The role of collagen in bone apatite formation in the presence of hydroxyapatite nucleation inhibitors

被引:798
作者
Nudelman, Fabio [1 ,2 ]
Pieterse, Koen [3 ]
George, Anne [4 ]
Bomans, Paul H. H. [1 ,2 ]
Friedrich, Heiner [1 ,2 ]
Brylka, Laura J. [1 ,2 ]
Hilbers, Peter A. J. [3 ]
de With, Gijsbertus [1 ,2 ]
Sommerdijk, Nico A. J. M. [1 ,2 ]
机构
[1] Eindhoven Univ Technol, Lab Mat & Interface Chem, NL-5600 MB Eindhoven, Netherlands
[2] Eindhoven Univ Technol, Soft Matter CryoTEM Unit, NL-5600 MB Eindhoven, Netherlands
[3] Eindhoven Univ Technol, Dept Biomed Engn, NL-5600 MB Eindhoven, Netherlands
[4] Univ Illinois, Dept Oral Biol, Chicago, IL 60612 USA
关键词
I COLLAGEN; ORGANIC MATRIX; CRYSTAL-GROWTH; FIBRILS; MINERALIZATION; PACKING; TENDON; DEPOSITION; PHOSPHATE; PROTEINS;
D O I
10.1038/NMAT2875
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Bone is a composite material in which collagen fibrils form a scaffold for a highly organized arrangement of uniaxially oriented apatite crystals(1,2). In the periodic 67nm cross-striated pattern of the collagen fibril(3-5), the less dense 40 nm-long gap zone has been implicated as the place where apatite crystals nucleate from an amorphous phase, and subsequently grow(6-9). This process is believed to be directed by highly acidic non-collagenous proteins(6,7,9-11); however, the role of the collagen matrix(12-14) during bone apatite mineralization remains unknown. Here, combining nanometre-scale resolution cryogenic transmission electron microscopy and cryogenic electron tomography(15) with molecular modelling, we show that collagen functions in synergy with inhibitors of hydroxyapatite nucleation to actively control mineralization. The positive net charge close to the C-terminal end of the collagen molecules promotes the infiltration of the fibrils with amorphous calcium phosphate (ACP). Furthermore, the clusters of charged amino acids, both in gap and overlap regions, form nucleation sites controlling the conversion of ACP into a parallel array of oriented apatite crystals. We developed a model describing the mechanisms through which the structure, supramolecular assembly and charge distribution of collagen can control mineralization in the presence of inhibitors of hydroxyapatite nucleation.
引用
收藏
页码:1004 / 1009
页数:6
相关论文
共 31 条
[1]   A transmission electron microscope study using vitrified ice sections of predentin: Structural changes in the dentin collagenous matrix prior to mineralization [J].
Beniash, E ;
Traub, W ;
Veis, A ;
Weiner, S .
JOURNAL OF STRUCTURAL BIOLOGY, 2000, 132 (03) :212-225
[2]   STRUCTURAL STUDY OF THE CALCIFYING COLLAGEN IN TURKEY LEG TENDONS [J].
BERTHETCOLOMINAS, C ;
MILLER, A ;
WHITE, SW .
JOURNAL OF MOLECULAR BIOLOGY, 1979, 134 (03) :431-445
[3]   THE COLLAGEN FIBRIL - A MODEL SYSTEM FOR STUDYING THE STAINING AND FIXATION OF A PROTEIN [J].
CHAPMAN, JA ;
TZAPHLIDOU, M ;
MEEK, KM ;
KADLER, KE .
ELECTRON MICROSCOPY REVIEWS, 1990, 3 (01) :143-182
[4]   Bioinspired synthesis of mineralized collagen fibrils [J].
Deshpande, Atul S. ;
Beniash, Elia .
CRYSTAL GROWTH & DESIGN, 2008, 8 (08) :3084-3090
[5]   COLLAGEN PACKING AND MINERALIZATION - AN X-RAY-SCATTERING INVESTIGATION OF TURKEY LEG TENDON [J].
FRATZL, P ;
FRATZLZELMAN, N ;
KLAUSHOFER, K .
BIOPHYSICAL JOURNAL, 1993, 64 (01) :260-266
[6]   Phosphorylated Proteins and Control over Apatite Nucleation, Crystal Growth, and Inhibition [J].
George, Anne ;
Veis, Arthur .
CHEMICAL REVIEWS, 2008, 108 (11) :4670-4693
[8]   Spatially and temporally controlled biomineralization is facilitated by interaction between self-assembled dentin matrix protein 1 and calcium phosphate nuclei in solution [J].
He, G ;
Gajjeraman, S ;
Schultz, D ;
Cookson, D ;
Qin, CL ;
Butler, WT ;
Hao, JJ ;
George, A .
BIOCHEMISTRY, 2005, 44 (49) :16140-16148
[9]   Dentin matrix protein 1 immobilized on type I collagen fibrils facilitates apatite deposition in vitro [J].
He, G ;
George, A .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (12) :11649-11656
[10]  
Hodge A.J., 1963, Aspects of protein structure, P289