AbstractCa2+ pump dimerization was studied by using a combined approach of thermal denaturation and fluorescence resonance energy transfer. The measurement of calcium pump ability to dimerize after the unfolding of individual functional domains of the enzyme demonstrated the existence of two different regions involved in the self-association process. One of these regions is highly susceptible to thermal unfolding and was identified as the calmodulin (CaM)-binding domain. The other region whose thermal stability is higher than those of the catalytic and CaM-binding domains could be related with the previously found C28W-binding regions
Plasma-membrane Ca(2+)-ATPases expel Ca(2+) from the cytoplasm and are key regulators of Ca(2+) home...
Plasma-membrane Ca2+-ATPases expel Ca2+ from the cytoplasm and are key regulators of Ca2+ homeostasi...
Calmodulin (CaM) is a ubiquitously expressed calcium sensor that engages in regulatory interactions ...
AbstractCa2+ pump dimerization was studied by using a combined approach of thermal denaturation and ...
AbstractThe oligomerization of the plasma membrane calcium pump (PMCA) in phospholipid/detergent mic...
Plasma membrane calcium pumps (PMCAs) sustain a primary transport system for the specific removal of...
Plasma membrane calcium pumps (PMCAs) sustain a primary transport system for the specific removal of...
AbstractAt enzyme concentrations above 40 nM the configuration of the purified plasma membrane Ca2+-...
Plasma-membrane Ca(2+)-ATPases expel Ca(2+) from the cytoplasm and are key regulators of Ca(2+) hom...
Plasma Membrane Calcium ATPases (PMCAs) are P-type pumps involved in calcium homeostasis. Their 3D s...
Plasma-membrane Ca$\mathrm{^{2+}}$-ATPases expel Ca$\mathrm{^{2+}}$ from the cytoplasm and are key r...
The plasma membrane Ca-pump (134 kDa) is stimulated by calmodulin and by other treatments (exposure ...
AbstractThe plasma membrane calcium-ATPase (PMCA) helps to control cytosolic calcium levels by pumpi...
Calcium-binding proteins, such as S-100, dimerize readily, and this phenomenon plays an important ro...
Thermal stability of plasma membrane Ca2+ pump was systematically studied in three micellar systems ...
Plasma-membrane Ca(2+)-ATPases expel Ca(2+) from the cytoplasm and are key regulators of Ca(2+) home...
Plasma-membrane Ca2+-ATPases expel Ca2+ from the cytoplasm and are key regulators of Ca2+ homeostasi...
Calmodulin (CaM) is a ubiquitously expressed calcium sensor that engages in regulatory interactions ...
AbstractCa2+ pump dimerization was studied by using a combined approach of thermal denaturation and ...
AbstractThe oligomerization of the plasma membrane calcium pump (PMCA) in phospholipid/detergent mic...
Plasma membrane calcium pumps (PMCAs) sustain a primary transport system for the specific removal of...
Plasma membrane calcium pumps (PMCAs) sustain a primary transport system for the specific removal of...
AbstractAt enzyme concentrations above 40 nM the configuration of the purified plasma membrane Ca2+-...
Plasma-membrane Ca(2+)-ATPases expel Ca(2+) from the cytoplasm and are key regulators of Ca(2+) hom...
Plasma Membrane Calcium ATPases (PMCAs) are P-type pumps involved in calcium homeostasis. Their 3D s...
Plasma-membrane Ca$\mathrm{^{2+}}$-ATPases expel Ca$\mathrm{^{2+}}$ from the cytoplasm and are key r...
The plasma membrane Ca-pump (134 kDa) is stimulated by calmodulin and by other treatments (exposure ...
AbstractThe plasma membrane calcium-ATPase (PMCA) helps to control cytosolic calcium levels by pumpi...
Calcium-binding proteins, such as S-100, dimerize readily, and this phenomenon plays an important ro...
Thermal stability of plasma membrane Ca2+ pump was systematically studied in three micellar systems ...
Plasma-membrane Ca(2+)-ATPases expel Ca(2+) from the cytoplasm and are key regulators of Ca(2+) home...
Plasma-membrane Ca2+-ATPases expel Ca2+ from the cytoplasm and are key regulators of Ca2+ homeostasi...
Calmodulin (CaM) is a ubiquitously expressed calcium sensor that engages in regulatory interactions ...