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利用免疫电镜技术研究海洋趋磁细菌 Magnetococcus marinus 菌株 MC-1 中磁小体蛋白 MamC 的亚细胞定位。

Subcellular localization of the magnetosome protein MamC in the marine magnetotactic bacterium Magnetococcus marinus strain MC-1 using immunoelectron microscopy.

机构信息

Departamento de Microbiología, Facultad de Ciencias, Universidad de Granada, Campus de Fuentenueva s/n, 18071, Granada, Spain.

出版信息

Arch Microbiol. 2014 Jul;196(7):481-8. doi: 10.1007/s00203-014-0984-0. Epub 2014 Apr 24.

Abstract

Magnetotactic bacteria are a diverse group of prokaryotes that biomineralize intracellular magnetosomes, composed of magnetic (Fe3O4) crystals each enveloped by a lipid bilayer membrane that contains proteins not found in other parts of the cell. Although partial roles of some of these magnetosome proteins have been determined, the roles of most have not been completely elucidated, particularly in how they regulate the biomineralization process. While studies on the localization of these proteins have been focused solely on Magnetospirillum species, the goal of the present study was to determine, for the first time, the localization of the most abundant putative magnetosome membrane protein, MamC, in Magnetococcus marinus strain MC-1. MamC was expressed in Escherichia coli and purified. Monoclonal antibodies were produced against MamC and immunogold labeling TEM was used to localize MamC in thin sections of cells of M. marinus. Results show that MamC is located only in the magnetosome membrane of Mc. marinus. Based on our findings and the abundance of this protein, it seems likely that it is important in magnetosome biomineralization and might be used in controlling the characteristics of synthetic nanomagnetite.

摘要

趋磁细菌是一组多样化的原核生物,它们生物矿化细胞内的磁小体,磁小体由磁性(Fe3O4)晶体组成,每个晶体都被一个脂质双层膜包裹,膜内含有细胞其他部位所没有的蛋白质。尽管已经确定了其中一些磁小体蛋白的部分作用,但大多数的作用尚未完全阐明,特别是它们如何调节生物矿化过程。虽然这些蛋白质的定位研究仅集中在磁螺旋菌属物种上,但本研究的目的是首次确定在海洋玛拉诺菌 MC-1 中丰度最高的假定磁小体膜蛋白 MamC 的定位。MamC 在大肠杆菌中表达并纯化。针对 MamC 产生了单克隆抗体,并使用免疫金标记 TEM 定位 M. marinus 细胞的薄片中的 MamC。结果表明,MamC 仅位于 Mc 的磁小体膜中。根据我们的发现和这种蛋白质的丰度,它似乎在磁小体生物矿化中很重要,并且可能用于控制合成纳米磁铁矿的特性。

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