Structure of the vacuolar H+-ATPase rotary motor reveals new mechanistic insights
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Cryo-EM studies of the structure and dynamics of vacuolar-type ATPasesRotating with the brakes on and other unresolved features of the vacuolar ATPaseMembrane protein structures without crystals, by single particle electron cryomicroscopyElectron cryomicroscopy observation of rotational states in a eukaryotic V-ATPaseAffinity Purification and Structural Features of the Yeast Vacuolar ATPase Vo Membrane Sector.The changing landscape of membrane protein structural biology through developments in electron microscopy.Breaking up and making up: The secret life of the vacuolar H+ -ATPase.Methods to account for movement and flexibility in cryo-EM data processing.Relating proton pumps with gap junctions: colocalization of ductin, the channel-forming subunit c of V-ATPase, with subunit a and with innexins 2 and 3 during Drosophila oogenesis.Molecular Interactions and Cellular Itinerary of the Yeast RAVE (Regulator of the H+-ATPase of Vacuolar and Endosomal Membranes) ComplexMolecular basis for the binding and modulation of V-ATPase by a bacterial effector protein.Yeast V-ATPase Proteolipid Ring Acts as a Large-conductance Transmembrane Protein PoreAn introduction to sample preparation and imaging by cryo-electron microscopy for structural biology.Comparative molecular analyses of select pH- and osmoregulatory genes in three freshwater crayfish Cherax quadricarinatus, C. destructor and C. cainiiDisorders of lysosomal acidification-The emerging role of v-ATPase in aging and neurodegenerative disease.Control of lysosomal biogenesis and Notch-dependent tissue patterning by components of the TFEB-V-ATPase axis in Drosophila melanogaster.Characterization of the flexibility of the peripheral stalk of prokaryotic rotary A-ATPases by atomistic simulations.EPR Studies of V-ATPase with Spin-Labeled Inhibitors DCC and Archazolid: Interaction Dynamics with Proton Translocating Subunit c.Torque generation through the random movement of an asymmetric rotor: A potential rotational mechanism of the γ subunit of F(1)-ATPase.Approaches to altering particle distributions in cryo-electron microscopy sample preparation
P2860
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P2860
Structure of the vacuolar H+-ATPase rotary motor reveals new mechanistic insights
description
2015 nî lūn-bûn
@nan
2015年の論文
@ja
2015年論文
@yue
2015年論文
@zh-hant
2015年論文
@zh-hk
2015年論文
@zh-mo
2015年論文
@zh-tw
2015年论文
@wuu
2015年论文
@zh
2015年论文
@zh-cn
name
Structure of the vacuolar H+-ATPase rotary motor reveals new mechanistic insights
@en
Structure of the vacuolar H+-ATPase rotary motor reveals new mechanistic insights
@en-gb
type
label
Structure of the vacuolar H+-ATPase rotary motor reveals new mechanistic insights
@en
Structure of the vacuolar H+-ATPase rotary motor reveals new mechanistic insights
@en-gb
prefLabel
Structure of the vacuolar H+-ATPase rotary motor reveals new mechanistic insights
@en
Structure of the vacuolar H+-ATPase rotary motor reveals new mechanistic insights
@en-gb
P2093
P2860
P50
P1154
2-s2.0-84923923054
P1433
P1476
Structure of the vacuolar H+-ATPase rotary motor reveals new mechanistic insights
@en
P2093
Clair Phillips
Felix Tiburcy
Helmut Wieczorek
John Trinick
Markus Huss
P2860
P304
P356
10.1016/J.STR.2014.12.016
P5530
P577
2015-02-05T00:00:00Z
P5875
P6179
1010097916