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Structure of the magnetosome-associated actin-like MamK filament at subnanometer resolution.


ABSTRACT: Magnetotactic bacteria possess cellular compartments called magnetosomes that sense magnetic fields. Alignment of magnetosomes in the bacterial cell is necessary for their function, and this is achieved through anchoring of magnetosomes to filaments composed of the protein MamK. MamK is an actin homolog that polymerizes upon ATP binding. Here, we report the structure of the MamK filament at ?6.5 Å, obtained by cryo-Electron Microscopy. This structure confirms our previously reported double-stranded, nonstaggered architecture, and reveals the molecular basis for filament formation. While MamK is closest in sequence to the bacterial actin MreB, the longitudinal contacts along each MamK strand most closely resemble those of eukaryotic actin. In contrast, the cross-strand interface, with a surprisingly limited set of contacts, is novel among actin homologs and gives rise to the nonstaggered architecture.

SUBMITTER: Bergeron JR 

PROVIDER: S-EPMC5192964 | biostudies-literature | 2017 Jan

REPOSITORIES: biostudies-literature

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Structure of the magnetosome-associated actin-like MamK filament at subnanometer resolution.

Bergeron Julien R C JR   Hutto Rachel R   Ozyamak Ertan E   Hom Nancy N   Hansen Jesse J   Draper Olga O   Byrne Meghan E ME   Keyhani Sepehr S   Komeili Arash A   Kollman Justin M JM  

Protein science : a publication of the Protein Society 20160819 1


Magnetotactic bacteria possess cellular compartments called magnetosomes that sense magnetic fields. Alignment of magnetosomes in the bacterial cell is necessary for their function, and this is achieved through anchoring of magnetosomes to filaments composed of the protein MamK. MamK is an actin homolog that polymerizes upon ATP binding. Here, we report the structure of the MamK filament at ∼6.5 Å, obtained by cryo-Electron Microscopy. This structure confirms our previously reported double-stran  ...[more]

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