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首页> 外文期刊>Protein Science: A Publication of the Protein Society >From invagination to navigation: The story of magnetosome-associated proteins in magnetotactic bacteria
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From invagination to navigation: The story of magnetosome-associated proteins in magnetotactic bacteria

机译:从入侵到导航:趋磁细菌中磁小体相关蛋白的故事

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摘要

Magnetotactic bacteria (MTB) are a group of Gram-negative microorganisms that are able to sense and change their orientation in accordance with the geomagnetic field. This unique capability is due to the presence of a special suborganelle called the magnetosome, composed of either a magnetite or gregite crystal surrounded by a lipid membrane. MTB were first detected in 1975 and since then numerous efforts have been made to clarify the special mechanism of magnetosome formation at the molecular level. Magnetosome formation can be divided into several steps, beginning with vesicle invagination from the cell membrane, through protein sorting, followed by the combined steps of iron transportation, biomineralization, and the alignment of magnetosomes into a chain. The magnetosome-chain enables the sensing of the magnetic field, and thus, allows the MTB to navigate. It is known that magnetosome formation is tightly controlled by a distinctive set of magnetosome-associated proteins that are encoded mainly in a genomically conserved region within MTB called the magnetosome island (MAI). Most of these proteins were shown to have an impact on the magnetism of MTB. Here, we describe the process in which the magnetosome is formed with an emphasis on the different proteins that participate in each stage of the magnetosome formation scheme.
机译:趋磁细菌(MTB)是一组革兰氏阴性微生物,能够根据地磁场感应和改变其方向。这种独特的能力是由于存在一种称为磁小体的特殊亚细胞器,该亚细胞器由被脂质膜包围的磁铁矿或锂锌矿晶体组成。 1975年首次检测到MTB,从那时起,人们为阐明磁小体形成的特殊机制做出了许多努力。磁小体的形成可以分为几个步骤,从细胞膜的囊泡内陷开始,通过蛋白质分选,然后是铁转运,生物矿化和磁小体排列成链的组合步骤。磁小体链能够感应磁场,从而使MTB能够导航。众所周知,磁小体的形成受到一组独特的磁小体相关蛋白的严格控制,这些蛋白主要在MTB的基因组保守区域(称为磁小体岛(MAI))中编码。这些蛋白质中的大多数已显示出对MTB磁性的影响。在这里,我们描述了磁小体的形成过程,重点是参与磁小体形成方案每个阶段的不同蛋白质。

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