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首页> 外文期刊>Molecular Microbiology >The magnetosome membrane protein, MmsF, is a major regulator of magnetite biomineralization in Magnetospirillum magneticum AMB-1
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The magnetosome membrane protein, MmsF, is a major regulator of magnetite biomineralization in Magnetospirillum magneticum AMB-1

机译:磁小体膜蛋白MmsF是Magnetospirillum magneticum AMB-1中磁铁矿生物矿化的主要调节剂

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Magnetotactic bacteria (MTB) use magnetosomes, membrane-bound crystals of magnetite or greigite, for navigation along geomagnetic fields. In Magnetospirillum magneticum sp. AMB-1, and other MTB, a magnetosome gene island (MAI) is essential for every step of magnetosome formation. An 8-gene region of the MAI encodes several factors implicated in control of crystal size and morphology in previous genetic and proteomic studies. We show that these factors play a minor role in magnetite biomineralization in vivo. In contrast, MmsF, a previously uncharacterized magnetosome membrane protein encoded within the same region plays a dominant role in defining crystal size and morphology and is sufficient for restoring magnetite synthesis in the absence of the other major biomineralization candidates. In addition, we show that the 18 genes of the mamAB gene cluster of the MAI are sufficient for the formation of an immature magnetosome organelle. Addition of MmsF to these 18 genes leads to a significant enhancement of magnetite biomineralization and an increase in the cellular magnetic response. These results define a new biomineralization protein and lay down the foundation for the design of autonomous gene cassettes for the transfer of the magnetic phenotype in other bacteria.
机译:趋磁细菌(MTB)使用磁小体,磁铁矿或钙铁矿的膜结合晶体沿地磁场导航。在Magnetospirillum magneticum sp。中。 AMB-1和其他MTB,磁小体基因岛(MAI)对于磁小体形成的每个步骤都是必不可少的。 MAI的8个基因区域编码了在先前的遗传和蛋白质组学研究中涉及晶体大小和形态控制的几个因素。我们表明这些因素在体内磁铁矿生物矿化中起较小作用。相反,MmsF是在同一区域内编码的先前未表征的磁小体膜蛋白,在定义晶体大小和形态方面起着主要作用,并且在没有其他主要生物矿化候选物的情况下足以恢复磁铁矿的合成。此外,我们显示MAI的mamAB基因簇的18个基因足以形成未成熟的磁小体细胞器。 MmsF添加到这18个基因导致磁铁矿生物矿化作用显着增强,并增加了细胞磁响应。这些结果定义了一种新的生物矿化蛋白,并为自主基因盒的设计奠定了基础,该基因盒用于在其他细菌中转移磁性表型。

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