peer reviewedMitochondrial F1FO-ATP synthase of chlorophycean algae is a stable dimeric complex of 1,600 kDa. It lacks the classic subunits that constitute the peripheral stator-stalk and the orthodox polypeptides involved in the dimerization of the complex. Instead, it contains nine polypeptides of unknown evolutionary origin named ASA1 to ASA9. The isolated enzyme exhibited a very low ATPase activity (0.03 Units/mg), that increased upon heat treatment, due to the release of the F-1 sector. Oligomycin was found to stabilize the dimeric structure of the enzyme, providing partial resistance to heat dissociation. Incubation in the presence of low concentrations of several non-ionic detergents increased the oligomycin-sensitive ATPase activity...
AbstractATP synthases are part of the sophisticated cellular metabolic network and therefore multipl...
Mitochondrial ATP synthases form dimers, which assemble into long ribbons at the rims of the inner m...
Mitochondrial ATP synthases form dimers, which assemble into long ribbons at the rims of the inner m...
Mitochondrial F1FO-ATP synthase of chlorophycean algae is a stable dimeric complex of 1,600 kDa. It ...
AbstractMitochondrial F1FO-ATP synthase of chlorophycean algae is a complex partially embedded in th...
Mitochondrial F1FO-ATP synthase of chlorophycean algae is dimeric. It contains eight orthodox subuni...
In this study, we investigate the structure of the mitochondrial F(0)F(1)-ATP synthase of the colorl...
Background. In yeast, mammals, and land plants, mitochondrial F(1)F(O) ATP synthase (complex V) is a...
Mitochondrial F(1)F(0)-ATP synthase of chlorophycean algae is a dimeric complex of 1600kDa constitut...
AbstractRespiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary...
Respiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary motor e...
AbstractMitochondrial F1F0-ATP synthase of chlorophycean algae is a dimeric complex of 1600kDa const...
peer reviewedThe mitochondrial ATP synthase of Polytomella exhibits a peripheral stalk and a dimeriz...
Respiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary motor e...
AbstractH+-ATP synthase is the dominant ATP production site in mitochondria and chloroplasts. So far...
AbstractATP synthases are part of the sophisticated cellular metabolic network and therefore multipl...
Mitochondrial ATP synthases form dimers, which assemble into long ribbons at the rims of the inner m...
Mitochondrial ATP synthases form dimers, which assemble into long ribbons at the rims of the inner m...
Mitochondrial F1FO-ATP synthase of chlorophycean algae is a stable dimeric complex of 1,600 kDa. It ...
AbstractMitochondrial F1FO-ATP synthase of chlorophycean algae is a complex partially embedded in th...
Mitochondrial F1FO-ATP synthase of chlorophycean algae is dimeric. It contains eight orthodox subuni...
In this study, we investigate the structure of the mitochondrial F(0)F(1)-ATP synthase of the colorl...
Background. In yeast, mammals, and land plants, mitochondrial F(1)F(O) ATP synthase (complex V) is a...
Mitochondrial F(1)F(0)-ATP synthase of chlorophycean algae is a dimeric complex of 1600kDa constitut...
AbstractRespiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary...
Respiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary motor e...
AbstractMitochondrial F1F0-ATP synthase of chlorophycean algae is a dimeric complex of 1600kDa const...
peer reviewedThe mitochondrial ATP synthase of Polytomella exhibits a peripheral stalk and a dimeriz...
Respiration in all cells depends upon synthesis of ATP by the ATP synthase complex, a rotary motor e...
AbstractH+-ATP synthase is the dominant ATP production site in mitochondria and chloroplasts. So far...
AbstractATP synthases are part of the sophisticated cellular metabolic network and therefore multipl...
Mitochondrial ATP synthases form dimers, which assemble into long ribbons at the rims of the inner m...
Mitochondrial ATP synthases form dimers, which assemble into long ribbons at the rims of the inner m...