AbstractA series of truncated forms of subunit H were generated to establish the domain features of that protein. Circular dichroism analysis demonstrated that H is divided at least into a C-terminal coiled-coil domain within residues 54–104, and an N-terminal domain formed by adjacent α-helices. With a cysteine at the C-terminus of each of the truncated proteins (H1-47, H1-54, H1-59, H1-61, H1-67, H1-69, H1-71, H1-78, H1-80, H1-91, and H47-105), the residues involved in formation of the coiled-coil interface were determined. Proteins H1-54, H1-61, H1-69, and H1-80 showed strong cross-link formation, which was weaker in H1-47, H1-59, H1-71, and H1-91. A shift in disulfide formation between cysteins at positions 71 and 80 reflected an interr...
AbstractH+-transporting, F1Fo-type ATP synthases utilize a transmembrane H+ potential to drive ATP f...
AbstractA dimer of 156-residue b subunits forms the peripheral stator stalk of eubacterial ATP synth...
The ntpK gene of the archaeon Methanopyrus kandleri encodes the equivalent of the c subunit of ATP s...
AbstractA series of truncated forms of subunit H were generated to establish the domain features of ...
AbstractThe C-terminal residues 98–104 are important for structure stability of subunit H of A1AO AT...
A1AO adenosine triphosphate (ATP) synthases from archaea represent the second class of ATP synthases...
AbstractThe peripheral stalk of the archaeal ATP synthase (A1A0)-ATP synthase is formed by the heter...
The A1AO adenosine triphosphate (ATP) synthase from archaea uses the ion gradients generated across ...
AbstractSubunit a in the membrane traversing F0 sector of Escherichia coli ATP synthase is known to ...
Archaeal ATP synthase (A-ATPase) is the functional homolog to the ATP synthase found in bacteria, mi...
AbstractOne remaining challenge to our understanding of the ATP synthase concerns the dimeric coiled...
AbstractThe 3D structure of a peptide derived from the putative transmembrane segment 7 (TM7) of sub...
AbstractThe structure of the external stalk and its function in the catalytic mechanism of the F0F1-...
AbstractThe arrangement of the b-subunits in the holo-enzyme F0F1-ATP synthase from E. coli is inves...
AbstractTwo of the distinct diversities of the engines A1AO ATP synthase and F1FO ATP synthase are t...
AbstractH+-transporting, F1Fo-type ATP synthases utilize a transmembrane H+ potential to drive ATP f...
AbstractA dimer of 156-residue b subunits forms the peripheral stator stalk of eubacterial ATP synth...
The ntpK gene of the archaeon Methanopyrus kandleri encodes the equivalent of the c subunit of ATP s...
AbstractA series of truncated forms of subunit H were generated to establish the domain features of ...
AbstractThe C-terminal residues 98–104 are important for structure stability of subunit H of A1AO AT...
A1AO adenosine triphosphate (ATP) synthases from archaea represent the second class of ATP synthases...
AbstractThe peripheral stalk of the archaeal ATP synthase (A1A0)-ATP synthase is formed by the heter...
The A1AO adenosine triphosphate (ATP) synthase from archaea uses the ion gradients generated across ...
AbstractSubunit a in the membrane traversing F0 sector of Escherichia coli ATP synthase is known to ...
Archaeal ATP synthase (A-ATPase) is the functional homolog to the ATP synthase found in bacteria, mi...
AbstractOne remaining challenge to our understanding of the ATP synthase concerns the dimeric coiled...
AbstractThe 3D structure of a peptide derived from the putative transmembrane segment 7 (TM7) of sub...
AbstractThe structure of the external stalk and its function in the catalytic mechanism of the F0F1-...
AbstractThe arrangement of the b-subunits in the holo-enzyme F0F1-ATP synthase from E. coli is inves...
AbstractTwo of the distinct diversities of the engines A1AO ATP synthase and F1FO ATP synthase are t...
AbstractH+-transporting, F1Fo-type ATP synthases utilize a transmembrane H+ potential to drive ATP f...
AbstractA dimer of 156-residue b subunits forms the peripheral stator stalk of eubacterial ATP synth...
The ntpK gene of the archaeon Methanopyrus kandleri encodes the equivalent of the c subunit of ATP s...