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Guinea fowl eggshell quantitative proteomics yield new findings related to its unique structural characteristics and superior mechanical properties

机译:豚鼠蛋壳定量蛋白质组学产生与其独特的结构特征相关的新发现和卓越的机械性能

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摘要

The Guinea fowl eggshell is a bioceramic material with the remarkable mechanical property of being twice as strong as the chicken eggshell. Both eggshells are composed of 95% calcite and 3.5% organic matrix, which control its structural organization. Chicken eggshell is made of columnar calcite crystals arranged vertically. In the Guinea fowl, the same structure is observed in its inner half, followed by a dramatic change in crystal size and orientation in the outer region. Guinea fowl eggshell is thicker than chicken eggshell. Both structure and shell thickness confer a superior resistance to breakage compared to eggshells of other bird species. To understand the underlying mechanisms controlling the structural organization of this highly resistant material, we used quantitative proteomics to analyze the protein composition of the Guinea fowl eggshell organic matrix at key stages of the biomineralization process. We identified 149 proteins, which were compared to other bird eggshell proteomes and analyzed their potential functions. Among the 149 proteins, 9 are unique to Guinea fowl, some are involved in the control of the calcite precipitation (Lysozyme, Ovocleidin-17-like, Ovocleidin-116 and Ovalbumin), 61 are only found in the zone of microstructure shift and 17 are more abundant in this zone.
机译:豚鼠蛋壳是一种生物陶瓷材料,具有卓越的机械性能,其是鸡蛋壳的两倍。两种蛋壳都由95%的方解石和3.5%有机基质组成,控制其结构组织。鸡蛋壳由垂直排列的柱状方解石晶体制成。在几内卵巢中,在其内部观察到相同的结构,然后在外部区域中的晶体尺寸和取向的显着变化。几内亚鸡蛋蛋壳比鸡蛋壳更厚。与其他鸟类的蛋壳相比,结构和壳厚度均赋予较高的破损抵抗力。为了了解控制这种高度抗性材料的结构组织的潜在机制,我们使用定量蛋白质组学来分析生物矿化过程的关键阶段的豚鼠蛋壳有机基质的蛋白质组成。我们鉴定了149个蛋白质,与其他鸟蛋壳蛋白质蛋白相比并分析了它们的潜在功能。在149个蛋白质中,9种蛋白质是独特的豚鼠,有些人参与控制方解石沉淀(溶菌酶,卵巢素-17样,Ovocleidin-116和卵烧),61只能在微观结构移位和17区内发现在这个区域更丰富。

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