Cryo-EM structure of the bacterial actin AlfA reveals unique assembly and ATP-binding interactions and the absence of a conserved subdomain

Bacterial actins are an evolutionarily diverse family of ATP-dependent filaments built from protomers with a conserved structural fold. Actin-based segregation systems are encoded on many bacterial plasmids and function to partition plasmids into daughter cells. The bacterial actin AlfA segregates p...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2018-03, Vol.115 (13), p.3356-3361
Hauptverfasser: Usluer, Gülsima D., DiMaio, Frank, Yang, Shun Kai, Hansen, Jesse M., Polka, Jessica K., Mullins, R. Dyche, Kollman, Justin M.
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Sprache:eng
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Zusammenfassung:Bacterial actins are an evolutionarily diverse family of ATP-dependent filaments built from protomers with a conserved structural fold. Actin-based segregation systems are encoded on many bacterial plasmids and function to partition plasmids into daughter cells. The bacterial actin AlfA segregates plasmids by a mechanism distinct from other partition systems, dependent on its unique dynamic properties. Here, we report the near-atomic resolution electron cryo-microscopy structure of the AlfA filament, which reveals a strikingly divergent filament architecture resulting from the loss of a subdomain conserved in all other actins and a mode of ATP binding. Its unusual assembly interfaces and nucleotide interactions provide insight into AlfA dynamics, and expand the range of evolutionary variation accessible to actin quaternary structure.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.1715836115