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Open data
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Basic information
| Entry | Database: PDB / ID: 7ux2 | ||||||
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| Title | cryo-EM structure of the Raptor-TFEB-Rag-Ragulator complex | ||||||
 Components | 
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 Keywords | SIGNALING PROTEIN / mTORC1 / TFEB / Lysosome biogenesis / Autophagy | ||||||
| Function / homology |  Function and homology informationregulation of cholesterol import / positive regulation of protein localization to lysosome / regulation of cell-substrate junction organization / Gtr1-Gtr2 GTPase complex / regulation of cholesterol efflux / FNIP-folliculin RagC/D GAP / Ragulator complex / protein localization to cell junction / positive regulation of pentose-phosphate shunt / antibacterial innate immune response ...regulation of cholesterol import / positive regulation of protein localization to lysosome / regulation of cell-substrate junction organization / Gtr1-Gtr2 GTPase complex / regulation of cholesterol efflux / FNIP-folliculin RagC/D GAP / Ragulator complex / protein localization to cell junction / positive regulation of pentose-phosphate shunt / antibacterial innate immune response / regulation of TORC1 signaling / protein localization to lysosome / TORC1 complex / positive regulation of odontoblast differentiation / regulation of TOR signaling / regulation of lysosome organization / MTOR signalling / fibroblast migration / cellular response to L-leucine / Amino acids regulate mTORC1 / lysosome localization / Energy dependent regulation of mTOR by LKB1-AMPK / endosome organization / TORC1 signaling / serine/threonine protein kinase complex / positive regulation of osteoclast differentiation / kinase activator activity / cellular response to osmotic stress / protein localization to membrane / endosomal transport / positive regulation of transcription by RNA polymerase III / azurophil granule membrane / lysosome organization / small GTPase-mediated signal transduction / Macroautophagy / regulation of cell size / RHOJ GTPase cycle / RHOQ GTPase cycle / TOR signaling / mTORC1-mediated signalling / humoral immune response / CDC42 GTPase cycle / tertiary granule membrane / RHOH GTPase cycle / ficolin-1-rich granule membrane / RHOG GTPase cycle / protein serine/threonine kinase inhibitor activity / regulation of receptor recycling / social behavior / protein kinase activator activity / RAC2 GTPase cycle / HSF1-dependent transactivation / positive regulation of TOR signaling / RAC3 GTPase cycle / enzyme-substrate adaptor activity / positive regulation of G1/S transition of mitotic cell cycle / embryonic placenta development / response to amino acid / positive regulation of lipid biosynthetic process / cellular response to nutrient levels / specific granule membrane / protein-membrane adaptor activity / 14-3-3 protein binding / positive regulation of endothelial cell proliferation / RAC1 GTPase cycle / positive regulation of TORC1 signaling / positive regulation of autophagy / Transcriptional and post-translational regulation of MITF-M expression and activity / negative regulation of autophagy / cellular response to amino acid starvation / RNA splicing / guanyl-nucleotide exchange factor activity / viral genome replication / cholesterol homeostasis / positive regulation of glycolytic process / cellular response to starvation / Regulation of PTEN gene transcription / tumor necrosis factor-mediated signaling pathway / positive regulation of interleukin-8 production / TP53 Regulates Metabolic Genes / cellular response to amino acid stimulus / cellular response to glucose stimulus / phosphoprotein binding / regulation of cell growth / MAP2K and MAPK activation / small GTPase binding / autophagy / positive regulation of protein localization to nucleus / response to virus / cytoplasmic stress granule / sequence-specific double-stranded DNA binding / GDP binding / late endosome membrane / intracellular protein localization / late endosome / glucose homeostasis / E3 ubiquitin ligases ubiquitinate target proteins / GTPase binding / positive regulation of cell growth / DNA-binding transcription activator activity, RNA polymerase II-specific Similarity search - Function  | ||||||
| Biological species |  Homo sapiens (human) | ||||||
| Method | ELECTRON MICROSCOPY / single particle reconstruction / cryo EM / Resolution: 2.9 Å | ||||||
 Authors | Cui, Z. / Hurley, J. | ||||||
| Funding support |   United States, 1items 
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 Citation |  Journal: Nature / Year: 2023Title: Structure of the lysosomal mTORC1-TFEB-Rag-Ragulator megacomplex. Authors: Zhicheng Cui / Gennaro Napolitano / Mariana E G de Araujo / Alessandra Esposito / Jlenia Monfregola / Lukas A Huber / Andrea Ballabio / James H Hurley /     ![]() Abstract: The transcription factor TFEB is a master regulator of lysosomal biogenesis and autophagy. The phosphorylation of TFEB by the mechanistic target of rapamycin complex 1 (mTORC1) is unique in its ...The transcription factor TFEB is a master regulator of lysosomal biogenesis and autophagy. The phosphorylation of TFEB by the mechanistic target of rapamycin complex 1 (mTORC1) is unique in its mTORC1 substrate recruitment mechanism, which is strictly dependent on the amino acid-mediated activation of the RagC GTPase activating protein FLCN. TFEB lacks the TOR signalling motif responsible for the recruitment of other mTORC1 substrates. We used cryogenic-electron microscopy to determine the structure of TFEB as presented to mTORC1 for phosphorylation, which we refer to as the 'megacomplex'. Two full Rag-Ragulator complexes present each molecule of TFEB to the mTOR active site. One Rag-Ragulator complex is bound to Raptor in the canonical mode seen previously in the absence of TFEB. A second Rag-Ragulator complex (non-canonical) docks onto the first through a RagC GDP-dependent contact with the second Ragulator complex. The non-canonical Rag dimer binds the first helix of TFEB with a RagC-dependent aspartate clamp in the cleft between the Rag G domains. In cellulo mutation of the clamp drives TFEB constitutively into the nucleus while having no effect on mTORC1 localization. The remainder of the 108-amino acid TFEB docking domain winds around Raptor and then back to RagA. The double use of RagC GDP contacts in both Rag dimers explains the strong dependence of TFEB phosphorylation on FLCN and the RagC GDP state.  | ||||||
| History | 
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Structure visualization
| Structure viewer | Molecule:  Molmil Jmol/JSmol | 
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Downloads & links
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Download
| PDBx/mmCIF format |  7ux2.cif.gz | 1.1 MB | Display |  PDBx/mmCIF format | 
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| PDB format |  pdb7ux2.ent.gz | 940.3 KB | Display |  PDB format | 
| PDBx/mmJSON format |  7ux2.json.gz | Tree view |  PDBx/mmJSON format | |
| Others |  Other downloads | 
-Validation report
| Summary document |  7ux2_validation.pdf.gz | 1.2 MB | Display |  wwPDB validaton report | 
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| Full document |  7ux2_full_validation.pdf.gz | 1.2 MB | Display | |
| Data in XML |  7ux2_validation.xml.gz | 86.7 KB | Display | |
| Data in CIF |  7ux2_validation.cif.gz | 133.2 KB | Display | |
| Arichive directory |  https://data.pdbj.org/pub/pdb/validation_reports/ux/7ux2 ftp://data.pdbj.org/pub/pdb/validation_reports/ux/7ux2 | HTTPS FTP  | 
-Related structure data
| Related structure data | ![]() 26846MC ![]() 7uxcC ![]() 7uxhC C: citing same article ( M: map data used to model this data  | 
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| Similar structure data | Similarity search - Function & homology  F&H Search | 
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Links
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Assembly
| Deposited unit | ![]() 
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| 1 | 
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Components
-Protein , 2 types, 2 molecules AP 
| #1: Protein |   Mass: 149200.016 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.)  Homo sapiens (human) / Gene: RPTOR, KIAA1303, RAPTOR / Production host:  Homo sapiens (human) / References: UniProt: Q8N122 | 
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| #9: Protein |   Mass: 52926.621 Da / Num. of mol.: 1 Source method: isolated from a genetically manipulated source Source: (gene. exp.)  Homo sapiens (human) / Gene: TFEB, BHLHE35 / Production host: ![]()  | 
-Ras-related GTP-binding protein  ... , 2 types, 4 molecules BICJ   
| #2: Protein | Mass: 36600.195 Da / Num. of mol.: 2 Source method: isolated from a genetically manipulated source Source: (gene. exp.)  Homo sapiens (human) / Gene: RRAGA / Production host:  Homo sapiens (human)References: UniProt: Q7L523, Hydrolases; Acting on acid anhydrides; Acting on GTP to facilitate cellular and subcellular movement #3: Protein | Mass: 44298.859 Da / Num. of mol.: 2 / Mutation: S75N Source method: isolated from a genetically manipulated source Source: (gene. exp.)  Homo sapiens (human) / Gene: RRAGC / Production host:  Homo sapiens (human) / References: UniProt: Q9HB90 | 
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-Ragulator complex protein  ... , 5 types, 10 molecules DKELFMGNHO         
| #4: Protein | Mass: 17762.775 Da / Num. of mol.: 2 Source method: isolated from a genetically manipulated source Source: (gene. exp.)  Homo sapiens (human) / Gene: LAMTOR1, C11orf59, PDRO, PP7157 / Production host: ![]() #5: Protein | Mass: 13517.450 Da / Num. of mol.: 2 Source method: isolated from a genetically manipulated source Source: (gene. exp.)  Homo sapiens (human) / Gene: LAMTOR2, MAPBPIP, ROBLD3, HSPC003 / Production host: ![]() #6: Protein | Mass: 13637.678 Da / Num. of mol.: 2 Source method: isolated from a genetically manipulated source Source: (gene. exp.)  Homo sapiens (human) / Gene: LAMTOR3, MAP2K1IP1, MAPKSP1, PRO2783 / Production host: ![]() #7: Protein | Mass: 10753.236 Da / Num. of mol.: 2 Source method: isolated from a genetically manipulated source Source: (gene. exp.)  Homo sapiens (human) / Gene: LAMTOR4, C7orf59 / Production host: ![]() #8: Protein | Mass: 9622.900 Da / Num. of mol.: 2 Source method: isolated from a genetically manipulated source Source: (gene. exp.)  Homo sapiens (human) / Gene: LAMTOR5, HBXIP, XIP / Production host: ![]()  | 
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-Non-polymers , 3 types, 6 molecules 




| #10: Chemical | | #11: Chemical | #12: Chemical |  | 
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-Details
| Has ligand of interest | N | 
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-Experimental details
-Experiment
| Experiment | Method: ELECTRON MICROSCOPY | 
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| EM experiment | Aggregation state: PARTICLE / 3D reconstruction method: single particle reconstruction | 
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Sample preparation
| Component | Name: The Raptor-TFEB-Rag-Ragulator complex / Type: COMPLEX / Entity ID: #1-#9 / Source: MULTIPLE SOURCES | 
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| Buffer solution | pH: 7.4 | 
| Specimen | Embedding applied: NO / Shadowing applied: NO / Staining applied: NO / Vitrification applied: YES | 
| Specimen support | Grid material: COPPER / Grid mesh size: 300 divisions/in. / Grid type: C-flat-2/1 | 
| Vitrification | Cryogen name: ETHANE | 
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Electron microscopy imaging
| Experimental equipment | ![]() Model: Titan Krios / Image courtesy: FEI Company  | 
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| Microscopy | Model: FEI TITAN KRIOS | 
| Electron gun | Electron source:  FIELD EMISSION GUN / Accelerating voltage: 300 kV / Illumination mode: FLOOD BEAM | 
| Electron lens | Mode: BRIGHT FIELD / Nominal defocus max: 2200 nm / Nominal defocus min: 800 nm | 
| Image recording | Electron dose: 50 e/Å2 / Film or detector model: GATAN K3 BIOQUANTUM (6k x 4k) | 
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Processing
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| CTF correction | Type: PHASE FLIPPING AND AMPLITUDE CORRECTION | ||||||||||||||||||||||||
| 3D reconstruction | Resolution: 2.9 Å / Resolution method: FSC 0.143 CUT-OFF / Num. of particles: 377569 / Symmetry type: POINT | ||||||||||||||||||||||||
| Atomic model building | Protocol: AB INITIO MODEL / Space: REAL | ||||||||||||||||||||||||
| Refinement | Cross valid method: NONE Stereochemistry target values: GeoStd + Monomer Library + CDL v1.2  | ||||||||||||||||||||||||
| Displacement parameters | Biso mean: 34.77 Å2 | ||||||||||||||||||||||||
| Refine LS restraints | 
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About Yorodumi




Homo sapiens (human)
United States, 1items 
Citation
 










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FIELD EMISSION GUN