Building the stator of the yeast vacuolar-ATPase: specific interaction between subunits E and G.
about
Structure of the yeast vacuolar ATPaseThe E and G subunits of the yeast V-ATPase interact tightly and are both present at more than one copy per V1 complex.Stoichiometry of the peripheral stalk subunits E and G of yeast V1-ATPase determined by mass spectrometryThe stator complex of the A1A0-ATP synthase--structural characterization of the E and H subunits.Mapping of C-termini of V-ATPase subunits by in vivo-FRET measurements.Inhibition of osteoclast bone resorption by disrupting vacuolar H+-ATPase a3-B2 subunit interaction.Regulation and isoform function of the V-ATPases.Domain characterization and interaction of the yeast vacuolar ATPase subunit C with the peripheral stator stalk subunits E and G.Novel mitochondrial mutations in the ATP6 and ATP8 genes in patients with breast cancerStructural and functional separation of the N- and C-terminal domains of the yeast V-ATPase subunit H.Evolutionary links between FliH/YscL-like proteins from bacterial type III secretion systems and second-stalk components of the FoF1 and vacuolar ATPases.Molecular characterization and serological reactivity of a vacuolar ATP synthase subunit ε-like protein from Clonorchis sinensis.The emerging structure of vacuolar ATPases.Function, structure and regulation of the vacuolar (H+)-ATPases.Glu-44 in the amino-terminal α-helix of yeast vacuolar ATPase E subunit (Vma4p) has a role for VoV1 assemblyStructural divergence of the rotary ATPases.Chemical screening identifies ATM as a target for alleviating senescence.Binding interactions of the peripheral stalk subunit isoforms from human V-ATPase.Transcript level regulation of the vacuolar H(+)-ATPase subunit isoforms VHA-a, VHA-E and VHA-G in Arabidopsis thaliana.Interaction of the Thermoplasma acidophilum A1A0-ATP synthase peripheral stalk with the catalytic domain.Domain architecture of the stator complex of the A1A0-ATP synthase from Thermoplasma acidophilum.Interaction and stoichiometry of the peripheral stalk subunits NtpE and NtpF and the N-terminal hydrophilic domain of NtpI of Enterococcus hirae V-ATPase.Mutational analysis of the stator subunit E of the yeast V-ATPase.A site-directed cross-linking approach to the characterization of subunit E-subunit G contacts in the vacuolar H+-ATPase stator.
P2860
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P2860
Building the stator of the yeast vacuolar-ATPase: specific interaction between subunits E and G.
description
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name
Building the stator of the yea ...... tion between subunits E and G.
@en
Building the stator of the yea ...... tion between subunits E and G.
@nl
type
label
Building the stator of the yea ...... tion between subunits E and G.
@en
Building the stator of the yea ...... tion between subunits E and G.
@nl
prefLabel
Building the stator of the yea ...... tion between subunits E and G.
@en
Building the stator of the yea ...... tion between subunits E and G.
@nl
P2093
P2860
P50
P356
P1476
Building the stator of the yea ...... tion between subunits E and G.
@en
P2093
Anja Seybert
Arie Geerlof
James Féthière
Meikel Diepholz
P2860
P304
40670-40676
P356
10.1074/JBC.M407086200
P407
P577
2004-08-02T00:00:00Z