The bacterial flagellum is a self-assembling nanomachine. The external flagellar filament, several times longer than a bacterial cell body, is made of a few tens of thousands subunits of a single protein: flagellin. A fundamental problem concerns the molecular mechanism of how the flagellum grows outside the cell, where no discernible energy source is available. Here, we monitored the dynamic assembly of individual flagella using in situ labelling and real-time immunostaining of elongating flagellar filaments. We report that the rate of flagellum growth, initially ∼1,700 amino acids per second, decreases with length and that the previously proposed chain mechanism does not contribute to the filament elongation dynamics. Inhibition of the pr...
The bacterial flagellar motor is the most complex structure in the bacterial cell, driving the ion-d...
Bacterial flagellar motor is a highly ordered and complex supramolecular structure that powers rotat...
Experiments and mathematical modeling show that complex flows driven by unexpected flagellar arrange...
The bacterial flagellum is a self-assembling nanomachine. The external flagellar filament, several t...
Flagella, the rotary propellers on the surface of bacteria, present a paradigm for how cells build a...
Flagella, the rotary propellers on the surface of bacteria, present a paradigm for how cells build a...
Flagella, the helical propellers that extend from the bacterial surface, are a paradigm for how comp...
AbstractThe bacterial flagellum is a self-assembling filament, which bacteria use for swimming. It i...
Flagella, the helical propellers that extend from the bacterial surface, are a paradigm for how comp...
Most bacteria swim in liquid environments by rotating one or several flagella. The long external fil...
Most bacteria swim in liquid environments by rotating one or several flagella. The long external fil...
Bacteria propel themselves through liquid environments using rotation of a propeller like organelle,...
The bacterial flagellum exemplifies a system where even small deviations from the highly regulated f...
AbstractA bacterial flagellar filament is a cylindrical crystal of a protein known as flagellin. Fla...
Cells maintain organelles at precise size and orientation without a ruler or compass. In this disser...
The bacterial flagellar motor is the most complex structure in the bacterial cell, driving the ion-d...
Bacterial flagellar motor is a highly ordered and complex supramolecular structure that powers rotat...
Experiments and mathematical modeling show that complex flows driven by unexpected flagellar arrange...
The bacterial flagellum is a self-assembling nanomachine. The external flagellar filament, several t...
Flagella, the rotary propellers on the surface of bacteria, present a paradigm for how cells build a...
Flagella, the rotary propellers on the surface of bacteria, present a paradigm for how cells build a...
Flagella, the helical propellers that extend from the bacterial surface, are a paradigm for how comp...
AbstractThe bacterial flagellum is a self-assembling filament, which bacteria use for swimming. It i...
Flagella, the helical propellers that extend from the bacterial surface, are a paradigm for how comp...
Most bacteria swim in liquid environments by rotating one or several flagella. The long external fil...
Most bacteria swim in liquid environments by rotating one or several flagella. The long external fil...
Bacteria propel themselves through liquid environments using rotation of a propeller like organelle,...
The bacterial flagellum exemplifies a system where even small deviations from the highly regulated f...
AbstractA bacterial flagellar filament is a cylindrical crystal of a protein known as flagellin. Fla...
Cells maintain organelles at precise size and orientation without a ruler or compass. In this disser...
The bacterial flagellar motor is the most complex structure in the bacterial cell, driving the ion-d...
Bacterial flagellar motor is a highly ordered and complex supramolecular structure that powers rotat...
Experiments and mathematical modeling show that complex flows driven by unexpected flagellar arrange...