Abstract: Bacterial flagellar subunits are exported across the cell membrane by the flagellar Type III Secretion System (fT3SS), powered by the proton motive force (pmf) and a specialized ATPase that enables the flagellar export gate to utilize the pmf electric potential (ΔΨ). Export gate activation is mediated by the ATPase stalk, FliJ, but how this process is regulated to prevent wasteful dissipation of pmf in the absence of subunit cargo is not known. Here, we show that FliJ activation of the export gate is regulated by flagellar export chaperones. FliJ binds unladen chaperones and, by using novel chaperone variants specifically defective for FliJ binding, we show that disruption of this interaction attenuates motility and cognate subuni...
The bacterial flagellum contains its own type III secretion apparatus that coordinates protein expor...
The bacterial flagellum contains its own type III secretion apparatus that coordinates protein expor...
The flagellar type III protein export apparatus plays an essential role in the formation of the bact...
Type III Secretion Systems (T3SS) transport proteins from the bacterial cytosol for assembly into ce...
AbstractFor construction of the bacterial flagellum, which is responsible for bacterial motility, th...
The flagellum and the injectisome enable bacterial locomotion and pathogenesis, respectively. These ...
Many bacteria move using a complex, self-assembling nanomachine, the bacterial flagellum. Biosynthes...
AbstractFlagella, the locomotion organelles of bacteria, extend from the cytoplasm to the cell exter...
The flagellum is a complex bacterial nanomachine that requires the proper assembly of several differ...
Flagella, the locomotion organelles of bacteria, extend from the cytoplasm to the cell exterior. Ext...
Type III secretion systems (T3SS) are essential for motility and virulence in many bacterial pathoge...
<div><p>The bacterial flagellar type III export apparatus utilizes ATP and proton motive force (PMF)...
Type III Secretion Systems (T3SS) deliver subunits from the bacterial cytosol to nascent cell surfac...
Substructure of the S. typhimurium flagellum are built sequentially by the successive addition of st...
Bacteria propel themselves through liquid environments using rotation of a propeller like organelle,...
The bacterial flagellum contains its own type III secretion apparatus that coordinates protein expor...
The bacterial flagellum contains its own type III secretion apparatus that coordinates protein expor...
The flagellar type III protein export apparatus plays an essential role in the formation of the bact...
Type III Secretion Systems (T3SS) transport proteins from the bacterial cytosol for assembly into ce...
AbstractFor construction of the bacterial flagellum, which is responsible for bacterial motility, th...
The flagellum and the injectisome enable bacterial locomotion and pathogenesis, respectively. These ...
Many bacteria move using a complex, self-assembling nanomachine, the bacterial flagellum. Biosynthes...
AbstractFlagella, the locomotion organelles of bacteria, extend from the cytoplasm to the cell exter...
The flagellum is a complex bacterial nanomachine that requires the proper assembly of several differ...
Flagella, the locomotion organelles of bacteria, extend from the cytoplasm to the cell exterior. Ext...
Type III secretion systems (T3SS) are essential for motility and virulence in many bacterial pathoge...
<div><p>The bacterial flagellar type III export apparatus utilizes ATP and proton motive force (PMF)...
Type III Secretion Systems (T3SS) deliver subunits from the bacterial cytosol to nascent cell surfac...
Substructure of the S. typhimurium flagellum are built sequentially by the successive addition of st...
Bacteria propel themselves through liquid environments using rotation of a propeller like organelle,...
The bacterial flagellum contains its own type III secretion apparatus that coordinates protein expor...
The bacterial flagellum contains its own type III secretion apparatus that coordinates protein expor...
The flagellar type III protein export apparatus plays an essential role in the formation of the bact...