AbstractThe bacterial flagellar filament is a very large macromolecular assembly of a single protein, flagellin. Various supercoiled states of the filament exist, which are formed by two structurally different conformations of flagellin in different ratios. We investigated the correlation between supercoiling of the protofilaments and molecular dynamics in the flagellar filament using quasielastic and elastic incoherent neutron scattering on the picosecond and nanosecond timescales. Thermal fluctuations in the straight L- and R-type filaments were measured and compared to the resting state of the wild-type filament. Amplitudes of motion on the picosecond timescale were found to be similar in the different conformational states. Mean-square ...
AbstractThe bacterial flagellum is a self-assembling filament, which bacteria use for swimming. It i...
Proteins have a hierarchy of dynamics from local side-chain motions, through segmental and domain mo...
The bacterial flagellar motor is the most complex structure in the bacterial cell, driving the ion-d...
AbstractThe bacterial flagellar filament is a very large macromolecular assembly of a single protein...
Twenty years ago the experiments of Hotani revealed that flagellar polymorphism (the ability of bact...
Bacterial mobility is powered by rotation of helical flagellar filaments driven by rotary motors. Fl...
AbstractIn supercoiled forms of flagellar filaments, which are thought to be produced by combination...
Phase transition is a very common phenomenon in nature. Besides Martensite phase transitions in Shap...
AbstractMany types of bacteria propel themselves using elongated structures known as flagella. The b...
ABSTRACT Flagellin is the subunit of the bacterial filament, the micrometer-long propeller of a bact...
Bacterial flagellar filaments can undergo a polymorphic phase transition in both vitro and vivo envi...
AbstractThe chemotaxis of bacteria such as Salmonella and Escherichia coli involves smooth swimming ...
AbstractFlagellin is the subunit of the bacterial filament, the micrometer-long propeller of a bacte...
Bacteria swim and swarm by rotating the micrometers long, helical filaments of their flagella. They ...
The filament of a bacterial flagellum is a tube-like organelle made of single protein – flagellin, a...
AbstractThe bacterial flagellum is a self-assembling filament, which bacteria use for swimming. It i...
Proteins have a hierarchy of dynamics from local side-chain motions, through segmental and domain mo...
The bacterial flagellar motor is the most complex structure in the bacterial cell, driving the ion-d...
AbstractThe bacterial flagellar filament is a very large macromolecular assembly of a single protein...
Twenty years ago the experiments of Hotani revealed that flagellar polymorphism (the ability of bact...
Bacterial mobility is powered by rotation of helical flagellar filaments driven by rotary motors. Fl...
AbstractIn supercoiled forms of flagellar filaments, which are thought to be produced by combination...
Phase transition is a very common phenomenon in nature. Besides Martensite phase transitions in Shap...
AbstractMany types of bacteria propel themselves using elongated structures known as flagella. The b...
ABSTRACT Flagellin is the subunit of the bacterial filament, the micrometer-long propeller of a bact...
Bacterial flagellar filaments can undergo a polymorphic phase transition in both vitro and vivo envi...
AbstractThe chemotaxis of bacteria such as Salmonella and Escherichia coli involves smooth swimming ...
AbstractFlagellin is the subunit of the bacterial filament, the micrometer-long propeller of a bacte...
Bacteria swim and swarm by rotating the micrometers long, helical filaments of their flagella. They ...
The filament of a bacterial flagellum is a tube-like organelle made of single protein – flagellin, a...
AbstractThe bacterial flagellum is a self-assembling filament, which bacteria use for swimming. It i...
Proteins have a hierarchy of dynamics from local side-chain motions, through segmental and domain mo...
The bacterial flagellar motor is the most complex structure in the bacterial cell, driving the ion-d...