Vanadate binding to sarcoplasmic reticulum vesicles results in the loss of the externally located high affinity calcium binding sites of the calcium transport ATPase. Conversely the occupation by calcium of the internally located low affinity sites in the vanadate enzyme complex leads to the release of vanadate. Since the total number of calcium binding sites is not diminished by vanadate binding but slightly increases we conclude that vanadate binding induces a transition of the enzymes external high to internal low affinity calcium binding sites. The transposition of external to internal calcium binding sites is accompanied by a definite change in the structure of the sarcoplasmic reticulum membranes. On vanadate binding the asymmetricall...
Although not stable, once formed, decameric vanadate (V10) disintegration is in general slow enough ...
Electron micrographs of light sarcoplasmic vesicles fixed with glutaraldehyde and osmium tetroxide f...
The structure of CaZ+-ATPase has been studied by elec-tron microscopy of two different crystal forms...
Vanadate binding to different sarcoplasmic reticulum membrane preparations was determined by measuri...
The affinity of the sarcoplasmic reticulum transport ATPase for calcium and ATP is not affected by l...
Lipid deprivation of the sarcoplasmic reticulum calcium‐transport ATPase neither affects the enzyme'...
The calcium free sarcoplasmic reticulum calcium transport ATPase incorporates in the presence of mag...
ABSTRACT: We have studied the effects of vanadate on the rotational motion of the calcium adenosine-...
Vanadate is the hallmark inhibitor of the P-type ATPase family; however, structural details of its i...
Vanadate is the hallmark inhibitor of the P-type ATPase family; however, structural details of its i...
Time-resolved, terbium resonance x-ray diffraction experiments have provided the locations of three ...
The effect which hydrostatic pressure exerts on the binding of vanadate to the calcium-transport enz...
The general affinity of the sarcoplasmic reticulum (SR) Ca2+-ATPase was examined for three different...
AbstractSarcoplasmic reticulum vesicles were incubated with the maleimide-directed probe ThioGlo1, r...
Inorg Chem. 2008 Jul 7;47(13):5677-84. doi: 10.1021/ic702405dThe general affinity of the sarcoplasmi...
Although not stable, once formed, decameric vanadate (V10) disintegration is in general slow enough ...
Electron micrographs of light sarcoplasmic vesicles fixed with glutaraldehyde and osmium tetroxide f...
The structure of CaZ+-ATPase has been studied by elec-tron microscopy of two different crystal forms...
Vanadate binding to different sarcoplasmic reticulum membrane preparations was determined by measuri...
The affinity of the sarcoplasmic reticulum transport ATPase for calcium and ATP is not affected by l...
Lipid deprivation of the sarcoplasmic reticulum calcium‐transport ATPase neither affects the enzyme'...
The calcium free sarcoplasmic reticulum calcium transport ATPase incorporates in the presence of mag...
ABSTRACT: We have studied the effects of vanadate on the rotational motion of the calcium adenosine-...
Vanadate is the hallmark inhibitor of the P-type ATPase family; however, structural details of its i...
Vanadate is the hallmark inhibitor of the P-type ATPase family; however, structural details of its i...
Time-resolved, terbium resonance x-ray diffraction experiments have provided the locations of three ...
The effect which hydrostatic pressure exerts on the binding of vanadate to the calcium-transport enz...
The general affinity of the sarcoplasmic reticulum (SR) Ca2+-ATPase was examined for three different...
AbstractSarcoplasmic reticulum vesicles were incubated with the maleimide-directed probe ThioGlo1, r...
Inorg Chem. 2008 Jul 7;47(13):5677-84. doi: 10.1021/ic702405dThe general affinity of the sarcoplasmi...
Although not stable, once formed, decameric vanadate (V10) disintegration is in general slow enough ...
Electron micrographs of light sarcoplasmic vesicles fixed with glutaraldehyde and osmium tetroxide f...
The structure of CaZ+-ATPase has been studied by elec-tron microscopy of two different crystal forms...