none8Abstract H+-FOF1-ATP synthase couples proton flow through its membrane portion, FO, to the synthesis of ATP in its headpiece, F1. Upon reversal of the reaction the enzyme functions as a proton pumping ATPase. Even in the simplest bacterial enzyme the ATPase activity is regulated by several mechanisms, involving inhibition by MgADP, conformational transitions of the ε subunit, and activation by protonmotive force. Here we report that the Met23Lys mutation in the γ subunit of the Rhodobacter capsulatus ATP synthase significantly impaired the activation of ATP hydrolysis by protonmotive force. The impairment in the mutant was due to faster enzyme deactivation that was particularly evident at low ATP/ADP ratio. We suggest that t...
AbstractInteractions between subunit a and oligomeric subunit c are essential for the coupling of pr...
In ATP synthases from several sources an uncoupling between ATP hydrolysis and proton pumping has be...
The ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a transmembran...
AbstractH+-FOF1-ATP synthase couples proton flow through its membrane portion, FO, to the synthesis ...
AbstractH+-FOF1-ATP synthase couples proton flow through its membrane portion, FO, to the synthesis ...
The single-site mutation M23-K in the gamma-subunit of the E.coli ATP synthase has been reported to ...
The single-site mutation M23-K in the gamma-subunit of the E.coli ATP synthase has been reported to ...
The single-site mutation M23-K in the gamma-subunit of the E.coli ATP synthase has been reported to ...
The single-point mutation gammaM23-K introduced in the ATP synthase of E. coli has been reported to ...
The single-point mutation gammaM23-K introduced in the ATP synthase of E. coli has been reported to ...
The single-point mutation gammaM23-K introduced in the ATP synthase of E. coli has been reported to ...
AbstractF0F1-ATP synthase couples ATP synthesis/hydrolysis with transmembrane proton transport. The ...
AbstractF0F1-ATP synthase (H+-ATP synthase, F0F1) utilizes the transmembrane protonmotive force to c...
none5noThe ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a trans...
Interactions between subunit a and oligomeric subunit c are essential for the coupling of proton tra...
AbstractInteractions between subunit a and oligomeric subunit c are essential for the coupling of pr...
In ATP synthases from several sources an uncoupling between ATP hydrolysis and proton pumping has be...
The ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a transmembran...
AbstractH+-FOF1-ATP synthase couples proton flow through its membrane portion, FO, to the synthesis ...
AbstractH+-FOF1-ATP synthase couples proton flow through its membrane portion, FO, to the synthesis ...
The single-site mutation M23-K in the gamma-subunit of the E.coli ATP synthase has been reported to ...
The single-site mutation M23-K in the gamma-subunit of the E.coli ATP synthase has been reported to ...
The single-site mutation M23-K in the gamma-subunit of the E.coli ATP synthase has been reported to ...
The single-point mutation gammaM23-K introduced in the ATP synthase of E. coli has been reported to ...
The single-point mutation gammaM23-K introduced in the ATP synthase of E. coli has been reported to ...
The single-point mutation gammaM23-K introduced in the ATP synthase of E. coli has been reported to ...
AbstractF0F1-ATP synthase couples ATP synthesis/hydrolysis with transmembrane proton transport. The ...
AbstractF0F1-ATP synthase (H+-ATP synthase, F0F1) utilizes the transmembrane protonmotive force to c...
none5noThe ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a trans...
Interactions between subunit a and oligomeric subunit c are essential for the coupling of proton tra...
AbstractInteractions between subunit a and oligomeric subunit c are essential for the coupling of pr...
In ATP synthases from several sources an uncoupling between ATP hydrolysis and proton pumping has be...
The ATP synthase in chromatophores of Rhodobacter caspulatus can effectively generate a transmembran...