spectroscopy based method |
Q33849604 | Protein Phosphorylation and Mineral Binding Affect the Secondary Structure of the Leucine-Rich Amelogenin Peptide |
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