AbstractThe influence of adenine nucleotides and Mg2+ on the thermal denaturation of mitochondrial F1-ATPase (MF1) was analyzed. Differential scanning calorimetry in combination with ATPase activity experiments revealed the thermal unfolding of MF1 as an irreversible and kinetically controlled process. Three significant elements were analyzed during the thermal denaturation process: the endothermic calorimetric transition, the loss of ATP hydrolysis activity, and the release of tightly bound nucleotides. All three processes occur in the same temperature range, over a wide variety of conditions. The purified F1-ATPase, which contains three tightly bound nucleotides, denatures at a transition temperature (Tm) of 55°C. The nucleotide and Mg2+ ...
Nucleotide binding to hexokinase is studied using fluorometric and kinetic techniques. Dissociation ...
To increase our understanding of the physical nature of the Na+ and K+ forms of the Na+ + K+-depende...
AbstractThe properties of the nucleotides tightly bound with mitochondrial F1-ATPase were examined. ...
AbstractThe influence of adenine nucleotides and Mg2+ on the thermal denaturation of mitochondrial F...
Title Nucleotide and Mg2+ dependency of the thermal denaturation of mitochondrial F1-ATPas
AbstractThe interactions between ADP and Mg2+ that result in the slowly reversible inhibition of the...
AbstractThe thermal unfolding of monomeric and delipidated Ca2+-ATPase, solubilized in C12E8, can be...
AbstractThe interactions between ADP and Mg2+ that result in the slowly reversible inhibition of the...
AbstractAn unusual effect of temperature on the ATPase activity of E. coli F1Fo ATP synthase has bee...
AbstractWe have studied the secondary structure of mitochondrial F1 using infrared spectroscopy. Our...
1. F1-ATPase has been extracted by the diphosphatidylglycerol procedure from mitochondrial ATPase co...
1. F1-ATPase has been extracted by the diphosphatidylglycerol procedure from mitochondrial ATPase co...
AbstractAn unusual effect of temperature on the ATPase activity of E. coli F1Fo ATP synthase has bee...
AbstractThe thermal unfolding of monomeric and delipidated Ca2+-ATPase, solubilized in C12E8, can be...
Na+,K+-ATPase is an integral membrane protein which couples ATP hydrolysis to the transport of three...
Nucleotide binding to hexokinase is studied using fluorometric and kinetic techniques. Dissociation ...
To increase our understanding of the physical nature of the Na+ and K+ forms of the Na+ + K+-depende...
AbstractThe properties of the nucleotides tightly bound with mitochondrial F1-ATPase were examined. ...
AbstractThe influence of adenine nucleotides and Mg2+ on the thermal denaturation of mitochondrial F...
Title Nucleotide and Mg2+ dependency of the thermal denaturation of mitochondrial F1-ATPas
AbstractThe interactions between ADP and Mg2+ that result in the slowly reversible inhibition of the...
AbstractThe thermal unfolding of monomeric and delipidated Ca2+-ATPase, solubilized in C12E8, can be...
AbstractThe interactions between ADP and Mg2+ that result in the slowly reversible inhibition of the...
AbstractAn unusual effect of temperature on the ATPase activity of E. coli F1Fo ATP synthase has bee...
AbstractWe have studied the secondary structure of mitochondrial F1 using infrared spectroscopy. Our...
1. F1-ATPase has been extracted by the diphosphatidylglycerol procedure from mitochondrial ATPase co...
1. F1-ATPase has been extracted by the diphosphatidylglycerol procedure from mitochondrial ATPase co...
AbstractAn unusual effect of temperature on the ATPase activity of E. coli F1Fo ATP synthase has bee...
AbstractThe thermal unfolding of monomeric and delipidated Ca2+-ATPase, solubilized in C12E8, can be...
Na+,K+-ATPase is an integral membrane protein which couples ATP hydrolysis to the transport of three...
Nucleotide binding to hexokinase is studied using fluorometric and kinetic techniques. Dissociation ...
To increase our understanding of the physical nature of the Na+ and K+ forms of the Na+ + K+-depende...
AbstractThe properties of the nucleotides tightly bound with mitochondrial F1-ATPase were examined. ...