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- EMDB-25999: V1 complex lacking subunit C from Saccharomyces cerevisiae, State 3 -
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Open data
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Basic information
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Title | V1 complex lacking subunit C from Saccharomyces cerevisiae, State 3 | |||||||||
![]() | V1 without subunit C, State 3 | |||||||||
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![]() | HYDROLASE | |||||||||
Function / homology | ![]() proton-transporting V-type ATPase, V1 domain / Insulin receptor recycling / Transferrin endocytosis and recycling / ROS and RNS production in phagocytes / Amino acids regulate mTORC1 / Golgi lumen acidification / proton-transporting two-sector ATPase complex, catalytic domain / vacuolar proton-transporting V-type ATPase, V1 domain / endosomal lumen acidification / vacuolar proton-transporting V-type ATPase complex ...proton-transporting V-type ATPase, V1 domain / Insulin receptor recycling / Transferrin endocytosis and recycling / ROS and RNS production in phagocytes / Amino acids regulate mTORC1 / Golgi lumen acidification / proton-transporting two-sector ATPase complex, catalytic domain / vacuolar proton-transporting V-type ATPase, V1 domain / endosomal lumen acidification / vacuolar proton-transporting V-type ATPase complex / vacuolar acidification / proton-transporting V-type ATPase complex / fungal-type vacuole membrane / ATP metabolic process / proton-transporting ATPase activity, rotational mechanism / proton transmembrane transport / Golgi membrane / ATP binding Similarity search - Function | |||||||||
Biological species | ![]() ![]() | |||||||||
Method | single particle reconstruction / cryo EM / Resolution: 3.3 Å | |||||||||
![]() | Vasanthakumar T / Keon KA | |||||||||
Funding support | ![]()
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![]() | ![]() Title: Coordinated conformational changes in the V complex during V-ATPase reversible dissociation. Authors: Thamiya Vasanthakumar / Kristine A Keon / Stephanie A Bueler / Michael C Jaskolka / John L Rubinstein / ![]() ![]() Abstract: Vacuolar-type ATPases (V-ATPases) are rotary enzymes that acidify intracellular compartments in eukaryotic cells. These multi-subunit complexes consist of a cytoplasmic V region that hydrolyzes ATP ...Vacuolar-type ATPases (V-ATPases) are rotary enzymes that acidify intracellular compartments in eukaryotic cells. These multi-subunit complexes consist of a cytoplasmic V region that hydrolyzes ATP and a membrane-embedded V region that transports protons. V-ATPase activity is regulated by reversible dissociation of the two regions, with the isolated V and V complexes becoming autoinhibited on disassembly and subunit C subsequently detaching from V. In yeast, assembly of the V and V regions is mediated by the regulator of the ATPase of vacuoles and endosomes (RAVE) complex through an unknown mechanism. We used cryogenic-electron microscopy of yeast V-ATPase to determine structures of the intact enzyme, the dissociated but complete V complex and the V complex lacking subunit C. On separation, V undergoes a dramatic conformational rearrangement, with its rotational state becoming incompatible for reassembly with V. Loss of subunit C allows V to match the rotational state of V, suggesting how RAVE could reassemble V and V by recruiting subunit C. | |||||||||
History |
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Structure visualization
Supplemental images |
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Downloads & links
-EMDB archive
Map data | ![]() | 6.6 MB | ![]() | |
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Header (meta data) | ![]() ![]() | 18.6 KB 18.6 KB | Display Display | ![]() |
Images | ![]() | 107.9 KB | ||
Filedesc metadata | ![]() | 6.8 KB | ||
Archive directory | ![]() ![]() | HTTPS FTP |
-Validation report
Summary document | ![]() | 352.5 KB | Display | ![]() |
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Full document | ![]() | 352 KB | Display | |
Data in XML | ![]() | 7.3 KB | Display | |
Data in CIF | ![]() | 8.3 KB | Display | |
Arichive directory | ![]() ![]() | HTTPS FTP |
-Related structure data
Related structure data | ![]() 7tmqMC ![]() 7tmmC ![]() 7tmoC ![]() 7tmpC ![]() 7tmrC ![]() 7tmsC ![]() 7tmtC C: citing same article ( M: atomic model generated by this map |
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Similar structure data | Similarity search - Function & homology ![]() |
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Links
EMDB pages | ![]() ![]() |
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Related items in Molecule of the Month |
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Map
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Annotation | V1 without subunit C, State 3 | ||||||||||||||||||||||||||||||||||||
Projections & slices | Image control
Images are generated by Spider. | ||||||||||||||||||||||||||||||||||||
Voxel size | X=Y=Z: 1.03 Å | ||||||||||||||||||||||||||||||||||||
Density |
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Symmetry | Space group: 1 | ||||||||||||||||||||||||||||||||||||
Details | EMDB XML:
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-Supplemental data
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Sample components
+Entire : V1 complex without subunit C, State 3
+Supramolecule #1: V1 complex without subunit C, State 3
+Macromolecule #1: H(+)-transporting two-sector ATPase
+Macromolecule #2: Vacuolar proton pump subunit B
+Macromolecule #3: V-type proton ATPase subunit E
+Macromolecule #4: V-type proton ATPase subunit G
+Macromolecule #5: V-type proton ATPase subunit D
+Macromolecule #6: V-type proton ATPase subunit F
+Macromolecule #7: V-type proton ATPase subunit H
+Macromolecule #8: MAGNESIUM ION
+Macromolecule #9: ADENOSINE-5'-DIPHOSPHATE
-Experimental details
-Structure determination
Method | cryo EM |
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![]() | single particle reconstruction |
Aggregation state | particle |
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Sample preparation
Buffer | pH: 7.4 |
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Vitrification | Cryogen name: ETHANE-PROPANE |
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Electron microscopy
Microscope | TFS KRIOS |
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Image recording | Film or detector model: FEI FALCON IV (4k x 4k) / Average electron dose: 41.0 e/Å2 |
Electron beam | Acceleration voltage: 300 kV / Electron source: ![]() |
Electron optics | Illumination mode: FLOOD BEAM / Imaging mode: BRIGHT FIELD / Nominal defocus max: 2.0 µm / Nominal defocus min: 0.5 µm |
Experimental equipment | ![]() Model: Titan Krios / Image courtesy: FEI Company |
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Image processing
Startup model | Type of model: NONE |
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Final reconstruction | Resolution.type: BY AUTHOR / Resolution: 3.3 Å / Resolution method: FSC 0.143 CUT-OFF / Number images used: 156541 |
Initial angle assignment | Type: MAXIMUM LIKELIHOOD |
Final angle assignment | Type: MAXIMUM LIKELIHOOD |