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Symmetry mismatch in the MS-ring of the bacterial flagellar rotor explains  the structural coordination of secretion and rotation | Nature Microbiology
Symmetry mismatch in the MS-ring of the bacterial flagellar rotor explains the structural coordination of secretion and rotation | Nature Microbiology

Structure of the molecular bushing of the bacterial flagellar motor |  Nature Communications
Structure of the molecular bushing of the bacterial flagellar motor | Nature Communications

Native flagellar MS ring is formed by 34 subunits with 23-fold and 11-fold  subsymmetries | Nature Communications
Native flagellar MS ring is formed by 34 subunits with 23-fold and 11-fold subsymmetries | Nature Communications

L ring - Wikipedia
L ring - Wikipedia

Two Distinct Conformations in 34 FliF Subunits Generate Three Different  Symmetries within the Flagellar MS-Ring | mBio
Two Distinct Conformations in 34 FliF Subunits Generate Three Different Symmetries within the Flagellar MS-Ring | mBio

Native structure of flagellar MS ring is formed by 34 subunits with 23-fold  and 11-fold subsymmetries | bioRxiv
Native structure of flagellar MS ring is formed by 34 subunits with 23-fold and 11-fold subsymmetries | bioRxiv

Structure of the molecular bushing of the bacterial flagellar motor |  Nature Communications
Structure of the molecular bushing of the bacterial flagellar motor | Nature Communications

Native flagellar MS ring is formed by 34 subunits with 23-fold and 11-fold  subsymmetries | Nature Communications
Native flagellar MS ring is formed by 34 subunits with 23-fold and 11-fold subsymmetries | Nature Communications

Two Distinct Conformations in 34 FliF Subunits Generate Three Different  Symmetries within the Flagellar MS-Ring | mBio
Two Distinct Conformations in 34 FliF Subunits Generate Three Different Symmetries within the Flagellar MS-Ring | mBio

Structural modeling of the flagellum MS ring protein FliF reveals  similarities to the type III secretion system and sporulation complex |  bioRxiv
Structural modeling of the flagellum MS ring protein FliF reveals similarities to the type III secretion system and sporulation complex | bioRxiv

Native flagellar MS ring is formed by 34 subunits with 23-fold and 11-fold  subsymmetries | Nature Communications
Native flagellar MS ring is formed by 34 subunits with 23-fold and 11-fold subsymmetries | Nature Communications

Co-folding of a FliF-FliG split domain forms the basis of the MS:C ring  interface within the bacterial flagellar motor
Co-folding of a FliF-FliG split domain forms the basis of the MS:C ring interface within the bacterial flagellar motor

Assembly Mechanism of a Supramolecular MS-Ring Complex To Initiate  Bacterial Flagellar Biogenesis in Vibrio Species | Journal of Bacteriology
Assembly Mechanism of a Supramolecular MS-Ring Complex To Initiate Bacterial Flagellar Biogenesis in Vibrio Species | Journal of Bacteriology

In Situ Structure of the Vibrio Polar Flagellum Reveals a Distinct Outer  Membrane Complex and Its Specific Interaction with the Stator | Journal of  Bacteriology
In Situ Structure of the Vibrio Polar Flagellum Reveals a Distinct Outer Membrane Complex and Its Specific Interaction with the Stator | Journal of Bacteriology

Symmetry mismatch in the MS-ring of the bacterial flagellar rotor explains  the structural coordination of secretion and rotation | Nature Microbiology
Symmetry mismatch in the MS-ring of the bacterial flagellar rotor explains the structural coordination of secretion and rotation | Nature Microbiology

Structure of the molecular bushing of the bacterial flagellar motor |  Nature Communications
Structure of the molecular bushing of the bacterial flagellar motor | Nature Communications

Assembly Mechanism of a Supramolecular MS-Ring Complex To Initiate  Bacterial Flagellar Biogenesis in Vibrio Species | Journal of Bacteriology
Assembly Mechanism of a Supramolecular MS-Ring Complex To Initiate Bacterial Flagellar Biogenesis in Vibrio Species | Journal of Bacteriology

Symmetry mismatch in the MS-ring of the bacterial flagellar rotor explains  the structural coordination of secretion and rotation | Nature Microbiology
Symmetry mismatch in the MS-ring of the bacterial flagellar rotor explains the structural coordination of secretion and rotation | Nature Microbiology

Structural modeling of the flagellum MS ring protein FliF reveals  similarities to the type III secretion system and sporulation complex |  bioRxiv
Structural modeling of the flagellum MS ring protein FliF reveals similarities to the type III secretion system and sporulation complex | bioRxiv

Structure of the bacterial flagellar rotor MS-ring: a minimum  inventory/maximum diversity system
Structure of the bacterial flagellar rotor MS-ring: a minimum inventory/maximum diversity system

Assembly Mechanism of a Supramolecular MS-Ring Complex To Initiate  Bacterial Flagellar Biogenesis in Vibrio Species | Journal of Bacteriology
Assembly Mechanism of a Supramolecular MS-Ring Complex To Initiate Bacterial Flagellar Biogenesis in Vibrio Species | Journal of Bacteriology

The Vibrio H-Ring Facilitates the Outer Membrane Penetration of the Polar  Sheathed Flagellum | Journal of Bacteriology
The Vibrio H-Ring Facilitates the Outer Membrane Penetration of the Polar Sheathed Flagellum | Journal of Bacteriology

Structure of the bacterial flagellar rotor MS-ring: a minimum  inventory/maximum diversity system | bioRxiv
Structure of the bacterial flagellar rotor MS-ring: a minimum inventory/maximum diversity system | bioRxiv