Dissecting the Hydrolytic Activities of Sarcoplasmic Reticulum ATPase in the Presence of Acetyl Phosphate
arXiv:2401.17375 · doi:10.1074/jbc.M203966200.
Abstract
Sarcoplasmic reticulum vesicles and purified Ca-ATPase hydrolyze acetyl phosphate both in the presence and absence of Ca. The Ca-independent activity was fully sensitive to vanadate, insensitive to thapsigargin, and proceeded without accumulation of phosphorylated enzyme. Acetyl phosphate hydrolysis in the absence of Ca was activated by dimethyl sulfoxide. The Ca-dependent activity was partially sensitive to vanadate, fully sensitive to thapsigargin, and associated with steady phosphoenzyme accumulation. The Ca/P(i) coupling ratio at neutral pH sustained by 10 mm acetyl phosphate was 0.57. Addition of 30% dimethyl sulfoxide completely blocked Ca transport and partially inhibited the hydrolysis rate. Uncoupling induced by dimethyl sulfoxide included the accumulation of vanadate-insensitive phosphorylated enzyme. When acetyl phosphate was the substrate, the hydrolytic pathway was dependent on experimental conditions that might or might not allow net Ca transport. The interdependence of both Ca-dependent and Ca-independent hydrolytic activities was demonstrated.