Formation of the yeast F1F0-ATP synthase dimeric complex does not require the ATPase inhibitor protein, Inh1.
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Superfamily assignments for the yeast proteome through integration of structure prediction with the gene ontologyFunctional analysis of subunit e of the F1Fo-ATP synthase of the yeast Saccharomyces cerevisiae: importance of the N-terminal membrane anchor regionMitochondrial membrane potential is dependent on the oligomeric state of F1F0-ATP synthase supracomplexes.The STF2p hydrophilin from Saccharomyces cerevisiae is required for dehydration stress tolerance.Cyclophilin D modulates mitochondrial F0F1-ATP synthase by interacting with the lateral stalk of the complexNGFI-B targets mitochondria and induces cardiomyocyte apoptosis in restraint-stressed rats by mediating energy metabolism disorderStructure of dimeric mitochondrial ATP synthase: novel F0 bridging features and the structural basis of mitochondrial cristae biogenesis.Regulation of the H+-ATP synthase by IF1: a role in mitohormesis.Human F1F0 ATP synthase, mitochondrial ultrastructure and OXPHOS impairment: a (super-)complex matter?Atypical cristae morphology of human syncytiotrophoblast mitochondria: role for complex V.The Mitochondrial Permeability Transition Pore: Channel Formation by F-ATP Synthase, Integration in Signal Transduction, and Role in Pathophysiology.IF1, a natural inhibitor of mitochondrial ATP synthase, is not essential for the normal growth and breeding of miceRegulation of the F1F0-ATP synthase rotary nanomotor in its monomeric-bacterial and dimeric-mitochondrial formsMolecular mechanisms of cell death: central implication of ATP synthase in mitochondrial permeability transition.The oligomycin-sensitivity conferring protein of mitochondrial ATP synthase: emerging new roles in mitochondrial pathophysiologyReversible self-association of recombinant bovine factor B.Assessing actual contribution of IF1, inhibitor of mitochondrial FoF1, to ATP homeostasis, cell growth, mitochondrial morphology, and cell viability.The yeast F(1)F(0)-ATP synthase: analysis of the molecular organization of subunit g and the importance of a conserved GXXXG motif.Characterization of domain interfaces in monomeric and dimeric ATP synthase.Archetypal transcriptional blocks underpin yeast gene regulation in response to changes in growth conditions.
P2860
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P2860
Formation of the yeast F1F0-ATP synthase dimeric complex does not require the ATPase inhibitor protein, Inh1.
description
2002 nî lūn-bûn
@nan
2002 թուականի Հոկտեմբերին հրատարակուած գիտական յօդուած
@hyw
2002 թվականի հոտեմբերին հրատարակված գիտական հոդված
@hy
2002年の論文
@ja
2002年論文
@yue
2002年論文
@zh-hant
2002年論文
@zh-hk
2002年論文
@zh-mo
2002年論文
@zh-tw
2002年论文
@wuu
name
Formation of the yeast F1F0-AT ...... TPase inhibitor protein, Inh1.
@ast
Formation of the yeast F1F0-AT ...... TPase inhibitor protein, Inh1.
@en
Formation of the yeast F1F0-AT ...... TPase inhibitor protein, Inh1.
@nl
type
label
Formation of the yeast F1F0-AT ...... TPase inhibitor protein, Inh1.
@ast
Formation of the yeast F1F0-AT ...... TPase inhibitor protein, Inh1.
@en
Formation of the yeast F1F0-AT ...... TPase inhibitor protein, Inh1.
@nl
prefLabel
Formation of the yeast F1F0-AT ...... TPase inhibitor protein, Inh1.
@ast
Formation of the yeast F1F0-AT ...... TPase inhibitor protein, Inh1.
@en
Formation of the yeast F1F0-AT ...... TPase inhibitor protein, Inh1.
@nl
P2093
P2860
P356
P1476
Formation of the yeast F1F0-AT ...... TPase inhibitor protein, Inh1.
@en
P2093
Hermann Schagger
Kathy Pfeiffer
Mary Dienhart
Rosemary A Stuart
P2860
P304
P356
10.1074/JBC.M205720200
P407
P577
2002-10-18T00:00:00Z