Literature DB >> 18815439

Cell derived hierarchical assembly of a novel phosphophoryn-based biomaterial.

Jinhua Li1, Dana Olton, Donghyun Lee, Prashant N Kumta, Charles Sfeir.   

Abstract

Phosphophoryn (PP) is an acidic phosphoprotein belonging to the small integrin-bindingligand N-linked glycoprotein (SIBLING) protein family. PP is highly phosphorylated with approximately 200 phosphates per molecule and has a high affinity for calcium. The aim of this manuscript is to demonstrate that PP has the ability to self-assemble when it is overexpressed in a mammalian cell in the presence of calcium. Our data show that when PP is overexpressed using an adenovirus, the self-assembly occurs in the endoplasmic reticulum (ER) which contains high calcium concentration. We hypothesize that the physicochemical properties of the highly phosphorylated state and acidic nature of PP are playing an important role in its assembly in the ER. It appears that when a critical concentration of PP is reached, the assembly is then favored and facilitated. This self-assembly could be due to several factors. (1) The ER provides an ideal environment for this phenomenon to occur, since the ER environment usually promotes aggregation [Stevens and Argon: Semin Cell Dev Biol 1999;10:443-454]. (2) In addition to PP's physicochemical properties, the unfolded protein response could also be playing a role in this self-assembly [Schroder and Kaufman: Mutat Res 2005;569:29-63]. Unfolded protein response could be activated by a broad spectrum of insults that result in protein misfolding and ultimately blocking of the protein synthesis progression to the Golgi apparatus resulting in an accumulation of the protein in the ER. In summary, our data show that PP has the ability to self-assemble in a hierarchical manner. Copyright 2008 S. Karger AG, Basel.

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Year:  2008        PMID: 18815439      PMCID: PMC2824203          DOI: 10.1159/000158571

Source DB:  PubMed          Journal:  Cells Tissues Organs        ISSN: 1422-6405            Impact factor:   2.481


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Review 1.  Osteoblast adhesion on biomaterials.

Authors:  K Anselme
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Authors:  M F Young; J M Kerr; K Ibaraki; A M Heegaard; P G Robey
Journal:  Clin Orthop Relat Res       Date:  1992-08       Impact factor: 4.176

3.  Nucleation and inhibition of hydroxyapatite formation by mineralized tissue proteins.

Authors:  G K Hunter; P V Hauschka; A R Poole; L C Rosenberg; H A Goldberg
Journal:  Biochem J       Date:  1996-07-01       Impact factor: 3.857

4.  The phosphoprotein of the dentin matrix.

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Authors:  L W Fisher; D A Torchia; B Fohr; M F Young; N S Fedarko
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Review 6.  Mineral-matrix interactions in bone and dentin.

Authors:  A Veis
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7.  Rat incisor phosphoprotein. The nature of the phosphate and quantitation of the phosphoserine.

Authors:  W S Richardson; E C Munksgaard; W T Butler
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9.  Noncollagenous proteins of dentin. A re-examination of proteins from rat incisor dentin utilizing techniques to avoid artifacts.

Authors:  A Linde; M Bhown; W T Butler
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10.  Dentin matrix protein 1 initiates hydroxyapatite formation in vitro.

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