The Nicotiana plumbaginifolia plasma membrane H(+)-ATPase isoform PMA2, equipped with a His(6) tag, was expressed in Saccharomyces cerevisiae and purified. Unexpectedly, a fraction of the purified tagged PMA2 associated with the two yeast 14-3-3 regulatory proteins, BMH1 and BMH2. This complex was formed in vivo without treatment with fusicoccin, a fungal toxin known to stabilize the equivalent complex in plants. When gel filtration chromatography was used to separate the free ATPase from the 14-3-3.H(+)-ATPase complex, the complexed ATPase was twice as active as the free form. Trypsin treatment of the complex released a smaller complex, composed of a 14-3-3 dimer and a fragment from the PMA2 C-terminal region. The latter was identified by ...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
The P-type plasma membrane H+-ATPases form a group of proteins only found in plants and fungi. The p...
Summary PMA2 and PMA4 are the most widely expressed plasma membrane H(+)-ATPases in Nicotiana plumba...
The plant plasma membrane H(+)-ATPase is regulated by an auto-inhibitory C-terminal domain that can ...
Accumulating evidence suggests that the H+-ATPase of the plant plasma membrane is activated by a dir...
Plant plasma membrane H+-ATPases (PMAs) can be activated by phosphorylation of their penultimate res...
The plasma membrane H+-ATPase uses the energy released by ATP hydrolysis to transport protons across...
The plant plasma membrane H+-ATPase couples ATP hydrolysis to the transport of protons out of the ce...
The major plant plasma membrane H(+)-ATPases fall into two gene categories, subfamilies I and II. Ho...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
Plant plasma membrane H(+)-ATPases are encoded by a family of about ten genes organized into five su...
The proton-pumping ATPase (H+-ATPase) of the plant plasma membrane is encoded by two major gene subf...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
Transport of many ions and metabolites in the plant cell depends on the plasma membrane H +-ATPase, ...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
The P-type plasma membrane H+-ATPases form a group of proteins only found in plants and fungi. The p...
Summary PMA2 and PMA4 are the most widely expressed plasma membrane H(+)-ATPases in Nicotiana plumba...
The plant plasma membrane H(+)-ATPase is regulated by an auto-inhibitory C-terminal domain that can ...
Accumulating evidence suggests that the H+-ATPase of the plant plasma membrane is activated by a dir...
Plant plasma membrane H+-ATPases (PMAs) can be activated by phosphorylation of their penultimate res...
The plasma membrane H+-ATPase uses the energy released by ATP hydrolysis to transport protons across...
The plant plasma membrane H+-ATPase couples ATP hydrolysis to the transport of protons out of the ce...
The major plant plasma membrane H(+)-ATPases fall into two gene categories, subfamilies I and II. Ho...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
Plant plasma membrane H(+)-ATPases are encoded by a family of about ten genes organized into five su...
The proton-pumping ATPase (H+-ATPase) of the plant plasma membrane is encoded by two major gene subf...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
Transport of many ions and metabolites in the plant cell depends on the plasma membrane H +-ATPase, ...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
The P-type plasma membrane H+-ATPases form a group of proteins only found in plants and fungi. The p...
Summary PMA2 and PMA4 are the most widely expressed plasma membrane H(+)-ATPases in Nicotiana plumba...