Ludwig Maximillian University Munich, Dept. Biology I, Großhaderner Str. 2, D-82152 Martinsried, Germany.
Mol Microbiol. 2011 Nov;82(4):818-35. doi: 10.1111/j.1365-2958.2011.07863.x. Epub 2011 Oct 18.
Magnetotactic bacteria form chains of intracellular membrane-enclosed, nanometre-sized magnetite crystals for navigation along the earth's magnetic field. The assembly of these prokaryotic organelles requires several specific polypeptides. Among the most abundant proteins associated with the magnetosome membrane of Magnetospirillum gryphiswaldense are MamB and MamM, which were implicated in magnetosomal iron transport because of their similarity to the cation diffusion facilitator family. Here we demonstrate that MamB and MamM are multifunctional proteins involved in several steps of magnetosome formation. Whereas both proteins were essential for magnetite biomineralization, only deletion of mamB resulted in loss of magnetosome membrane vesicles. MamB stability depended on the presence of MamM by formation of a heterodimer complex. In addition, MamB was found to interact with several other proteins including the PDZ1 domain of MamE. Whereas any genetic modification of MamB resulted in loss of function, site-specific mutagenesis within MamM lead to increased formation of polycrystalline magnetite particles. A single amino acid substitution within MamM resulted in crystals consisting of haematite, which coexisted with magnetite crystals. Together our data indicate that MamM and MamB have complex functions, and are involved in the control of different key steps of magnetosome formation, which are linked by their direct interaction.
趋磁细菌形成链状的细胞内膜包裹的纳米大小的磁铁矿晶体,用于沿着地球磁场导航。这些原核细胞器的组装需要几种特定的多肽。在与嗜甲基螺旋菌的磁体膜相关的最丰富的蛋白质中,有 MamB 和 MamM,它们因其与阳离子扩散促进剂家族的相似性而被牵连到磁体铁运输中。在这里,我们证明 MamB 和 MamM 是参与几个磁体形成步骤的多功能蛋白。虽然这两种蛋白质对磁铁矿生物矿化都是必不可少的,但只有 mamB 的缺失才导致磁体膜泡的丧失。MamB 的稳定性取决于 MamM 的存在,形成异二聚体复合物。此外,发现 MamB 与包括 MamE 的 PDZ1 结构域在内的几种其他蛋白质相互作用。虽然 MamB 的任何遗传修饰都会导致功能丧失,但 MamM 中的定点突变会导致多晶磁铁矿颗粒的形成增加。MamM 中的单个氨基酸取代导致赤铁矿晶体的形成,赤铁矿晶体与磁铁矿晶体共存。我们的数据表明,MamM 和 MamB 具有复杂的功能,并且参与了磁体形成的不同关键步骤的控制,它们通过直接相互作用联系在一起。