Bacteria switch only intermittently to motile planktonic lifestyles under favorable conditions. Under chronic nutrient deprivation, however, bacteria orchestrate a switch to stationary phase, conserving energy by altering metabolism and stopping motility. About two-thirds of bacteria use flagella to swim, but how bacteria deactivate this large molecular machine remains unclear. Here, we describe the previously unreported ejection of polar motors by γ-proteobacteria. We show that these bacteria eject their flagella at the base of the flagellar hook when nutrients are depleted, leaving a relic of a former flagellar motor in the outer membrane. Subtomogram averages of the full motor and relic reveal that this is an active process, as a plug pr...
Flagella, the primary means of motility in bacteria, are helical filaments that function as microsco...
The bacterial flagellar motor is an amazing nanomachine. Understanding how such complex structures a...
The bacterial flagellar motor is an amazing nanomachine. Understanding how such complex structures a...
Bacteria switch only intermittently to motile planktonic lifestyles under favorable conditions. Unde...
Bacteria switch only intermittently to motile planktonic lifestyles under favorable conditions. Unde...
Bacteria switch only intermittently to motile planktonic lifestyles under favorable conditions. Unde...
The γ-proteobacteria are a group of diverse bacteria including pathogenic Escherichia, Salmonella, V...
The bacterial flagellar motor, a cell-envelope-embedded macromolecular machine that functions as a c...
Bacteria propel themselves through liquid environments using rotation of a propeller like organelle,...
The bacterial flagellar motor, a cell-envelope-embedded macromolecular machine that functions as a c...
The evolution of molecular machines is fundamental to the development of pathogenesis in bacteria. T...
The bacterial flagellar motor is a cell-envelope-embedded macromolecular machine that functions as a...
Bacterial flagella are helical proteinaceous fibers, composed of the protein flagellin, that confer ...
The bacterial flagellum consists of a long extracellular filament that is rotated by a motor embedde...
Flagella-driven motility contributes to effective bacterial invasion. The bacterial flagellum of Sal...
Flagella, the primary means of motility in bacteria, are helical filaments that function as microsco...
The bacterial flagellar motor is an amazing nanomachine. Understanding how such complex structures a...
The bacterial flagellar motor is an amazing nanomachine. Understanding how such complex structures a...
Bacteria switch only intermittently to motile planktonic lifestyles under favorable conditions. Unde...
Bacteria switch only intermittently to motile planktonic lifestyles under favorable conditions. Unde...
Bacteria switch only intermittently to motile planktonic lifestyles under favorable conditions. Unde...
The γ-proteobacteria are a group of diverse bacteria including pathogenic Escherichia, Salmonella, V...
The bacterial flagellar motor, a cell-envelope-embedded macromolecular machine that functions as a c...
Bacteria propel themselves through liquid environments using rotation of a propeller like organelle,...
The bacterial flagellar motor, a cell-envelope-embedded macromolecular machine that functions as a c...
The evolution of molecular machines is fundamental to the development of pathogenesis in bacteria. T...
The bacterial flagellar motor is a cell-envelope-embedded macromolecular machine that functions as a...
Bacterial flagella are helical proteinaceous fibers, composed of the protein flagellin, that confer ...
The bacterial flagellum consists of a long extracellular filament that is rotated by a motor embedde...
Flagella-driven motility contributes to effective bacterial invasion. The bacterial flagellum of Sal...
Flagella, the primary means of motility in bacteria, are helical filaments that function as microsco...
The bacterial flagellar motor is an amazing nanomachine. Understanding how such complex structures a...
The bacterial flagellar motor is an amazing nanomachine. Understanding how such complex structures a...