The dynamic switching of the bacterial flagellar motor regulates cell motility in bacterial chemotaxis. It has been reported under physiological conditions that the switching bias of the flagellar motor undergoes large temporal fluctuations, which reflects noise propagating in the chemotactic signaling network. On the other hand, nongenetic heterogeneity is also observed in flagellar motor switching, as a large group of switching motors show different switching bias and frequency under the same physiological condition. In this work, we present simultaneous measurement of groups of Escherichia coli flagellar motor switching and compare them to long time recording of single switching motors. Consistent with previous studies, we observed tempo...
Most biological processes are performed by multiprotein complexes. Traditionally described as static...
The reliable response to weak biological signals requires that they be amplified with fidelity. In E...
Switching dynamics of flagellar motors of Escherichia coli is commonly observed through markers atta...
AbstractThe dynamic switching of the bacterial flagellar motor regulates cell motility in bacterial ...
AbstractWe report the switching behavior of the full bacterial flagellum system that includes the fi...
Abstract The Escherichia coli chemotaxis network, by which bacteria modulate their random run/tumble...
We report the switching behavior of the full bacterial flagellum system that includes the filament a...
AbstractWe report the switching behavior of the full bacterial flagellum system that includes the fi...
Unraveling bacterial strategies for spatial exploration is crucial for understanding the complexity ...
Most biological processes are performed by multiprotein complexes. Traditionally described as static...
Switching of the direction of flagella rotations is the key control mechanism governing the chemotac...
Switching of the direction of flagella rotations is the key control mechanism governing the chemotac...
Switching of the direction of flagella rotations is the key control mechanism governing the chemotac...
The bacterial flagellar motor is an ultrasensitive motor. Its output, the probability of the motor t...
Video techniques were used to study the coordination of different flagella on single filamentous cel...
Most biological processes are performed by multiprotein complexes. Traditionally described as static...
The reliable response to weak biological signals requires that they be amplified with fidelity. In E...
Switching dynamics of flagellar motors of Escherichia coli is commonly observed through markers atta...
AbstractThe dynamic switching of the bacterial flagellar motor regulates cell motility in bacterial ...
AbstractWe report the switching behavior of the full bacterial flagellum system that includes the fi...
Abstract The Escherichia coli chemotaxis network, by which bacteria modulate their random run/tumble...
We report the switching behavior of the full bacterial flagellum system that includes the filament a...
AbstractWe report the switching behavior of the full bacterial flagellum system that includes the fi...
Unraveling bacterial strategies for spatial exploration is crucial for understanding the complexity ...
Most biological processes are performed by multiprotein complexes. Traditionally described as static...
Switching of the direction of flagella rotations is the key control mechanism governing the chemotac...
Switching of the direction of flagella rotations is the key control mechanism governing the chemotac...
Switching of the direction of flagella rotations is the key control mechanism governing the chemotac...
The bacterial flagellar motor is an ultrasensitive motor. Its output, the probability of the motor t...
Video techniques were used to study the coordination of different flagella on single filamentous cel...
Most biological processes are performed by multiprotein complexes. Traditionally described as static...
The reliable response to weak biological signals requires that they be amplified with fidelity. In E...
Switching dynamics of flagellar motors of Escherichia coli is commonly observed through markers atta...