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釉原蛋白纳米球超分子组装成双折射微带。

Supramolecular assembly of amelogenin nanospheres into birefringent microribbons.

作者信息

Du Chang, Falini Giuseppe, Fermani Simona, Abbott Christopher, Moradian-Oldak Janet

机构信息

Center for Craniofacial Molecular Biology, School of Dentistry, University of Southern California, 2250 Alcazar Street, CSA 103, Los Angeles, CA 90033, USA.

出版信息

Science. 2005 Mar 4;307(5714):1450-4. doi: 10.1126/science.1105675.

Abstract

Although both tooth enamel and bone are composed of organized assemblies of carbonated apatite crystals, enamel is unusual in that it does not contain collagen nor does it remodel. Self-assembly of amelogenin protein into nanospheres has been recognized as a key factor in controlling the oriented and elongated growth of carbonated apatite crystals during dental enamel biomineralization. We report the in vitro formation of birefringent microribbon structures that were generated through the supramolecular assembly of amelogenin nanospheres. These microribbons have diffraction patterns that indicate a periodic structure of crystalline units along the long axis. The growth of apatite crystals orientated along the c axis and parallel to the long axes of the microribbons was observed in vitro. The linear arrays (chains) of nanospheres observed as intermediate states before the microribbon formation give an important indication as to the function of amelogenin in controlling the oriented growth of apatite crystals during enamel mineralization.

摘要

尽管牙釉质和骨骼均由碳酸化磷灰石晶体的有序集合体组成,但牙釉质不同寻常之处在于它不含胶原蛋白且不会重塑。釉原蛋白自组装成纳米球已被认为是在牙釉质生物矿化过程中控制碳酸化磷灰石晶体定向和伸长生长的关键因素。我们报告了通过釉原蛋白纳米球的超分子组装在体外形成的双折射微带结构。这些微带具有衍射图案,表明沿长轴存在晶体单元的周期性结构。在体外观察到沿c轴取向且平行于微带长轴的磷灰石晶体生长。在微带形成之前作为中间状态观察到的纳米球线性阵列(链)为釉原蛋白在牙釉质矿化过程中控制磷灰石晶体定向生长的功能提供了重要线索。

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