In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene family. The presence within an organ of several isoforms prevents a detailed enzymatic characterization of individual H(+)-ATPases. We therefore used the yeast Saccharomyces cerevisiae as a heterologous host for the expression of PMA2, an H(+)-ATPase isoform of Nicotiana plumbaginifolia. Yeast transformed by the plant pma2 was still able to grow under conditions where the yeast ATPase gene (PMA1) was either repressed or deleted. The transformed yeast strain was resistant to hygromycin, and its growth was prevented when the medium pH was lowered to 5.0. The N. plumbaginifolia PMA2 expressed in S. cerevisiae has unusual low Km for ATP (23 microM) ...
Summary PMA2 and PMA4 are the most widely expressed plasma membrane H(+)-ATPases in Nicotiana plumba...
The plant plasma membrane H+-ATPase couples ATP hydrolysis to the transport of protons out of the ce...
The plant plasma membrane H(+)-ATPase is regulated by an auto-inhibitory C-terminal domain that can ...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
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...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
AbstractIn plants and fungi, the transport of solutes across the plasma membrane (pm) is driven by a...
The Nicotiana plumbaginifolia plasma membrane H(+)-ATPase isoform PMA2, equipped with a His(6) tag, ...
The plasma membrane H+-ATPase uses the energy released by ATP hydrolysis to transport protons across...
AbstractIn plants and fungi, the transport of solutes across the plasma membrane (pm) is driven by a...
Plant plasma membrane H(+)-ATPases are encoded by a family of about ten genes organized into five su...
The major plant plasma membrane H(+)-ATPases fall into two gene categories, subfamilies I and II. Ho...
AbstractThe proton-pumping ATPase (H+-ATPase) of the plant plasma membrane generates the proton moti...
The proton-pumping ATPase (H+-ATPase) of the plant plasma membrane generates the proton motive force...
Summary PMA2 and PMA4 are the most widely expressed plasma membrane H(+)-ATPases in Nicotiana plumba...
The plant plasma membrane H+-ATPase couples ATP hydrolysis to the transport of protons out of the ce...
The plant plasma membrane H(+)-ATPase is regulated by an auto-inhibitory C-terminal domain that can ...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
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...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
AbstractIn plants and fungi, the transport of solutes across the plasma membrane (pm) is driven by a...
The Nicotiana plumbaginifolia plasma membrane H(+)-ATPase isoform PMA2, equipped with a His(6) tag, ...
The plasma membrane H+-ATPase uses the energy released by ATP hydrolysis to transport protons across...
AbstractIn plants and fungi, the transport of solutes across the plasma membrane (pm) is driven by a...
Plant plasma membrane H(+)-ATPases are encoded by a family of about ten genes organized into five su...
The major plant plasma membrane H(+)-ATPases fall into two gene categories, subfamilies I and II. Ho...
AbstractThe proton-pumping ATPase (H+-ATPase) of the plant plasma membrane generates the proton moti...
The proton-pumping ATPase (H+-ATPase) of the plant plasma membrane generates the proton motive force...
Summary PMA2 and PMA4 are the most widely expressed plasma membrane H(+)-ATPases in Nicotiana plumba...
The plant plasma membrane H+-ATPase couples ATP hydrolysis to the transport of protons out of the ce...
The plant plasma membrane H(+)-ATPase is regulated by an auto-inhibitory C-terminal domain that can ...