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Polymorphs, Proteins, and Nucleation Theory: A Critical Analysis

机译:多晶型物,蛋白质和成核理论:批判性分析

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Over the last eight years new theories regarding nucleation, crystal growth, and polymorphism have emerged. Many of these theories were developed in response to observations in nature, where classical nucleation theory failed to account for amorphous mineral precursors, phases, and particle assembly processes that are responsible for the formation of invertebrate mineralized skeletal elements, such as the mollusk shell nacre layer (aragonite polymorph) and the sea urchin spicule (calcite polymorph). Here, we summarize these existing nucleation theories and place them within the context of what we know about biomineralization proteins, which are likely participants in the management of mineral precursor formation, stabilization, and assembly into polymorphs. With few exceptions, much of the protein literature confirms that polymorph-specific proteins, such as those from mollusk shell nacre aragonite, can promote polymorph formation. However, past studies fail to provide important mechanistic insights into this process, owing to variations in techniques, methodologies, and the lack of standardization in mineral assay experimentation. We propose that the way forward past this roadblock is for the protein community to adopt standardized nucleation assays and approaches that are compatible with current and emerging nucleation precursor studies. This will allow cross-comparisons, kinetic observations, and hopefully provide the information that will explain how proteins manage polymorph formation and stabilization.
机译:在过去的八年中,出现了有关成核,晶体生长和多态性的新理论。这些理论中的许多理论是根据自然界的观察而发展的,在经典自然核理论中,无核矿物前体,相和颗粒组装过程无法解释无脊椎动物矿化骨骼元素(如软体动物贝壳珍珠层)的形成。 (文石晶型)和海胆针(方解石晶型)。在这里,我们总结了这些现有的成核理论,并将其置于我们对生物矿化蛋白所了解的背景下,这些蛋白可能是矿物前体形成,稳定化和组装成多晶型物管理的参与者。除少数例外,许多蛋白质文献证实,多晶型特异性蛋白(例如来自软体动物壳珍珠质文石的蛋白)可以促进多晶型物的形成。但是,由于技术,方法的变化以及矿物分析实验中缺乏标准化,过去的研究未能提供有关此过程的重要机理见解。我们认为,克服这一障碍的方法是蛋白质界采用与当前和新兴成核前体研究兼容的标准化成核分析方法。这样可以进行交叉比较,动力学观察,并希望能提供信息来解释蛋白质如何处理多晶型物的形成和稳定化。

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