AbstractA mutant, in which a cysteine has been site-directed into the polar loop region of the c subunit at residue 44, has been studied. Cross-linking of the c subunit to both the γ and ϵ subunits was observed with cupric 1,10-phenanthrolinate treatment. The linkage between the c and γ subunits was localized to that part of the γ subunit between residues 202–286, based on peptide analysis. Reference to the high resolution structure of F1 [Abrahams et al. (1994) Nature 370, 621–628] appears to limit this contact site to the region including residues 202–230. This segment contains 4 tyrosines and 1 tryptophan as possible reactive residues for cross-linking with the c subunit cysteine
AbstractBackground: Proton-translocating ATP synthases convert the energy generated from photosynthe...
AbstractThe structure of the external stalk and its function in the catalytic mechanism of the F0F1-...
AbstractF1F0 ATP synthases are known to synthesize ATP by rotary catalysis in the F1 sector of the e...
AbstractA mutant, in which a cysteine has been site-directed into the polar loop region of the c sub...
AbstractECF1F0 has been purified from three mutants in which a Cys has been incorporated by site-dir...
AbstractA mutant of Escherichia coli F1F0-ATPase, αS411C/βY331W/βE381C/γC87S, has been generated. Cu...
AbstractIn this review, we summarize recent work from our laboratory which establishes the topology ...
AbstractWhen isolated in its monomeric form, subunit c of the proton transporting ATP synthase of Es...
The conserved, polar loop region of subunit c of the Escherichia coli F1F0 ATP synthase is postulate...
AbstractThe interaction of the membrane traversing stator subunits a and b of the rotary ATP synthas...
AbstractThe structure of monodisperse ATP synthase from Escherichia coli (ECF1F0) has been examined ...
AbstractIn this review we discuss recent work from our laboratory concerning the structure and/or fu...
AbstractThe interaction between the γ and ε subunits of the F1-ATPase sector of Escherichia coli ATP...
The interaction of the membrane traversing stator subunits a and b of the rotary ATP synthase was pr...
AbstractTwo conserved charged amino acids of the N-terminal ‘crown’ region of the α subunit of E. co...
AbstractBackground: Proton-translocating ATP synthases convert the energy generated from photosynthe...
AbstractThe structure of the external stalk and its function in the catalytic mechanism of the F0F1-...
AbstractF1F0 ATP synthases are known to synthesize ATP by rotary catalysis in the F1 sector of the e...
AbstractA mutant, in which a cysteine has been site-directed into the polar loop region of the c sub...
AbstractECF1F0 has been purified from three mutants in which a Cys has been incorporated by site-dir...
AbstractA mutant of Escherichia coli F1F0-ATPase, αS411C/βY331W/βE381C/γC87S, has been generated. Cu...
AbstractIn this review, we summarize recent work from our laboratory which establishes the topology ...
AbstractWhen isolated in its monomeric form, subunit c of the proton transporting ATP synthase of Es...
The conserved, polar loop region of subunit c of the Escherichia coli F1F0 ATP synthase is postulate...
AbstractThe interaction of the membrane traversing stator subunits a and b of the rotary ATP synthas...
AbstractThe structure of monodisperse ATP synthase from Escherichia coli (ECF1F0) has been examined ...
AbstractIn this review we discuss recent work from our laboratory concerning the structure and/or fu...
AbstractThe interaction between the γ and ε subunits of the F1-ATPase sector of Escherichia coli ATP...
The interaction of the membrane traversing stator subunits a and b of the rotary ATP synthase was pr...
AbstractTwo conserved charged amino acids of the N-terminal ‘crown’ region of the α subunit of E. co...
AbstractBackground: Proton-translocating ATP synthases convert the energy generated from photosynthe...
AbstractThe structure of the external stalk and its function in the catalytic mechanism of the F0F1-...
AbstractF1F0 ATP synthases are known to synthesize ATP by rotary catalysis in the F1 sector of the e...