The A1AO adenosine triphosphate (ATP) synthase from archaea uses the ion gradients generated across the membrane sector (AO) to synthesize ATP in the A3B3 domain of the A1 sector. The energy coupling between the two active domains occurs via the so-called stalk part(s), to which the 12 kDa subunit F does belong. Here, we present the solution structure of the F subunit of the A1AO ATP synthase from Methanosarcina mazei Gö1. Subunit F exhibits a distinct two-domain structure, with the N-terminal having 78 residues and residues 79−101 forming the flexible C-terminal part. The well-ordered N-terminal domain is composed of a four-stranded parallel β-sheet structure and three α-helices placed alternately. The two domains are loosely associated wi...
AbstractA series of truncated forms of subunit H were generated to establish the domain features of ...
Kumar A, Manimekalai MSS, Balakrishna AM, et al. Spectroscopic and crystallographic studies of the m...
AbstractH+-transporting, F1Fo-type ATP synthases utilize a transmembrane H+ potential to drive ATP f...
The A1AO adenosine triphosphate (ATP) synthase from archaea uses the ion gradients generated across ...
A1AO adenosine triphosphate (ATP) synthases from archaea represent the second class of ATP synthases...
The interaction of the nucleotide-binding subunit B with subunit F is essential in coupling of ion p...
In archaea the A1AO ATP synthase uses a transmembrane electrochemical potential to generate ATP, whi...
Archaea are microorganisms which thrive under extreme environmental conditions. These organisms are ...
Archaea are considered to be the most primitive organisms forming a separate evolutionary kingdom lo...
In Archaea, bacteria, and eukarya, ATP provides metabolic energy for energy-dependent processes. It ...
ATP synthases and ATPases are membrane-bound enzymes that synthesize either ATP from ADP and phospha...
Adenosine 5’-triphosphate (ATP) synthesis by oxidative phosphorylation or photophosphorylation is a ...
A1AO ATP synthases couple ion-transport of the AO sector and ATP synthesis/hydrolysis of the A3B3-he...
AbstractTwo of the distinct diversities of the engines A1AO ATP synthase and F1FO ATP synthase are t...
AbstractLike the evolutionary related F1FO ATP synthases and V1VO ATPases, the A1AO ATP synthases fr...
AbstractA series of truncated forms of subunit H were generated to establish the domain features of ...
Kumar A, Manimekalai MSS, Balakrishna AM, et al. Spectroscopic and crystallographic studies of the m...
AbstractH+-transporting, F1Fo-type ATP synthases utilize a transmembrane H+ potential to drive ATP f...
The A1AO adenosine triphosphate (ATP) synthase from archaea uses the ion gradients generated across ...
A1AO adenosine triphosphate (ATP) synthases from archaea represent the second class of ATP synthases...
The interaction of the nucleotide-binding subunit B with subunit F is essential in coupling of ion p...
In archaea the A1AO ATP synthase uses a transmembrane electrochemical potential to generate ATP, whi...
Archaea are microorganisms which thrive under extreme environmental conditions. These organisms are ...
Archaea are considered to be the most primitive organisms forming a separate evolutionary kingdom lo...
In Archaea, bacteria, and eukarya, ATP provides metabolic energy for energy-dependent processes. It ...
ATP synthases and ATPases are membrane-bound enzymes that synthesize either ATP from ADP and phospha...
Adenosine 5’-triphosphate (ATP) synthesis by oxidative phosphorylation or photophosphorylation is a ...
A1AO ATP synthases couple ion-transport of the AO sector and ATP synthesis/hydrolysis of the A3B3-he...
AbstractTwo of the distinct diversities of the engines A1AO ATP synthase and F1FO ATP synthase are t...
AbstractLike the evolutionary related F1FO ATP synthases and V1VO ATPases, the A1AO ATP synthases fr...
AbstractA series of truncated forms of subunit H were generated to establish the domain features of ...
Kumar A, Manimekalai MSS, Balakrishna AM, et al. Spectroscopic and crystallographic studies of the m...
AbstractH+-transporting, F1Fo-type ATP synthases utilize a transmembrane H+ potential to drive ATP f...