AbstractMost of what is known about the structure and function of subunit a, of the ATP synthase, has come from the construction and isolation of mutations, and their analysis in the context of the ATP synthase complex. Three classes of mutants will be considered in this review. (1) Cys substitutions have been used for structural analysis of subunit a, and its interactions with subunit c. (2) Functional residues have been identified by extensive mutagenesis. These studies have included the identification of second-site suppressors within subunit a. (3) Disruptive mutations include deletions at both termini, internal deletions, and single amino acid insertions. The results of these studies, in conjunction with information about subunits b an...
AbstractECF1F0 has been purified from three mutants in which a Cys has been incorporated by site-dir...
When isolated in its monomeric form, subunit c of the proton transporting ATP synthase of Escherichi...
AbstractLike the evolutionary related F1FO ATP synthases and V1VO ATPases, the A1AO ATP synthases fr...
Subunit a is a membrane-bound stator subunit of the ATP synthase and is essential for proton translo...
AbstractSubunit c of the proton-transporting ATP synthase of Escherichia coli forms an oligomeric co...
The structure of subunit a of the Escherichia coli ATP synthase has been probed by construction of m...
AbstractInteractions between subunit a and oligomeric subunit c are essential for the coupling of pr...
Interactions between subunit a and oligomeric subunit c are essential for the coupling of proton tra...
The conserved, polar loop region of subunit c of the Escherichia coli F1F0 ATP synthase is postulate...
The structure of subunit a of the Escherichia coli ATP synthase has been probed by construction of m...
A collection of amino acid substitutions at residues Glu-32 and His-39 in the e subunit of the Esche...
Subunit b of Escherichia coli F1F0 ATP synthase contains a large hydrophilic region thought to be in...
AbstractWhen isolated in its monomeric form, subunit c of the proton transporting ATP synthase of Es...
AbstractPrevious work has shown that the essential R210 of subunit a in the Escherichia coli ATP syn...
AbstractIn this review we discuss recent work from our laboratory concerning the structure and/or fu...
AbstractECF1F0 has been purified from three mutants in which a Cys has been incorporated by site-dir...
When isolated in its monomeric form, subunit c of the proton transporting ATP synthase of Escherichi...
AbstractLike the evolutionary related F1FO ATP synthases and V1VO ATPases, the A1AO ATP synthases fr...
Subunit a is a membrane-bound stator subunit of the ATP synthase and is essential for proton translo...
AbstractSubunit c of the proton-transporting ATP synthase of Escherichia coli forms an oligomeric co...
The structure of subunit a of the Escherichia coli ATP synthase has been probed by construction of m...
AbstractInteractions between subunit a and oligomeric subunit c are essential for the coupling of pr...
Interactions between subunit a and oligomeric subunit c are essential for the coupling of proton tra...
The conserved, polar loop region of subunit c of the Escherichia coli F1F0 ATP synthase is postulate...
The structure of subunit a of the Escherichia coli ATP synthase has been probed by construction of m...
A collection of amino acid substitutions at residues Glu-32 and His-39 in the e subunit of the Esche...
Subunit b of Escherichia coli F1F0 ATP synthase contains a large hydrophilic region thought to be in...
AbstractWhen isolated in its monomeric form, subunit c of the proton transporting ATP synthase of Es...
AbstractPrevious work has shown that the essential R210 of subunit a in the Escherichia coli ATP syn...
AbstractIn this review we discuss recent work from our laboratory concerning the structure and/or fu...
AbstractECF1F0 has been purified from three mutants in which a Cys has been incorporated by site-dir...
When isolated in its monomeric form, subunit c of the proton transporting ATP synthase of Escherichi...
AbstractLike the evolutionary related F1FO ATP synthases and V1VO ATPases, the A1AO ATP synthases fr...