Correlation Engine 2.0
Clear Search sequence regions


Sizes of these terms reflect their relevance to your search.

Septins are cytoskeletal proteins that assemble into hetero-oligomeric complexes and sense micron-scale membrane curvature. During infection with Shigella flexneri, an invasive enteropathogen, septins restrict actin tail formation by entrapping bacteria in cage-like structures. Here, we reconstitute septin cages in vitro using purified recombinant septin complexes (SEPT2-SEPT6-SEPT7), and study how these recognize bacterial cells and assemble on their surface. We show that septin complexes recognize the pole of growing Shigella cells. An amphipathic helix domain in human SEPT6 enables septins to sense positively curved membranes and entrap bacterial cells. Shigella strains lacking lipopolysaccharide components are more efficiently entrapped in septin cages. Finally, cryo-electron tomography of in vitro cages reveals how septins assemble as filaments on the bacterial cell surface. © 2021. The Author(s).

Citation

Damián Lobato-Márquez, Jingwei Xu, Gizem Özbaykal Güler, Adaobi Ojiakor, Martin Pilhofer, Serge Mostowy. Mechanistic insight into bacterial entrapment by septin cage reconstitution. Nature communications. 2021 Jul 23;12(1):4511

Expand section icon Mesh Tags

Expand section icon Substances


PMID: 34301939

View Full Text