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10LL

Native flagellar filament from Leptospira interrogans flaB1- KO mutant strain

This is a non-PDB format compatible entry.
Summary for 10LL
Entry DOI10.2210/pdb10ll/pdb
EMDB information75269
DescriptorFlagellin, LIC_13212 protein, Lipoprotein, ... (13 entities in total)
Functional Keywordsbacterial endo-flagellum, filament, protein fibril
Biological sourceLeptospira interrogans
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Total number of polymer chains145
Total formula weight4709150.67
Authors
Brady, M.R.,San Martin, F.,Sindelar, C.V.,Buschiazzo, A. (deposition date: 2026-01-26, release date: 2026-09-02)
Primary citationSan Martin, F.,Brady, M.R.,Fule, L.,Nouchikian, L.,Rodriguez, A.,Duchateau, M.,Mondino, S.,Larrieux, N.,Wunder Jr., E.A.,Ko, A.I.,Rey, M.,Chamot-Rooke, J.,Duran, R.,Trajtenberg, F.,Picardeau, M.,Sindelar, C.V.,Buschiazzo, A.
Core-sheath coupling controls flagellar curvature and motility in Leptospira.
Nat Commun, 17:-, 2026
Cited by
PubMed Abstract: Spirochaete pathogens are among the most invasive bacteria known, causing syphilis, Lyme disease, and leptospirosis. Their tissue penetration depends on periplasmic flagellar filaments that, unlike other bacterial flagella, are encased in a spirochaete-specific multi-protein sheath and deform the cell body into motile waves. How these filaments achieve the mechanical properties needed for invasive motility has remained unclear. Here we determine complete atomic structures of the Leptospira endoflagellar filament, revealing an elaborate sheath of 9 to 12 distinct asymmetrically arranged proteins. We show that the flagellin variant forming the filament core determines sheath composition, producing curvatures ranging from ~3.5 µm to ~5.6 µm. The lower-curvature architecture, employed by pathogenic Leptospira interrogans, proves essential for motility in viscous environments and during infection. Thus, Leptospira achieves environment-specific motility through modular core-sheath coupling, linking atomic-scale structural plasticity to large-scale changes in swimming behaviour. Conservation of key sheath components suggests this mechanism may extend across spirochaetes.
PubMed: 42649215
DOI: 10.1038/s41467-026-75995-6
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (4.3 Å)
Structure validation

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PDB entries from 2026-09-02

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