酪蛋白磷酸肽-无定形磷酸钙纳米复合物的物理化学表征
Physicochemical characterization of casein phosphopeptide-amorphous calcium phosphate nanocomplexes.
作者信息
Cross Keith J, Huq N Laila, Palamara Joseph E, Perich John W, Reynolds Eric C
机构信息
Centre for Oral Health Science, School of Dental Science, The University of Melbourne, Melbourne, Victoria 3010, Australia.
出版信息
J Biol Chem. 2005 Apr 15;280(15):15362-9. doi: 10.1074/jbc.M413504200. Epub 2005 Jan 17.
Milk caseins stabilize calcium and phosphate ions and make them available to the neonate. Tryptic digestion of the caseins yields phosphopeptides from their polar N-terminal regions that contain clusters of phosphorylated seryl residues. These phosphoseryl clusters have been hypothesized to be responsible for the interaction between the caseins and calcium phosphate that lead to the formation of casein micelles. The casein phosphopeptides stabilize calcium and phosphate ions through the formation of complexes. The calcium phosphate in these complexes is biologically available for intestinal absorption and remineralization of subsurface lesions in tooth enamel. We have studied the structure of the complexes formed by the casein phosphopeptides with calcium phosphate using a range of physicochemical techniques including x-ray powder diffraction, scanning electron microscopy, transmission electron microscopy, and equilibrium binding analyses. The amorphous nature of the calcium phosphate phase was confirmed by two independent methods: x-ray powder diffraction and selected area diffraction. In solution, the ion activity product of a basic amorphous calcium phosphate phase was the only ion product that was a function of bound phosphate independent of pH, consistent with basic amorphous calcium phosphate being the phase stabilized by the casein phosphopeptides. Detailed investigations of calcium and calcium phosphate binding using a library of synthetic homologues and analogues of the casein phosphopeptides have revealed that although the fully phosphorylated seryl-cluster motif is pivotal for the interaction with calcium and phosphate, other factors are also important. In particular, calcium binding and calcium phosphate stabilization by the peptides was influenced by peptide net charge, length, and sequence.
乳中的酪蛋白可稳定钙和磷酸根离子,并使其可供新生儿利用。对酪蛋白进行胰蛋白酶消化会从其极性N端区域产生磷酸肽,这些区域含有磷酸化丝氨酰残基簇。据推测,这些磷酸丝氨酰簇是酪蛋白与磷酸钙相互作用导致酪蛋白胶束形成的原因。酪蛋白磷酸肽通过形成复合物来稳定钙和磷酸根离子。这些复合物中的磷酸钙在生物学上可用于肠道吸收以及牙釉质表面下病变的再矿化。我们使用了一系列物理化学技术,包括X射线粉末衍射、扫描电子显微镜、透射电子显微镜和平衡结合分析,研究了酪蛋白磷酸肽与磷酸钙形成的复合物的结构。磷酸钙相的无定形性质通过两种独立方法得到证实:X射线粉末衍射和选区衍射。在溶液中,碱性无定形磷酸钙相的离子活度积是唯一与结合磷酸盐有关而与pH无关的离子产物,这与碱性无定形磷酸钙是由酪蛋白磷酸肽稳定的相一致。使用酪蛋白磷酸肽的合成同系物和类似物文库对钙和磷酸钙结合进行的详细研究表明,尽管完全磷酸化的丝氨酰簇基序对于与钙和磷酸的相互作用至关重要,但其他因素也很重要。特别是,肽对钙的结合和对磷酸钙的稳定作用受肽的净电荷、长度和序列影响。