ATP synthase is a complex universal enzyme responsible for ATP synthesis across all kingdoms of life. The F-type ATP synthase has been suggested to have evolved from two functionally independent, catalytic (F1) and membrane bound (Fo), ancestral modules. While the modular evolution of the synthase is supported by studies indicating independent assembly of the two subunits, the presence of intermediate assembly products suggests a more complex evolutionary process. We analyzed the phylogenetic profiles of the human mitochondrial proteins and bacterial transcription units to gain additional insight into the evolution of the F-type ATP synthase complex. In this study, we report the presence of intermediary modules based on the phylogenetic pro...
The F-type ATP synthase complex is a rotary nano-motor driven by proton motive force to synthesize A...
AbstractThe subunit ε of mitochondrial ATP synthase is the only F1 subunit without a homolog in bact...
ATP synthases are multi-subunit membrane enzymes, which utilize the energy stored in a transmembrane...
Of the two main sectors of the F-type ATP synthase, the membrane-intrinsic F(O)domain is the one whi...
AbstractF1F0-ATP synthases are multimeric protein complexes and common prerequisites for their corre...
<div><p>Bacteria and archaea are characterized by an amazing metabolic diversity, which allows them ...
Bacteria and archaea are characterized by an amazing metabolic diversity, which allows them to persi...
The adenosine triphosphate (ATP) synthase in human mitochondria is a membrane bound assembly of 29 p...
At first, I am interested in the ε subunit of mitochondrial ATP synthase in yeast, an organism that ...
AbstractDevelopment of an increasingly detailed understanding of the eucaryotic mitochondrial ATP sy...
Driven by transmembrane electrochemical ion gradients, F-type ATP synthases are the primary source o...
F1Fo ATP synthases are rotary enzymes that produce most ATP in living organisms. The enzymes’ b2δ su...
ATP synthase is an enzyme that catalyzes the synthesis of adenosine triphosphate (ATP) – the molecul...
This is the final version of the article. Available from National Academy of Sciences via the DOI in...
AbstractSpecific modules and subcomplexes like F1 and F0-parts, F1-c subcomplexes, peripheral and ce...
The F-type ATP synthase complex is a rotary nano-motor driven by proton motive force to synthesize A...
AbstractThe subunit ε of mitochondrial ATP synthase is the only F1 subunit without a homolog in bact...
ATP synthases are multi-subunit membrane enzymes, which utilize the energy stored in a transmembrane...
Of the two main sectors of the F-type ATP synthase, the membrane-intrinsic F(O)domain is the one whi...
AbstractF1F0-ATP synthases are multimeric protein complexes and common prerequisites for their corre...
<div><p>Bacteria and archaea are characterized by an amazing metabolic diversity, which allows them ...
Bacteria and archaea are characterized by an amazing metabolic diversity, which allows them to persi...
The adenosine triphosphate (ATP) synthase in human mitochondria is a membrane bound assembly of 29 p...
At first, I am interested in the ε subunit of mitochondrial ATP synthase in yeast, an organism that ...
AbstractDevelopment of an increasingly detailed understanding of the eucaryotic mitochondrial ATP sy...
Driven by transmembrane electrochemical ion gradients, F-type ATP synthases are the primary source o...
F1Fo ATP synthases are rotary enzymes that produce most ATP in living organisms. The enzymes’ b2δ su...
ATP synthase is an enzyme that catalyzes the synthesis of adenosine triphosphate (ATP) – the molecul...
This is the final version of the article. Available from National Academy of Sciences via the DOI in...
AbstractSpecific modules and subcomplexes like F1 and F0-parts, F1-c subcomplexes, peripheral and ce...
The F-type ATP synthase complex is a rotary nano-motor driven by proton motive force to synthesize A...
AbstractThe subunit ε of mitochondrial ATP synthase is the only F1 subunit without a homolog in bact...
ATP synthases are multi-subunit membrane enzymes, which utilize the energy stored in a transmembrane...