Biogenesis of actin-like bacterial cytoskeletal filaments destined for positioning prokaryotic magnetic organelles
- 14 November 2006
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (46) , 17485-17489
- https://doi.org/10.1073/pnas.0603760103
Abstract
Magnetosomes comprise a magnetic nanocrystal surrounded by a lipid bilayer membrane. These unique prokaryotic organelles align inside magnetotactic bacterial cells and serve as an intracellular compass allowing the bacteria to navigate along the geomagnetic field in aquatic environments. Cryoelectron tomography of Magnetospirillum strains has revealed that the magnetosome chain is surrounded by a network of filaments that may be composed of MamK given that the filaments are absent in the mamK mutant cells. The process of the MamK filament assembly is unknown. Here we prove the authenticity of the MamK filaments and show that MamK exhibits linear distribution inside Magnetospirillum sp. cells even in the area without magnetosomes. The mamK gene alone is sufficient to direct the synthesis of straight filaments in Escherichia coli , and one extremity of the MamK filaments is located at the cellular pole. By using dual fluorescent labeling of MamK, we found that MamK nucleates at multiple sites and assembles into mosaic filaments. Time-lapse experiments reveal that the assembly of the MamK filaments is a highly dynamic and kinetically asymmetrical process. MamK bundles might initiate the formation of a new filament or associate to one preexistent filament. Our results demonstrate the mechanism of biogenesis of prokaryotic cytoskeletal filaments that are structurally and functionally distinct from the known MreB and ParM filaments. In addition to positioning magnetosomes, other hypothetical functions of the MamK filaments in magnetotaxis might include anchoring magnetosomes and being involved in magnetic reception.Keywords
This publication has 35 references indexed in Scilit:
- An acidic protein aligns magnetosomes along a filamentous structure in magnetotactic bacteriaNature, 2005
- A Hypervariable 130-Kilobase Genomic Region of Magnetospirillum gryphiswaldense Comprises a Magnetosome Island Which Undergoes Frequent Rearrangements during Stationary GrowthJournal of Bacteriology, 2005
- Presence of Multiple Sites Containing Polar Material in SphericalEscherichia coliCells That Lack MreBJournal of Bacteriology, 2005
- Increasing complexity of the bacterial cytoskeletonCurrent Opinion in Cell Biology, 2005
- Recent advances on the development of bacterial polesTrends in Microbiology, 2004
- Magnetosome formation in prokaryotesNature Reviews Microbiology, 2004
- Bacterial Mitosis: ParM of Plasmid R1 Moves Plasmid DNA by an Actin-like Insertional Polymerization MechanismMolecular Cell, 2003
- Control of Cell Morphogenesis in BacteriaCell, 2003
- Partitioning of plasmid R1 Ten direct repeats flanking the parA promoter constitute a centromere-like partition site parC, that expresses incompatibilityJournal of Molecular Biology, 1994
- The periseptal annulus in Escherichia coliBiology of the Cell, 1984