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首页> 外文期刊>Biomaterials >Controlled formation of magnetite crystal by partial oxidation of ferrous hydroxide in the presence of recombinant magnetotactic bacterial protein Mms6.
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Controlled formation of magnetite crystal by partial oxidation of ferrous hydroxide in the presence of recombinant magnetotactic bacterial protein Mms6.

机译:在重组趋磁细菌蛋白Mms6存在下,通过氢氧化亚铁的部分氧化来控制磁铁矿晶体的形成。

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摘要

Mms6 is a small acidic protein that is tightly associated with bacterial magnetite in Magnetospirillum magneticum AMB-1. This protein has previously shown iron binding activity, allowing it to generate uniform magnetic crystals by co-precipitation of ferrous and ferric ions. Here, magnetite crystals were formed by the partial oxidation of ferrous hydroxide in the presence and absence of Mms6. The crystals synthesised were systematically characterised according to their sizes and morphologies using high-resolution transmission electron microscopy. Mms6-mediated synthesis of magnetite by this methods produced crystals of a uniform size and narrow size distribution with a cubo-octahedral morphology, similar to bacterial magnetite observed in M. magneticum AMB-1. The crystals formed in the absence of Mms6 were octahedral, larger with an increased size distribution. Protein quantification analysis of Mms6 in the synthesised particles indicated tight association of this protein onto the crystal. Furthermore,high affinities to iron ions and a highly charged electrostatic quality suggest that the protein acts as a template for the nucleus formation and/or acts as a growth regulator by recognising crystal faces. The method introduced in this study presents an alternative route for controlling the size and shape of magnetite crystals without the use of organic solvent and high temperatures.
机译:Mms6是一种小的酸性蛋白质,与Magnetospirillum magneticum AMB-1中的细菌磁铁矿紧密相关。该蛋白质以前显示出铁结合活性,从而使其能够通过亚铁离子和铁离子的共沉淀而生成均匀的磁性晶体。在此,在存在和不存在Mms6的情况下,通过氢氧化亚铁的部分氧化形成磁铁矿晶体。使用高分辨率透射电子显微镜,系统根据合成的晶体的大小和形貌对其进行系统表征。 Mms6介导的磁铁矿的合成通过这种方法产生的晶体具有均匀的尺寸和狭窄的尺寸分布,具有立方八面体形态,类似于在M.magneticum AMB-1中观察到的细菌磁铁矿。在没有Mms6的情况下形成的晶体为八面体,较大,尺寸分布增加。合成颗粒中Mms6的蛋白质定量分析表明该蛋白质紧密结合在晶体上。此外,对铁离子的高亲和力和高电荷的静电质量表明,该蛋白质通过识别晶面而充当细胞核形成的模板和/或充当生长调节剂。本研究中介绍的方法提供了一种在不使用有机溶剂和高温的情况下控制磁铁矿晶体尺寸和形状的替代方法。

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