Accumulating evidence suggests that the H+-ATPase of the plant plasma membrane is activated by a direct, reversible interaction with 14-3-3 proteins involving the displacement of the C-terminal autoinhibitory domain of the enzyme, The fungal phytotoxin fusicoccin (FC) appears to stabilize this H+-ATPase 14-3-3 complex, thus leading to a persistent activation of the H+-ATPase in vivo. In this study we show that functional replacement of the Saccharomyces cerevisiae H+-ATPase genes by a Nicotiana plumbaginifolia H+-ATPase (pma2) results in the generation of a high affinity fusicoccin binding site that is exceptionally abundant. Acquisition of FC binding capacity is accompanied by a significant increase in the amount of plasma membrane-associa...
14-3-3 proteins play a regulatory role in a diverse array of cellular functions such as apoptosis, r...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
The plasma membrane H+-ATPase uses the energy released by ATP hydrolysis to transport protons across...
The Nicotiana plumbaginifolia plasma membrane H(+)-ATPase isoform PMA2, equipped with a His(6) tag, ...
The plant plasma membrane H(+)-ATPase is regulated by an auto-inhibitory C-terminal domain that can ...
14-3-3 proteins play a regulatory role in a diverse array of cellular functions such as apoptosis, r...
14-3-3 proteins play a regulatory role in a diverse array of cellular functions such as apoptosis, r...
14-3-3 proteins play a regulatory role in a diverse array of cellular functions such as apoptosis, r...
14-3-3 proteins play a regulatory role in a diverse array of cellular functions such as apoptosis, r...
Plant plasma membrane H+-ATPases (PMAs) can be activated by phosphorylation of their penultimate res...
The P-type plasma membrane H+-ATPases form a group of proteins only found in plants and fungi. The p...
14-3-3 proteins play a regulatory role in a diverse array of cellular functions such as apoptosis, r...
The H+-ATPase is a key enzyme for the establishment and maintenance of plasma membrane potential and...
In this study, we report on mutational studies performed to investigate the mechanism of binding of ...
In this study, we report on mutational studies performed to investigate the mechanism of binding of ...
14-3-3 proteins play a regulatory role in a diverse array of cellular functions such as apoptosis, r...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
The plasma membrane H+-ATPase uses the energy released by ATP hydrolysis to transport protons across...
The Nicotiana plumbaginifolia plasma membrane H(+)-ATPase isoform PMA2, equipped with a His(6) tag, ...
The plant plasma membrane H(+)-ATPase is regulated by an auto-inhibitory C-terminal domain that can ...
14-3-3 proteins play a regulatory role in a diverse array of cellular functions such as apoptosis, r...
14-3-3 proteins play a regulatory role in a diverse array of cellular functions such as apoptosis, r...
14-3-3 proteins play a regulatory role in a diverse array of cellular functions such as apoptosis, r...
14-3-3 proteins play a regulatory role in a diverse array of cellular functions such as apoptosis, r...
Plant plasma membrane H+-ATPases (PMAs) can be activated by phosphorylation of their penultimate res...
The P-type plasma membrane H+-ATPases form a group of proteins only found in plants and fungi. The p...
14-3-3 proteins play a regulatory role in a diverse array of cellular functions such as apoptosis, r...
The H+-ATPase is a key enzyme for the establishment and maintenance of plasma membrane potential and...
In this study, we report on mutational studies performed to investigate the mechanism of binding of ...
In this study, we report on mutational studies performed to investigate the mechanism of binding of ...
14-3-3 proteins play a regulatory role in a diverse array of cellular functions such as apoptosis, r...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
The plasma membrane H+-ATPase uses the energy released by ATP hydrolysis to transport protons across...