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A chemical model for the cooperation of sulfates and carboxylates in calcite crystal nucleation: Relevance to biomineralization

机译:方解石晶体成核中硫酸盐和羧酸盐协同作用的化学模型:与生物矿化的相关性

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摘要

Acidic matrix macromolecules involved in regulation of biological crystal growth often contain aspartic acid-rich domains and covalently bound sulfated polysaccharides. We propose that sulfates and β-sheet structured carboxylates cooperate in oriented calcite crystal nucleation. The sulfates concentrate calcium, creating the supersaturation necessary for nucleation on the structured carboxylate domains. An artificial model, composed of sulfonated polystyrene surfaces and adsorbed β-sheet poly(aspartate), demonstrates that the two components indeed act cooperatively with respect to two independent assays, both by induction of calcite nucleation off the (001) plane and by calcium association. Evidence is presented that a purified organic matrix acidic glycoprotein from mollusk shells may behave in vitro in a similar way.
机译:参与调节生物晶体生长的酸性基质大分子通常含有富含天冬氨酸的结构域和共价结合的硫酸化多糖。我们建议硫酸盐和β-片状结构的羧酸盐在定向方解石晶体成核中协同作用。硫酸盐会浓缩钙,从而在结构化的羧酸盐结构域上产生成核所需的过饱和。由磺化聚苯乙烯表面和吸附的β-片状聚天冬氨酸组成的人工模型表明,相对于两个独立的测定,这两个成分确实协同作用,既通过在(001)平面诱导方解石成核,又通过钙缔合。证据表明,从软体动物壳中纯化的有机基质酸性糖蛋白可能在体外具有相似的行为。

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