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Open data
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Basic information
| Entry | ![]() | |||||||||||||||
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| Title | Structure of DOCK6-Rac1 complex | |||||||||||||||
Map data | postprocess map | |||||||||||||||
Sample |
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Keywords | DOCK / GEF / Rho / small GTPase / Rac / Cdc42 / SIGNALING PROTEIN | |||||||||||||||
| Function / homology | Function and homology informationregulation of respiratory burst / positive regulation of ovarian follicle development / regulation of neutrophil migration / negative regulation of interleukin-23 production / Activated NTRK2 signals through CDK5 / ruffle assembly / localization within membrane / kinocilium / regulation of cell adhesion involved in heart morphogenesis / NTRK2 activates RAC1 ...regulation of respiratory burst / positive regulation of ovarian follicle development / regulation of neutrophil migration / negative regulation of interleukin-23 production / Activated NTRK2 signals through CDK5 / ruffle assembly / localization within membrane / kinocilium / regulation of cell adhesion involved in heart morphogenesis / NTRK2 activates RAC1 / NADPH oxidase complex / Inactivation of CDC42 and RAC1 / regulation of hydrogen peroxide metabolic process / engulfment of apoptotic cell / WNT5:FZD7-mediated leishmania damping / SEMA3A-Plexin repulsion signaling by inhibiting Integrin adhesion / cortical cytoskeleton organization / cell projection assembly / respiratory burst / motor neuron axon guidance / ruffle organization / midbrain dopaminergic neuron differentiation / positive regulation of bicellular tight junction assembly / GTP-dependent protein binding / regulation of Rho protein signal transduction / negative regulation of fibroblast migration / thioesterase binding / regulation of stress fiber assembly / regulation of lamellipodium assembly / RHO GTPases activate CIT / Nef and signal transduction / Activation of RAC1 / PCP/CE pathway / hepatocyte growth factor receptor signaling pathway / sphingosine-1-phosphate receptor signaling pathway / RHO GTPases activate KTN1 / superoxide anion generation / DCC mediated attractive signaling / MET activates RAP1 and RAC1 / regulation of nitric oxide biosynthetic process / Azathioprine ADME / Sema4D mediated inhibition of cell attachment and migration / forebrain development / CD28 dependent Vav1 pathway / Ephrin signaling / positive regulation of neutrophil chemotaxis / positive regulation of ruffle assembly / Wnt signaling pathway, planar cell polarity pathway / lamellipodium assembly / regulation of receptor signaling pathway via JAK-STAT / NRAGE signals death through JNK / Rho GDP-dissociation inhibitor binding / Activation of RAC1 downstream of NMDARs / small GTPase-mediated signal transduction / positive regulation of Rho protein signal transduction / pericentriolar material / establishment or maintenance of cell polarity / Rac protein signal transduction / CDC42 GTPase cycle / RHO GTPases activate PAKs / semaphorin-plexin signaling pathway / Sema3A PAK dependent Axon repulsion / EPH-ephrin mediated repulsion of cells / ficolin-1-rich granule membrane / regulation of postsynapse assembly / positive regulation of focal adhesion assembly / RHO GTPases Activate NADPH Oxidases / regulation of synaptic vesicle endocytosis / anatomical structure morphogenesis / RHO GTPases Activate WASPs and WAVEs / positive regulation of lamellipodium assembly / RHO GTPases activate IQGAPs / positive regulation of stress fiber assembly / RHO GTPases activate PKNs / GPVI-mediated activation cascade / substrate adhesion-dependent cell spreading / PTK6 Regulates RHO GTPases, RAS GTPase and MAP kinases / phagocytic cup / cell projection / positive regulation of substrate adhesion-dependent cell spreading / actin filament polymerization / RAC1 GTPase cycle / cell-matrix adhesion / EPHB-mediated forward signaling / regulation of cell migration / positive regulation of endothelial cell migration / guanyl-nucleotide exchange factor activity / secretory granule membrane / actin filament organization / positive regulation of insulin secretion involved in cellular response to glucose stimulus / Signal transduction by L1 / VEGFR2 mediated vascular permeability / regulation of actin cytoskeleton organization / small monomeric GTPase / FCGR3A-mediated phagocytosis / cell motility / Translocation of SLC2A4 (GLUT4) to the plasma membrane / cell chemotaxis / FCERI mediated MAPK activation / trans-Golgi network Similarity search - Function | |||||||||||||||
| Biological species | Homo sapiens (human) | |||||||||||||||
| Method | single particle reconstruction / cryo EM / Resolution: 5.32 Å | |||||||||||||||
Authors | Kukimoto-Niino M / Katsura K / Ishizuka-Katsura Y / Yonemochi M / Hanada K / Shirouzu M | |||||||||||||||
| Funding support | Japan, 4 items
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Citation | Journal: To Be PublishedTitle: Structural basis for auto-inhibition of the Rac1/Cdc42 guanine nucleotide exchange factor DOCK6 by oligomer formation Authors: Kukimoto-Niino M / Katsura K / Yoshimura K / Ishizuka-Katsura Y / Miyamoto Y / Yonemochi M / Hanada K / Yamauchi J / Wong RW / Shirouzu M | |||||||||||||||
| History |
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Structure visualization
| Supplemental images |
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Downloads & links
-EMDB archive
| Map data | emd_65177.map.gz | 140 MB | EMDB map data format | |
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| Header (meta data) | emd-65177-v30.xml emd-65177.xml | 21.2 KB 21.2 KB | Display Display | EMDB header |
| FSC (resolution estimation) | emd_65177_fsc.xml | 12.1 KB | Display | FSC data file |
| Images | emd_65177.png | 78.1 KB | ||
| Filedesc metadata | emd-65177.cif.gz | 7.3 KB | ||
| Others | emd_65177_half_map_1.map.gz emd_65177_half_map_2.map.gz | 116.6 MB 116.6 MB | ||
| Archive directory | http://ftp.pdbj.org/pub/emdb/structures/EMD-65177 ftp://ftp.pdbj.org/pub/emdb/structures/EMD-65177 | HTTPS FTP |
-Related structure data
| Related structure data | ![]() 9vm5MC ![]() 9vm2C ![]() 9vm3C ![]() 9vm4C ![]() 9vm6C ![]() 9vm7C ![]() 9vm8C C: citing same article ( M: atomic model generated by this map |
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| Similar structure data | Similarity search - Function & homology F&H Search |
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Links
| EMDB pages | EMDB (EBI/PDBe) / EMDataResource |
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| Related items in Molecule of the Month |
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Map
| File | Download / File: emd_65177.map.gz / Format: CCP4 / Size: 149.9 MB / Type: IMAGE STORED AS FLOATING POINT NUMBER (4 BYTES) | ||||||||||||||||||||||||||||||||||||
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| Annotation | postprocess map | ||||||||||||||||||||||||||||||||||||
| Projections & slices | Image control
Images are generated by Spider. | ||||||||||||||||||||||||||||||||||||
| Voxel size | X=Y=Z: 1.33 Å | ||||||||||||||||||||||||||||||||||||
| Density |
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| Symmetry | Space group: 1 | ||||||||||||||||||||||||||||||||||||
| Details | EMDB XML:
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-Supplemental data
-Half map: half1 map
| File | emd_65177_half_map_1.map | ||||||||||||
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| Annotation | half1 map | ||||||||||||
| Projections & Slices |
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| Density Histograms |
-Half map: half2 map
| File | emd_65177_half_map_2.map | ||||||||||||
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| Annotation | half2 map | ||||||||||||
| Projections & Slices |
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| Density Histograms |
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Sample components
-Entire : Binary complex of DOCK6 with Rac1
| Entire | Name: Binary complex of DOCK6 with Rac1 |
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| Components |
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-Supramolecule #1: Binary complex of DOCK6 with Rac1
| Supramolecule | Name: Binary complex of DOCK6 with Rac1 / type: complex / ID: 1 / Parent: 0 / Macromolecule list: all |
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| Source (natural) | Organism: Homo sapiens (human) |
-Macromolecule #1: Dedicator of cytokinesis protein 6
| Macromolecule | Name: Dedicator of cytokinesis protein 6 / type: protein_or_peptide / ID: 1 / Number of copies: 2 / Enantiomer: LEVO |
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| Source (natural) | Organism: Homo sapiens (human) |
| Molecular weight | Theoretical: 230.265312 KDa |
| Recombinant expression | Organism: Homo sapiens (human) |
| Sequence | String: GGSGGSMAAS ERRAFAHKIN RTVAAEVRKQ VSRERSGSPH SSRRCSSSLG VPLTEVVEPL DFEDVLLSRP PDAEPGPLRD LVEFPADDL ELLLQPRECR TTEPGIPKDE KLDAQVRAAV EMYIEDWVIV HRRYQYLSAA YSPVTTDTQR ERQKGLPRQV F EQDASGDE ...String: GGSGGSMAAS ERRAFAHKIN RTVAAEVRKQ VSRERSGSPH SSRRCSSSLG VPLTEVVEPL DFEDVLLSRP PDAEPGPLRD LVEFPADDL ELLLQPRECR TTEPGIPKDE KLDAQVRAAV EMYIEDWVIV HRRYQYLSAA YSPVTTDTQR ERQKGLPRQV F EQDASGDE RSGPEDSNDS RRGSGSPEDT PRSSGASSIF DLRNLAADSL LPSLLERAAP EDVDRRNETL RRQHRPPALL TL YPAPDED EAVERCSRPE PPREHFGQRI LVKCLSLKFE IEIEPIFGIL ALYDVREKKK ISENFYFDLN SDSMKGLLRA HGT HPAIST LARSAIFSVT YPSPDIFLVI KLEKVLQQGD ISECCEPYMV LKEVDTAKNK EKLEKLRLAA EQFCTRLGRY RMPF AWTAV HLANIVSSAG QLDRDSDSEG ERRPAWTDRR RRGPQDRASS GDDACSFSGF RPATLTVTNF FKQEAERLSD EDLFK FLAD MRRPSSLLRR LRPVTAQLKI DISPAPENPH FCLSPELLHI KPYPDPRGRP TKEILEFPAR EVYAPHTSYR NLLYVY PHS LNFSSRQGSV RNLAVRVQYM TGEDPSQALP VIFGKSSCSE FTREAFTPVV YHNKSPEFYE EFKLHLPACV TENHHLL FT FYHVSCQPRP GTALETPVGF TWIPLLQHGR LRTGPFCLPV SVDQPPPSYS VLTPDVALPG MRWVDGHKGV FSVELTAV S SVHPQDPYLD KFFTLVHVLE EGAFPFRLKD TVLSEGNVEQ ELRASLAALR LASPEPLVAF SHHVLDKLVR LVIRPPIIS GQIVNLGRGA FEAMAHVVSL VHRSLEAAQD ARGHCPQLAA YVHYAFRLPG TEPSLPDGAP PVTVQAATLA RGSGRPASLY LARSKSISS SNPDLAVAPG SVDDEVSRIL ASKLLHEELA LQWVVSSSAV REAILQHAWF FFQLMVKSMA LHLLLGQRLD T PRKLRFPG RFLDDITALV GSVGLEVITR VHKDVELAEH LNASLAFFLS DLLSLVDRGF VFSLVRAHYK QVATRLQSSP NP AALLTLR MEFTRILCSH EHYVTLNLPC CPLSPPASPS PSVSSTTSQS STFSSQAPDP KVTSMFELSG PFRQQHFLAG LLL TELALA LEPEAEGAFL LHKKAISAVH SLLCGHDTDP RYAEATVKAR VAELYLPLLS IARDTLPRLH DFAEGPGQRS RLAS MLDSD TEGEGDIAGT INPSVAMAIA GGPLAPGSRA SISQGPPTAS RAGCALSAES SRTLLACVLW VLKNTEPALL QRWAT DLTL PQLGRLLDLL YLCLAAFEYK GKKAFERINS LTFKKSLDMK ARLEEAILGT IGARQEMVRR SRERSPFGNP ENVRWR KSV THWKQTSDRV DKTKDEMEHE ALVEGNLATE ASLVVLDTLE IIVQTVMLSE ARESVLGAVL KVVLYSLGSA QSALFLQ HG LATQRALVSK FPELLFEEDT ELCADLCLRL LRHCGSRIST IRTHASASLY LLMRQNFEIG HNFARVKMQV TMSLSSLV G TTQNFSEEHL RRSLKTILTY AEEDMGLRDS TFAEQVQDLM FNLHMILTDT VKMKEHQEDP EMLIDLMYRI ARGYQGSPD LRLTWLQNMA GKHAELGNHA EAAQCMVHAA ALVAEYLALL EDHRHLPVGC VSFQNISSNV LEESAISDDI LSPDEEGFCS GKHFTELGL VGLLEQAAGY FTMGGLYEAV NEVYKNLIPI LEAHRDYKKL AAVHGKLQEA FTKIMHQSSG WERVFGTYFR V GFYGAHFG DLDEQEFVYK EPSITKLAEI SHRLEEFYTE RFGDDVVEII KDSNPVDKSK LDSQKAYIQI TYVEPYFDTY EL KDRVTYF DRNYGLRTFL FCTPFTPDGR AHGELPEQHK RKTLLSTDHA FPYIKTRIRV CHREETVLTP VEVAIEDMQK KTR ELAFAT EQDPPDAKML QMVLQGSVGP TVNQGPLEVA QVFLAEIPED PKLFRHHNKL RLCFKDFCKK CEDALRKNKA LIGP DQKEY HRELERNYCR LREALQPLLT QRLPQLMAPT PPGLRNSLNR ASFRKADL UniProtKB: Dedicator of cytokinesis protein 6 |
-Macromolecule #2: Ras-related C3 botulinum toxin substrate 1
| Macromolecule | Name: Ras-related C3 botulinum toxin substrate 1 / type: protein_or_peptide / ID: 2 / Number of copies: 2 / Enantiomer: LEVO / EC number: small monomeric GTPase |
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| Source (natural) | Organism: Homo sapiens (human) |
| Molecular weight | Theoretical: 20.244258 KDa |
| Recombinant expression | Organism: ![]() |
| Sequence | String: GSSGSSGMQA IKCVVVGDGA VAKTCLLISY TTNAFPGEYI PTVFDNYSAN VMVDGKPVNL GLWDTAGQED YDRLRPLSYP QTDVFLICF SLVSPASFEN VRAKWYPEVR HHCPNTPIIL VGTKLDLRDD KDTIEKLKEK KLTPITYPQG LAMAKEIGAV K YLECSALT QRGLKTVFDE AIRAVL UniProtKB: Ras-related C3 botulinum toxin substrate 1 |
-Experimental details
-Structure determination
| Method | cryo EM |
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Processing | single particle reconstruction |
| Aggregation state | particle |
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Sample preparation
| Buffer | pH: 8 |
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| Grid | Model: Quantifoil R1.2/1.3 / Material: COPPER / Mesh: 300 / Support film - Material: CARBON / Support film - topology: CONTINUOUS |
| Vitrification | Cryogen name: ETHANE / Chamber humidity: 100 % / Chamber temperature: 277 K / Instrument: FEI VITROBOT MARK IV |
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Electron microscopy
| Microscope | TFS KRIOS |
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| Image recording | Film or detector model: GATAN K3 (6k x 4k) / Number real images: 5048 / Average electron dose: 49.5 e/Å2 |
| Electron beam | Acceleration voltage: 300 kV / Electron source: FIELD EMISSION GUN |
| Electron optics | Illumination mode: FLOOD BEAM / Imaging mode: BRIGHT FIELD / Nominal defocus max: 2.0 µm / Nominal defocus min: 0.8 µm / Nominal magnification: 64000 |
| Experimental equipment | ![]() Model: Titan Krios / Image courtesy: FEI Company |
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About Yorodumi




Keywords
Homo sapiens (human)
Authors
Japan, 4 items
Citation






























Z (Sec.)
Y (Row.)
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Processing
FIELD EMISSION GUN

