cDNA clones from Nicotiana plumbaginifolia have been isolated by hybridization to a yeast H+-ATPase gene. The largest one encodes a polypeptide (PMA2) of 956 amino acid residues which exhibits a homology of 73% with a limited protein sequence obtained from purified oat plasma membrane H+-ATPase (Schaller and Sussman, Plant Physiol. 86, 512-516, 1988) and an 82% homology with the Arabidopsis thaliana pma gene (Harper et al., Proc. Natl. Acad. Sci. USA 86, 1234-1238). It is therefore concluded that the N. plumbaginifolia pma2 gene encodes a plasma membrane H+-ATPase. Southern blot hybridization indicates that the plant pma2 gene belongs to a multigene family. Partial sequences of cDNA clones show that at least three pma genes are expressed in...
AbstractMetal-transporting P-type ATPases were recently proposed to constitute a newly emerged sub-f...
The proton-pumping ATPase (H+-ATPase) of the plant plasma membrane is encoded by two major gene subf...
The proton-pumping ATPase (H+-ATPase) of the plant plasma membrane generates the proton motive force...
Genomic and cDNA clones for the three members of a gene subfamily (pma) encoding a plasma membrane H...
The plasma membrane H+-ATPase couples ATP hydrolysis to proton transport, thereby establishing the d...
Plant plasma membrane H(+)-ATPases are encoded by a family of about ten genes organized into five su...
The plasma membrane H+-ATPase uses the energy released by ATP hydrolysis to transport protons across...
The major plant plasma membrane H(+)-ATPases fall into two gene categories, subfamilies I and II. Ho...
To analyze in detail the multigene family encoding the plasma-membrane H(+)-ATPase (pma) in Nicotian...
AbstractIn plants and fungi, the transport of solutes across the plasma membrane (pm) is driven by a...
In Nicotiana plumbaginifolia, plasma membrane H(+)-ATPases (PMAs) are encoded by a gene family of ni...
Summary PMA2 and PMA4 are the most widely expressed plasma membrane H(+)-ATPases in Nicotiana plumba...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
A gene (aha9) for a plasma membrane H(+)-ATPase was isolated from an Arabidopsis thaliana genomic li...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
AbstractMetal-transporting P-type ATPases were recently proposed to constitute a newly emerged sub-f...
The proton-pumping ATPase (H+-ATPase) of the plant plasma membrane is encoded by two major gene subf...
The proton-pumping ATPase (H+-ATPase) of the plant plasma membrane generates the proton motive force...
Genomic and cDNA clones for the three members of a gene subfamily (pma) encoding a plasma membrane H...
The plasma membrane H+-ATPase couples ATP hydrolysis to proton transport, thereby establishing the d...
Plant plasma membrane H(+)-ATPases are encoded by a family of about ten genes organized into five su...
The plasma membrane H+-ATPase uses the energy released by ATP hydrolysis to transport protons across...
The major plant plasma membrane H(+)-ATPases fall into two gene categories, subfamilies I and II. Ho...
To analyze in detail the multigene family encoding the plasma-membrane H(+)-ATPase (pma) in Nicotian...
AbstractIn plants and fungi, the transport of solutes across the plasma membrane (pm) is driven by a...
In Nicotiana plumbaginifolia, plasma membrane H(+)-ATPases (PMAs) are encoded by a gene family of ni...
Summary PMA2 and PMA4 are the most widely expressed plasma membrane H(+)-ATPases in Nicotiana plumba...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
A gene (aha9) for a plasma membrane H(+)-ATPase was isolated from an Arabidopsis thaliana genomic li...
In plants, the proton pump-ATPase (H(+)-ATPase) of the plasma membrane is encoded by a multigene fam...
AbstractMetal-transporting P-type ATPases were recently proposed to constitute a newly emerged sub-f...
The proton-pumping ATPase (H+-ATPase) of the plant plasma membrane is encoded by two major gene subf...
The proton-pumping ATPase (H+-ATPase) of the plant plasma membrane generates the proton motive force...