ATOMIC-FORCE MICROSCOPY AND MOLECULAR MODELING OF PROTEIN AND PEPTIDE BINDING TO CALCITE

被引:113
作者
WIERZBICKI, A
SIKES, CS
MADURA, JD
DRAKE, B
机构
[1] UNIV SO ALABAMA,DEPT BIOL SCI,MOBILE,AL 36688
[2] UNIV SO ALABAMA,CTR MINERALIZAT,MOBILE,AL 36688
[3] IMAGING SERV,SANTA BARBARA,CA
关键词
CALCITE; PROTEIN BINDING; ATOMIC FORCE MICROSCOPY; MOLECULAR MODELING;
D O I
10.1007/BF00296064
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Oyster shell protein and polyaspartate bound to calcite have been visualized at the atomic and molecular levels by atomic force microscopy. The identities of potential binding sites have been suggested from atomic force microscopy (AFM) images and have been evaluated by molecular modelling. Energies and conformations of binding to (110) and (1 (1) over bar 10) prism faces, (001) basal calcium planes, and (104) cleavage planes are considered. The interaction with the basal plane is strongest and is essentially irreversible. Binding to (1 (1) over bar 0) prism surfaces is also energetically favored and selective for orientations parallel or perpendicular to the c-axis. Binding to (110) faces is significantly weaker and orientation nonspecific. If carboxyl groups of the protein or peptide replace select carbonate ions of the (1 (1) over bar 10) face, the binding energy increases significantly, favoring binding in the parallel direction. Binding to (104) cleavage surfaces is weak and probably reversible. Specific alignment of oyster shell protein molecules on calcite surfaces is shown by AFM, and the relevance to the binding model is discussed.
引用
收藏
页码:133 / 141
页数:9
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