首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >Lattice Shrinkage by Incorporation of Recombinant Starmaker‐Like Protein within Bioinspired Calcium Carbonate Crystals
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Lattice Shrinkage by Incorporation of Recombinant Starmaker‐Like Protein within Bioinspired Calcium Carbonate Crystals

机译:通过在生物灵感的碳酸钙晶体中掺入重组Starmaker-like蛋白来实现晶格收缩

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摘要

The biological mediation of mineral formation (biomineralization) is realized through diverse organic macromolecules that guide this process in a spatial and temporal manner. Although the role of these molecules in biomineralization is being gradually revealed, the molecular basis of their regulatory function is still poorly understood. In this study, the incorporation and distribution of the model intrinsically disordered starmaker‐like (Stm‐l) protein, which is active in fish otoliths biomineralization, within calcium carbonate crystals, is revealed. Stm‐l promotes crystal nucleation and anisotropic tailoring of crystal morphology. Intracrystalline incorporation of Stm‐l protein unexpectedly results in shrinkage (and not expansion, as commonly described in biomineral and bioinspired crystals) of the crystal lattice volume, which is described herein, for the first time, for bioinspired mineralization. A ring pattern was observed in crystals grown for 48 h; this was composed of a protein‐enriched region flanked by protein‐depleted regions. It can be explained as a result of the Ostwald‐like ripening process and intrinsic properties of Stm‐l, and bears some analogy to the daily growth layers of the otolith.
机译:矿物形成的生物媒介(生物矿化)是通过多种有机大分子实现的,这些大分子以时空方式指导了这一过程。尽管这些分子在生物矿化中的作用正在逐步揭示,但对其调节功能的分子基础仍知之甚少。在这项研究中,揭示了在碳酸钙晶体中掺入并分布有内在无序的造星样蛋白(Stm-1)的模型,该蛋白在鱼耳石生物矿化中具有活性。 Stm-1促进晶体成核和晶体形态的各向异性剪裁。晶内掺入Stm-1蛋白出乎意料地导致晶格体积收缩(而不是膨胀,这在生物矿物质和生物启发性晶体中通常描述),这是本文首次描述的生物启发矿化作用。在生长48 h的晶体中观察到环形图案;这是由一个富含蛋白质的区域,两侧是一个蛋白质耗尽的区域。这可以解释为奥斯特瓦尔德式的成熟过程和Stm-1的固有特性的结果,并且与耳石的日常生长层有些相似。

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