首页> 美国卫生研究院文献>Journal of Bacteriology >Interplay between Two Bacterial Actin Homologs MamK and MamK-Like Is Required for the Alignment of Magnetosome Organelles in Magnetospirillum magneticum AMB-1
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Interplay between Two Bacterial Actin Homologs MamK and MamK-Like Is Required for the Alignment of Magnetosome Organelles in Magnetospirillum magneticum AMB-1

机译:两个细菌肌动蛋白同系物MamK和MamK-像之间的相互作用是磁性螺旋藻AMB-1中的核小体细胞器对齐所必需的。

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摘要

Many bacterial species contain multiple actin-like proteins tasked with the execution of crucial cell biological functions. MamK, an actin-like protein found in magnetotactic bacteria, is important in organizing magnetosome organelles into chains that are used for navigation along geomagnetic fields. MamK and numerous other magnetosome formation factors are encoded by a genetic island termed the magnetosome island. Unlike most magnetotactic bacteria, Magnetospirillum magneticum AMB-1 (AMB-1) contains a second island of magnetosome-related genes that was named the magnetosome islet. A homologous copy of mamK, mamK-like, resides within this islet and encodes a protein capable of filament formation in vitro. Previous work had shown that mamK-like is expressed in vivo, but its function, if any, had remained unknown. Though MamK-like is highly similar to MamK, it contains a mutation that in MamK and other actins blocks ATPase activity in vitro and filament dynamics in vivo. Here, using genetic analysis, we demonstrate that mamK-like has an in vivo role in assisting organelle alignment. In addition, MamK-like forms filaments in vivo in a manner that is dependent on the presence of MamK and the two proteins interact in a yeast two-hybrid assay. Surprisingly, despite the ATPase active-site mutation, MamK-like is capable of ATP hydrolysis in vitro and promotes MamK filament turnover in vivo. Taken together, these experiments suggest that direct interactions between MamK and MamK-like contribute to magnetosome alignment in AMB-1.
机译:许多细菌物种包含多种肌动蛋白样蛋白,负责执行关键的细胞生物学功能。 MamK是一种在趋磁细菌中发现的肌动蛋白样蛋白,在将磁小体细胞器组织成可沿地磁场导航的链中非常重要。 MamK和许多其他磁小体形成因子由称为磁小体岛的遗传岛编码。与大多数趋磁细菌不同,Magnetospirillum magneticum AMB-1(AMB-1)包含第二个与磁小体相关的基因岛,称为磁小岛。 mamK样的mamK的同源拷贝位于该小岛中,并编码能够在体外形成细丝的蛋白质。先前的研究表明,mamK样在体内表达,但其功能(如果有的话)仍然未知。尽管MamK样与MamK高度相似,但它包含一个突变,该突变在MamK和其他肌动蛋白中阻断了体外的ATPase活性和体内的细丝动力学。在这里,使用基因分析,我们证明mamK样在协助细胞器对齐中具有体内作用。另外,MamK样在体内以依赖于MamK的存在的方式形成细丝,并且两种蛋白质在酵母双杂交测定中相互作用。出人意料的是,尽管有ATP酶活性位点突变,MamK样仍能在体外进行ATP水解,并在体内促进MamK细丝的更新。综上所述,这些实验表明,MamK和类MamK之间的直接相互作用有助于AMB-1中的磁小体排列。

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