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Rapid magnetosome formation shown by real-time x-ray magnetic circular dichroism

机译:实时X射线磁性圆二色性显示快速的磁小体形成

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摘要

Magnetosomes are magnetite nanoparticles formed by biomineralization within magnetotactic bacteria. Although there have been numerous genetic and proteomic studies of the magnetosome-formation process, there have been only limited and inconclusive studies of mineral-phase evolution during the formation process, and no real-time studies of such processes have yet been performed. Thus, suggested formation mechanisms still need substantiating with data. Here we report the examination of the magnetosome material throughout the formation process in a real-time in vivo study of Magnetospirillum gryphiswaldense, strain MSR-1. Transmission EM and x-ray absorption spectroscopy studies reveal that full-sized magnetosomes are seen 15 min after formation is initiated. These immature magnetosomes contain a surface layer of the nonmagnetic iron oxide-phase hematite. Mature magnetite is found after another 15 min, concurrent with a dramatic increase in magnetization. This rapid formation result is contrary to previously reported studies and discounts the previously proposed slow, multistep formation mechanisms. Thus, we conclude that the biomineralization of magnetite occurs rapidly in magnetotactic bacteria on a similar time scale to high-temperature chemical precipitation reactions, and we suggest that this finding is caused by a biological catalysis of the process.
机译:磁小体是在趋磁细菌内通过生物矿化作用形成的磁铁矿纳米颗粒。尽管对磁小体形成过程进行了许多遗传学和蛋白质组学研究,但在形成过程中对矿物相演化的研究仅是有限的,尚无定论,并且尚未对这种过程进行实时研究。因此,建议的形成机制仍然需要用数据证实。在这里,我们报告了对磁螺线虫gryphiswaldense菌株MSR-1的实时体内研究中整个形成过程中磁小体材料的检查。透射电镜和X射线吸收光谱研究表明,开始形成15分钟后即可看到完整的磁小体。这些未成熟的磁小体包含非磁性氧化铁相赤铁矿的表面层。再过15分钟后发现成熟磁铁矿,同时磁化强度显着增加。这种快速形成的结果与先前报道的研究相反,并且折衷了先前提出的缓慢的多步形成机理。因此,我们得出结论,在趋磁细菌中,磁铁矿的生物矿化迅速发生,时间与高温化学沉淀反应相似,并且我们认为这一发现是由该过程的生物催化引起的。

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