AbstractThe Na+-dependent flagellum of Acetobacterium woodii was characterised. Flagellin and whole flagella were purified and analysed by SDS-PAGE and electron microscopy. The structure and dimensions of the filament and the hook-basal body, as revealed by electron microscopy, resemble those of H+-dependent flagella from Gram-positive bacteria. Intramembrane particle rings were present at the cell pole in freeze-fractured A. woodii cells, which might correspond to the mot complex
Bacterial flagellar motors are molecular machines powered by the electrochemical potential gradient ...
Flagellar filaments function as the propellers of the bacterial flagellum and their supercoiling is ...
The bacterial flagellum is one of nature’s most amazing and well-studied nanomachines. Its cell-wal...
AbstractThe Na+-dependent flagellum of Acetobacterium woodii was characterised. Flagellin and whole ...
AbstractThe homoacetogenic bacterium Acetobacterium woodii relies on a sodium ion current across its...
AbstractThe acetogenic bacterium Acetobacterium woodii uses a transmembrane electrochemical sodium i...
AbstractBacterial flagellar motors are molecular machines powered by the electrochemical potential g...
AbstractNa+ transport through the F0 domain of Na+-F1F0-ATPases involves the combined action of subu...
AbstractThe flagellar motor consists of a rotor and a stator and couples the flux of cations (H+ or ...
The bacterial flagellar motor, a cell-envelope-embedded macromolecular machine that functions as a c...
AbstractA 3.2 kb EcoRI fragment carrying genes for Na+-F1FO ATPase was cloned from chromosomal DNA o...
AbstractA 4.5 kbp EcoRI fragment hybridizing to a fragment of uncD (coding for subunit β of F1F0-ATP...
The Na+translocating F1FO ATP synthase from Acetobacterium woodii shows a subunit stoichiometry of α...
AbstractThe Na+-translocating F1F0-ATPase of Acetobacterium woodii was examined by electron microsco...
Flagellation in archaea is widespread and is involved in swimming motility. Here, we demonstrate tha...
Bacterial flagellar motors are molecular machines powered by the electrochemical potential gradient ...
Flagellar filaments function as the propellers of the bacterial flagellum and their supercoiling is ...
The bacterial flagellum is one of nature’s most amazing and well-studied nanomachines. Its cell-wal...
AbstractThe Na+-dependent flagellum of Acetobacterium woodii was characterised. Flagellin and whole ...
AbstractThe homoacetogenic bacterium Acetobacterium woodii relies on a sodium ion current across its...
AbstractThe acetogenic bacterium Acetobacterium woodii uses a transmembrane electrochemical sodium i...
AbstractBacterial flagellar motors are molecular machines powered by the electrochemical potential g...
AbstractNa+ transport through the F0 domain of Na+-F1F0-ATPases involves the combined action of subu...
AbstractThe flagellar motor consists of a rotor and a stator and couples the flux of cations (H+ or ...
The bacterial flagellar motor, a cell-envelope-embedded macromolecular machine that functions as a c...
AbstractA 3.2 kb EcoRI fragment carrying genes for Na+-F1FO ATPase was cloned from chromosomal DNA o...
AbstractA 4.5 kbp EcoRI fragment hybridizing to a fragment of uncD (coding for subunit β of F1F0-ATP...
The Na+translocating F1FO ATP synthase from Acetobacterium woodii shows a subunit stoichiometry of α...
AbstractThe Na+-translocating F1F0-ATPase of Acetobacterium woodii was examined by electron microsco...
Flagellation in archaea is widespread and is involved in swimming motility. Here, we demonstrate tha...
Bacterial flagellar motors are molecular machines powered by the electrochemical potential gradient ...
Flagellar filaments function as the propellers of the bacterial flagellum and their supercoiling is ...
The bacterial flagellum is one of nature’s most amazing and well-studied nanomachines. Its cell-wal...