When isolated in its monomeric form, subunit c of the proton transporting ATP synthase of Escherichia coli was shown to fold in a hairpin-like structure consisting of two hydrophobic membrane spanning helices and a short connecting hydrophilic loop. In the plasma membrane of Escherichia coli, however, about 9-12 c-subunit monomers form an oligomeric complex that functions in transmembrane proton conduction and in energy transduction to the catalytic F1 domain. The arrangement of the monomers and the molecular architecture of the complex were studied by tryptophan scanning mutagenesis and restrained MD simulations. Residues 12-24 of the N-terminal transmembrane segment of subunit c were individually substituted by the large and moderately hy...
AbstractScanning force microscope images of membrane-bound Escherichia coli ATP synthase F0 complexe...
The crystal structure of the c-ring from the proton-coupled F1Fo ATP synthase from Spirulina platens...
AbstractSubunit c of the H+ transporting ATP synthase is an essential part of its membrane domain th...
AbstractWhen isolated in its monomeric form, subunit c of the proton transporting ATP synthase of Es...
AbstractSubunit c of the proton-transporting ATP synthase of Escherichia coli forms an oligomeric co...
AbstractA model is described of a dodecameric complex consisting of the integral membrane component ...
AbstractF1F0 ATP synthases are known to synthesize ATP by rotary catalysis in the F1 sector of the e...
AbstractIn this review we discuss recent work from our laboratory concerning the structure and/or fu...
The structure of subunit a of the Escherichia coli ATP synthase has been probed by construction of m...
AbstractH+-transporting, F1Fo-type ATP synthases utilize a transmembrane H+ potential to drive ATP f...
The structure of subunit a of the Escherichia coli ATP synthase has been probed by construction of m...
The conserved, polar loop region of subunit c of the Escherichia coli F1F0 ATP synthase is postulate...
AbstractIn this review, we summarize recent work from our laboratory which establishes the topology ...
AbstractMost of what is known about the structure and function of subunit a, of the ATP synthase, ha...
AbstractA mutant, in which a cysteine has been site-directed into the polar loop region of the c sub...
AbstractScanning force microscope images of membrane-bound Escherichia coli ATP synthase F0 complexe...
The crystal structure of the c-ring from the proton-coupled F1Fo ATP synthase from Spirulina platens...
AbstractSubunit c of the H+ transporting ATP synthase is an essential part of its membrane domain th...
AbstractWhen isolated in its monomeric form, subunit c of the proton transporting ATP synthase of Es...
AbstractSubunit c of the proton-transporting ATP synthase of Escherichia coli forms an oligomeric co...
AbstractA model is described of a dodecameric complex consisting of the integral membrane component ...
AbstractF1F0 ATP synthases are known to synthesize ATP by rotary catalysis in the F1 sector of the e...
AbstractIn this review we discuss recent work from our laboratory concerning the structure and/or fu...
The structure of subunit a of the Escherichia coli ATP synthase has been probed by construction of m...
AbstractH+-transporting, F1Fo-type ATP synthases utilize a transmembrane H+ potential to drive ATP f...
The structure of subunit a of the Escherichia coli ATP synthase has been probed by construction of m...
The conserved, polar loop region of subunit c of the Escherichia coli F1F0 ATP synthase is postulate...
AbstractIn this review, we summarize recent work from our laboratory which establishes the topology ...
AbstractMost of what is known about the structure and function of subunit a, of the ATP synthase, ha...
AbstractA mutant, in which a cysteine has been site-directed into the polar loop region of the c sub...
AbstractScanning force microscope images of membrane-bound Escherichia coli ATP synthase F0 complexe...
The crystal structure of the c-ring from the proton-coupled F1Fo ATP synthase from Spirulina platens...
AbstractSubunit c of the H+ transporting ATP synthase is an essential part of its membrane domain th...