Force-induced reversible transformations between coiled and normal polymorphs of bacterial flagella have been observed in recent optical-tweezer experiment. We introduce a discrete elastic rod model with two competing helical states governed by a fluctuating spin-like variable that represents the underlying conformational states of flagellin monomers. Using hybrid Brownian dynamics Monte Carlo simulations, we show that a helix undergoes shape transitions dominated by domain wall nucleation and motion in response to externally applied uniaxial tension. A scaling argument for the critical force is presented in good agreement with experimental and simulation results. Stretching-rate-dependent elasticity including a buckling instability ...
Within individual bacteria, we combine force-dependent polymerization dynamics of individual MreB pr...
Coiled-coils are filamentous proteins that form the basic building block of important force-bearing ...
Bacterial flagellar filament can undergo a stress-induced polymorphic phase transition in both vitro...
Bacterial flagella assume different helical shapes during the tumbling phase of a bacterium but also...
AbstractBacterial flagella can adopt several different helical shapes in response to varying environ...
Recent observations of flagellar counterbend in sea urchin sperm show that the mechanical induction ...
Recent observations of flagellar counterbend in sea urchin sperm show that the mechanical induction ...
Many types of bacteria swim by rotating a bundle of helical filaments also called flagella. Each fil...
Twenty years ago the experiments of Hotani revealed that flagellar polymorphism (the ability of bact...
Bacterial flagellar filaments can undergo a polymorphic phase transition in both vitro and vivo envi...
Bacteria like Escherichia coli and Salmonella typhimurium swim by rotating flagella. These are long ...
Many interesting problems in cellular biophysics involve the dynamics of filamentary elastic objects...
Peritrichous bacteria swim in viscous fluids by rotating multiple helical flagellar filaments. As th...
AbstractMany types of bacteria propel themselves using elongated structures known as flagella. The b...
We present a model that describes mechanical unfolding behavior in rod-like macromolecules. We propo...
Within individual bacteria, we combine force-dependent polymerization dynamics of individual MreB pr...
Coiled-coils are filamentous proteins that form the basic building block of important force-bearing ...
Bacterial flagellar filament can undergo a stress-induced polymorphic phase transition in both vitro...
Bacterial flagella assume different helical shapes during the tumbling phase of a bacterium but also...
AbstractBacterial flagella can adopt several different helical shapes in response to varying environ...
Recent observations of flagellar counterbend in sea urchin sperm show that the mechanical induction ...
Recent observations of flagellar counterbend in sea urchin sperm show that the mechanical induction ...
Many types of bacteria swim by rotating a bundle of helical filaments also called flagella. Each fil...
Twenty years ago the experiments of Hotani revealed that flagellar polymorphism (the ability of bact...
Bacterial flagellar filaments can undergo a polymorphic phase transition in both vitro and vivo envi...
Bacteria like Escherichia coli and Salmonella typhimurium swim by rotating flagella. These are long ...
Many interesting problems in cellular biophysics involve the dynamics of filamentary elastic objects...
Peritrichous bacteria swim in viscous fluids by rotating multiple helical flagellar filaments. As th...
AbstractMany types of bacteria propel themselves using elongated structures known as flagella. The b...
We present a model that describes mechanical unfolding behavior in rod-like macromolecules. We propo...
Within individual bacteria, we combine force-dependent polymerization dynamics of individual MreB pr...
Coiled-coils are filamentous proteins that form the basic building block of important force-bearing ...
Bacterial flagellar filament can undergo a stress-induced polymorphic phase transition in both vitro...