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首页> 外文期刊>Crystal growth & design >Calcium Carbonate Crystal Shapes Mediated by Intramineral Proteins from Eggshells of Ratite Birds and Crocodiles. Implications to the Eggshell's Formation of a Dinosaur of 70 Million Years Old
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Calcium Carbonate Crystal Shapes Mediated by Intramineral Proteins from Eggshells of Ratite Birds and Crocodiles. Implications to the Eggshell's Formation of a Dinosaur of 70 Million Years Old

机译:碳酸钙晶体形状由肠道蛋白蛋白蛋白质和鳄鱼介导。 对EggShell的形成对7000万岁的恐龙形成

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摘要

In this contribution we want to show how the intramineral proteins affect the crystal morphology of calcite crystals grown in vitro. Intramineral proteins from emu eggshells and two crocodile species were isolated, purified by ultrafast liquid chromatography, and characterized by biochemical and biophysical methods. We saw that the crystal habit of calcite was modified when intramineral proteins were present at certain concentration. Therefore, all crystal species were individually characterized by scanning electron microscopy (SEM) and by electron diffraction with an electron-reduced dosage in transmission electron microscopy. Additionally, transversal SEM micrographs of eggshells of four types of species, namely, emu, crocodile, hen, and dinosaur (70 million years old), were compared to track the changes produced by the interacting intramineral proteins. Finally, the organic sulfur content analysis of these eggshells was performed by using X-ray absorption techniques like X-ray fluorescence and X-ray absorption near-edge structure. From the analyses of the dinosaur eggshells, these X-ray absorption data showed a very characteristic organic sulfur bonding similar to that semiessential proteogenic amino acid L-cysteine, which implies that there is a possibility of having a very old intramineral protein similar to those found in emu and crocodiles.
机译:在这一贡献中,我们希望展示肠内蛋白如何影响体外生长的方解石晶体的晶体形态。分离来自鸸eg蛋壳和两种鳄鱼种类的肠内蛋白,通过超快液相色谱纯化,并通过生物化学和生物物理方法进行。我们看到,当在某些浓度存在肠内蛋白时,可以改变方解石的晶体习性。因此,通过扫描电子显微镜(SEM)和通过电子减少剂量在透射电子显微镜下进行电子衍射来单独表征所有晶体物种。此外,比较四种种类,即鸸,鳄鱼,母鸡和恐龙(7000万岁)的蛋壳的横向SEM显微照片,以跟踪相互作用肠内蛋白产生的变化。最后,通过使用X射线吸收技术(如X射线荧光和X射线吸收近边缘结构)进行这些蛋壳的有机硫含量分析。从恐龙蛋壳的分析中,这些X射线吸收数据显示出非常特征的有机硫粘合,类似于该半生蛋白氨基酸L-半胱氨酸,这意味着有可能具有与发现的血液内蛋白质相似的血小内蛋白质在鸸and鳄鱼。

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