首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >An optimized low-cost protocol for standardized production of iron-free apoferritin nanocages with high protein recovery and suitable conformation for nanotechnological applications
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An optimized low-cost protocol for standardized production of iron-free apoferritin nanocages with high protein recovery and suitable conformation for nanotechnological applications

机译:一种优化的低成本方案,用于具有高蛋白质回收的无铁Apoferrin纳米病的标准化生产和纳米技术应用的合适构象

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摘要

Ferritin is a globular protein that consists of 24 subunits forming a hollow nanocage structure that naturally stores iron oxyhydroxides. Elimination of iron atoms to obtain the empty protein called apoferntin is the first step to use this organic shell as a nanoreactor for different nanotechnological applications. Different protocols have been reported for apoferntin formation, but some are time consuming, others are difficult to reproduce and protein recovery yields are seldom reported Here we tested several protocols and performed a complete material characterization of the apoferntin products using size exclusion chromatography, UV-vis spectroscopy, inductively coupled plasma optical emission spectrometry and dynamic light scattering. Our best method removes more than 99% of the iron from loaded holoferritin, recovering 70-80% of the original protein as monomeric apoferntin nanocages. Our work shows that pH conditions of the reduction step and the presence and nature of chelating agents affect the efficiency of iron removal. Furthermore, process conditions also seem to have an influence on the monomer:aggregate proportion present in the product. We also demonstrate that iron contents markedly increase ferritin absorbance at 280 nm. The influence of iron contents on absorbance at 280 nm precludes using this simple spectrophotometnc measure for protein determination in ferritin-iron complexes. Apoferntin produced following our protocol only requires readily-available, cheap and biocompatible reagents, which makes this process standardizable, scalable and applicable to be used for m vivo applications of ferritin derivatives as well as nanotechnological and biotechnological uses.
机译:铁蛋白是一个球状蛋白质,由24个亚基组成,形成一种空心纳米结构,其天然储存铁羟基氧化铁的铁。消除铁原子以获得称为Apoferntin的空蛋白质是使用该有机壳作为不同纳米技术应用的纳米反应器的第一步。据报道了不同的​​方案用于亚食用肽形成,但有些是耗时的,其他方面难以繁殖,并且在这里难以繁殖并且蛋白质回收率在这里,我们通过尺寸排除色谱法测定了几种方案并进行了完整的材料表征Apoferntin产品的完整材料表征uV-Vis光谱学,电感耦合等离子体光发射光谱法和动态光散射。我们最好的方法从装载的Holoferrin中取出超过99%的铁,从70-80%的原始蛋白质作为单体杏仁蛋白纳米物品中恢复。我们的作品表明,降低步骤的pH条件和螯合剂的存在和性质影响了铁去除的效率。此外,工艺条件似乎对单体产生影响:产品中存在的聚集部比例。我们还证明铁含量明显增加了280nm的铁素吸光度。铁含量对280nm处的吸光度的影响使用该简单的分光光度法测量铁蛋白 - 铁复合物中的蛋白质测定来渗出。在我们的协议之后生产的Apoferntin只需要易于使用的,便宜和生物相容性的试剂,这使得该过程可规范,可扩展,并且适用于用于Merritin衍生物以及纳米技术和生物技术用途的M体内应用。

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