AbstractMembrane-bound (Na+,K+)ATPase from avian nasal salt glands was exposed to limited papain digestion. Such treatment results in the selective removal of the β-subunit rendering the α-subunit still membrane-bound and expressing full enzymic activity. With further exposure to papain the α-chain becomes fragmented into two major polypeptide components. The fragmented membrane-bound catalytic chain is extremely sensitive to detergent treatment and cannot be solubilized in an active state
AbstractExposed regions of the α- and β-subunits of membrane-bound Na+,K+-ATPase were in turn hydrol...
AbstractThe transport function of the Na pump (Na,K-ATPase) in cellular ion homeostasis involves bot...
Na + , K + -ATPase plays a central role in the ionic and osmotic homeostasis of cells and in the mov...
AbstractMembrane-bound (Na+,K+)ATPase from avian nasal salt glands was exposed to limited papain dig...
AbstractMembrane-bound (Na,K)-ATPases were exposed to limited papain digestion. We could not find th...
AbstractIn the present investigation reconstitution of Na+,K+-ATPase increases the number of phospho...
AbstractThe Na+-stimulated ATPase activity of Streptococcus faecalis was lost by washing the membran...
AbstractIrreversible inactivation of membranous Na,K-ATPase by high-speed centrifugation in dilute a...
AbstractMembrane-bound Na,K-ATPase was digested with trypsin in the presence of Rb+ to form the stab...
AbstractPrimary Na+ transport has been essentially attributed to Na+/K+ pump. However, there are fun...
AbstractNa+,K+-ATPase is a heterodimer of α and β subunits and a member of the P-type ATPase family ...
AbstractPurified Na+,K+-ATPase is treated with trypsin. The altered enzyme is then reconstituted int...
AbstractPurified kidney Na+,K+-ATPase whose α-subunit is cleaved by chymotrypsin at Leu266-Ala267, l...
AbstractThe ability of ATP, CTP, ITP, GTP, UTP and two synthetic ATP analogs to provide for ouabain-...
AbstractTryptic cleavage has been a potential method for studying the structure and mechanism of man...
AbstractExposed regions of the α- and β-subunits of membrane-bound Na+,K+-ATPase were in turn hydrol...
AbstractThe transport function of the Na pump (Na,K-ATPase) in cellular ion homeostasis involves bot...
Na + , K + -ATPase plays a central role in the ionic and osmotic homeostasis of cells and in the mov...
AbstractMembrane-bound (Na+,K+)ATPase from avian nasal salt glands was exposed to limited papain dig...
AbstractMembrane-bound (Na,K)-ATPases were exposed to limited papain digestion. We could not find th...
AbstractIn the present investigation reconstitution of Na+,K+-ATPase increases the number of phospho...
AbstractThe Na+-stimulated ATPase activity of Streptococcus faecalis was lost by washing the membran...
AbstractIrreversible inactivation of membranous Na,K-ATPase by high-speed centrifugation in dilute a...
AbstractMembrane-bound Na,K-ATPase was digested with trypsin in the presence of Rb+ to form the stab...
AbstractPrimary Na+ transport has been essentially attributed to Na+/K+ pump. However, there are fun...
AbstractNa+,K+-ATPase is a heterodimer of α and β subunits and a member of the P-type ATPase family ...
AbstractPurified Na+,K+-ATPase is treated with trypsin. The altered enzyme is then reconstituted int...
AbstractPurified kidney Na+,K+-ATPase whose α-subunit is cleaved by chymotrypsin at Leu266-Ala267, l...
AbstractThe ability of ATP, CTP, ITP, GTP, UTP and two synthetic ATP analogs to provide for ouabain-...
AbstractTryptic cleavage has been a potential method for studying the structure and mechanism of man...
AbstractExposed regions of the α- and β-subunits of membrane-bound Na+,K+-ATPase were in turn hydrol...
AbstractThe transport function of the Na pump (Na,K-ATPase) in cellular ion homeostasis involves bot...
Na + , K + -ATPase plays a central role in the ionic and osmotic homeostasis of cells and in the mov...