Statistics
General
EMDB entries released per year and cumulatively
Quick links
Recent Entries
(Show all)Cryo-EM structure of streptavidin within graphene reservoir sandwich
Cryo-EM structure of Ll.LtrB Group II intron within graphene reservoir
E. coli 70S initiation complex bound to compact IF2-GDP (70S IC-II)
RNA polymerase ribozyme 85h34 replication complex, subclass 7 structure
T33-Fus-1A asymmetric unit - Designed tetrahedral protein cage based on helical fusion and machine learning
Australian bat lyssavirus glycoprotein PH domain in complex with broadly neutralizing human antibodies A6 and RVC20
T33-Fus-1A cage - Designed tetrahedral protein cage based on helical fusion and machine learning
T33-Fus-1B asymmetric unit - Designed tetrahedral protein cage based on helical fusion and machine learning
T33-Fus-2 asymmetric unit - Designed tetrahedral protein cage based on helical fusion and machine learning
T33-Fus-2 cage - Designed tetrahedral protein cage based on helical fusion and machine learning
Bacillus subtilis GerAA(A318C):GerAB:GerAC(P52C) bound to L-alanine, in glyco-diosgenin, consensus
Bacillus subtilis GerAA(A318C):GerAB:GerAC(S56C), in glyco-diosgenin, GerAB-focused
Bacillus subtilis GerAA(A318C):GerAB:GerAC(P52C) bound to L-alanine, in glyco-diosgenin, composite
Bacillus subtilis GerAA(A318C):GerAB:GerAC(S56C), in glyco-diosgenin, consensus
Bacillus subtilis GerAA(A318C):GerAB:GerAC(P52C) bound to L-alanine, in glyco-diosgenin, GerAC-focused
Bacillus subtilis GerAA(A318C):GerAB:GerAC(S56C) bound to D-alanine, in glyco-diosgenin, consensus
Bacillus subtilis GerAA:GerAB:GerAC bound to L-alanine, in glyco-diosgenin, GerAB-focused
Bacillus subtilis GerAA(A318C):GerAB:GerAC(S56C), in glyco-diosgenin, composite
Bacillus subtilis GerAA:GerAB:GerAC bound to L-alanine, in glyco-diosgenin, composite
Bacillus subtilis GerAA(A318C):GerAB:GerAC(P52C) bound to L-alanine, in glyco-diosgenin, GerAB-focused
Bacillus subtilis GerAA(A318C):GerAB:GerAC(S56C), in glyco-diosgenin, GerAC-focused
Bacillus subtilis GerAA:GerAB:GerAC bound to L-alanine, in glyco-diosgenin, consensus
Bacillus subtilis GerAA:GerAB:GerAC, in glyco-diosgenin, consensus
Bacillus subtilis GerAA:GerAB:GerAC, in glyco-diosgenin, composite
Bacillus subtilis GerAA:GerAB:GerAC, in glyco-diosgenin, GerAB-focused
Bacillus subtilis GerAA(A318C):GerAB:GerAC(S56C) bound to D-alanine, in glyco-diosgenin, GerAB-focused
Bacillus subtilis GerAA(A318C):GerAB:GerAC(S56C) bound to D-alanine, in glyco-diosgenin, GerAC-focused
Bacillus subtilis GerAA(A318C):GerAB:GerAC(S56C) bound to L-alanine, in glyco-diosgenin, consensus
Bacillus subtilis GerAA(A318C):GerAB:GerAC(S56C) bound to D-alanine, in glyco-diosgenin, composite
Bacillus subtilis GerAA(A318C):GerAB:GerAC(S56C) bound to L-alanine, in glyco-diosgenin, GerAB-focused
Escherichia coli 70S ribosome initiation complex bound to IF1 and extended IF2-GDPCP (70S IC*)
Bacillus subtilis GerAA(A318C):GerAB:GerAC(S56C) bound to L-alanine, in glyco-diosgenin, GerAC-focused
Bacillus subtilis GerAA(A318C):GerAB:GerAC(S56C) bound to L-alanine, in glyco-diosgenin, composite
Constituent EM map: Focused refinement LptADE of outer membrane and periplasmic portions of the E. coli lipopolysaccharide transport bridge
Constituent EM map: Focused refinement inner membrane portion LptBFGC of the lipopolysaccharide transport bridge from E. coli in complex with lipopolysaccharide
Constituent EM map: Outer membrane and periplasmic portions of the lipopolysaccharide transport bridge from E coli
Constituent EM map: Focused refinement of inner membrane portions of the E. coli lipopolysaccharide transport bridge LptBFGC
Raw consensus map of the E coli lipopolysaccharide transport bridge
LPS transport bridge LptBFGCADE from Escherichia coli in complex with lipopolysaccharide
Consensus map of lipopolysaccharide transport bridge LptBFGCADE from E. coli in complex with lipopolysaccharide
RCK Gating Ring from Kch in the open conformation in the presence of zinc
Low resolution composite map of LPS transport bridge LptBFGCADE from Escherichia coli
Consensus map: Low resolution structure of LPS transport bridge LptBFGCADE from Escherichia coli
Reconstruction focused at N-heat-ATRIP-M-heat-FAT of closed protomer of ATR-ATRIP-ETAA1 AAD
Constituent EM map: Focused refinement of inner membrane portions of the E. coli lipopolysaccharide transport bridge LptBFGC, low resolution structure
Reconstruction (2) focused at N-heat-ATRIP-M-heat-FAT of closed protomer of ATR-ATRIP-ETAA1 AAD
Reconstruction focused at N-heat-ATRIP-M-heat of open protomer of ATR-ATRIP-ETAA1 AAD
Constituent EM map: Focused refinement LptADE of outer membrane and periplasmic portions of the E. coli lipopolysaccharide transport bridge, low resolution structure
Consensus map - Catalytically inactive LPS transport bridge LptBFGCADE from Escherichia coli bound to ATP
Constituent EM map: Focused refinement LptADE of outer membrane and periplasmic portions of the E. coli lipopolysaccharide transport bridge in complex with ATP
Constituent EM map: Focused refinement of inner membrane portions of the E. coli lipopolysaccharide transport bridge LptBFGC in complex with ATP
Catalytically inactive LPS transport bridge LptBFGCADE from Escherichia coli bound to ATP
Cryo-EM map (3D Refined) of the aptamer 343 bound to the N-terminus of Initiation Factor 3 (IF3) in the context of the bacterial preinitiation complex (PIC)
Asymmetric structure of Satellite Tobacco Necrosis Virus-Like Particle with PS2/3 gRNA
Cryo-EM map (3D Refined) of the initiator P-tRNA bound to the N-terminus of Initiation Factor 3 (IF3) in the context of the bacterial preinitiation complex (PIC)
CryoEM structure of transcribing RNA polymerase II elongation complex_Composite map
Cryo-EM structure of the Arabidopsis thaliana CAT4 transporter in the outward-open L-ornithine bound state
Locally refined map of CRBN TBD bound to dihydrouracil ligand in the open conformation
Locally refined map of CRBN bound to dihydrouracil ligand in the closed conformation
Consensus map of CRBN bound to dihydrouracil ligand in the open conformation
Consensus map of CRBN bound to dihydrouracil ligand in the closed conformation
BepA-BamABCDE-OMP-Nb5 complex in open, substrate-engaged beta barrel conformation.
Human mitoribosome bound to TACO1 (domain 1 ordered), mRNA, A/A-, P/P- and E/E-tRNAs
CryoEM density of NBEAL2 BEACH protein at secondary structure resolution
Structure of cis-basal conformer of human CBS induced by non-activating allosteric SAO ligand - C1 symmetry -by single particle approach.
BepA-BamABCDE-Nb32 complex in inward open conformation with lateral seam closed
Escherichia coli nicotinamide nucleotide transhydrogenase double dIIIs attached to dIIs state in the presence of NADPH
Cryo-EM structure of transcription activation complex with DevR from Mycobacterium tuberculosis
Wild-type Escherichia coli transhydrogenase double dIIIs attached to dII in the presence of both NADP+ and NAD+.
Cryo-EM structure of transcription activation complex with DosR from Mycobacterium tuberculosis(consensus map)
Wild-type Escherichia coli transhydrogenase single dIII attached to dII in the presence of both NADP+ and NAD+.
Wild-type Escherichia coli transhydrogenase the dissociated (dI)2 dimer in the presence of both NADP+ and NAD+.
Cryo-EM structure of transcription activation complex with DosR from Mycobacterium tuberculosis focusing on DosR region
Glucagon-like peptide 1 receptor-Gs complex activated by the small molecule agonist SIM1
Subtomogram averaging of H1-bound nucleosome from frog nuclei lamella
Subtomogram averaging of nucleosome core from reconstituted chromatin
Subtomogram averaging of H1-bound nucleosome from SF9 cell chromatin
Glucose-dependent insulinotropic polypeptide receptor-Gs complex activated by the small molecule agonist SIM1
Subtomogram averaging of nucleosome core from frog nuclei lamella
Subtomogram averaging of H1-bound nucleosomes from reconstituted chromatin
Glucagon receptor-Gs complex activated by the small molecule agonist SIM1
Cryo-EM structure of GLP-1R-Gs complex with GLP-1 (9-36) and cpd19
Connexin 26 from L Paradoxa in GDN detergent - hemichannel focussed conformation 2
Connexin 26 from Lepidosiren paradoxa solublised and purified in DDM detergent
Connexin 26 from Lepidosiren paradoxa solublised and purified in LMNG detergent
Mycobacterium tuberculosis transcription termination factor Rho in complex with an RNA substrate bound to the secondary binding site and the ATP analogue ADP-BeF3
Connexin 26 from L Paradoxa in GDN detergent - hemichannel focussed conformation 1
Mycobacterium tuberculosis transcription termination factor Rho in complex with an RNA substrate bound to the primary binding site and the ATP analogue ADP-BeF3
In situ structure of F7 pyocin in the post-ejection state on P. aeruginosa
Cryo-EM structure of Mycobacterium tuberculosis transcription initiation complex in complex with UMN141
In situ structure of F7 pyocin attached to P. aeruginosa outer membrane
Eukaryotic 80S ribosome with P/P tRNA and Reh1 from uL16 P-site loop mutants in bypass condition
Cryo-EM structure of Mycobacterium tuberculosis transcription initiation complex containing 2nt RNA in complex with UMN141
Eukaryotic 80S ribosome with P/P tRNA from uL16 P-site loop mutants in bypass condition
Pseudomonas aeruginosa 50S ribosome (L1 stalk domain 'in' conformation)
Structure of mink-derived HKU5 RBD in complex with ACE2 of N. vison
Eukaryotic 80S ribosome with A/A, P/P tRNAs from uL16 P-site loop mutants in bypass condition
Eukaryotic 80S ribosome with A/P, P/E tRNAs from uL16 P-site loop mutants in bypass condition
Eukaryotic pre-60S ribosomes from uL16 P-site loop mutants in bypass condition. Lsg1, Nmd3 absent
Empty eukaryotic 80S ribosome with Reh1 from uL16 P-site loop mutants in bypass condition
Eukaryotic pre-60S ribosomes from uL16 P-site loop mutants in bypass condition. Lsg1,Nmd3 and Tif6 present
Pseudomonas aeruginosa 50S ribosome (L1 Stalk domain 'mid' conformation)
Conserved mRNP remodeling mechanism of the TREX-2L (Thp3/Csn12/Sem1) complex
Mycobacterial NDH-2 (type II NADH:quinone oxidoreductase) with tricyclic spirolactam inhibitor
Cryo-EM structure of the L274A mutant of the Arabidopsis thaliana mechanosensitive channel of small conductance-like protein 2 (MSL2) in DOPC lipid nanodiscs
Cryo EM structure of a formate acetyltransferase (PFL) from Fannyhessea vaginae in complex with CoA
Constituent EM map: Focused refinement on TMx region of RyR1 in complex with rosuvastatin (Ca2+/CFF/ATP dataset; open pore)
Constituent EM map: Focused refinement on NTD/SPRY/Calstabin-1 of RyR1 in complex with rosuvastatin (Ca2+/CFF/ATP dataset; open pore)
Constituent EM map: Focused refinement on JSol/CSol of RyR1 in complex with rosuvastatin (Ca2+/CFF/ATP dataset; open pore)
Constituent EM map: Focused refinement on Ry34 of RyR1 in complex with rosuvastatin (Ca2+/CFF/ATP dataset; open pore)
Constituent EM map: Focused refinement on Ry12 of RyR1 in complex with rosuvastatin (Ca2+/CFF/ATP dataset; open pore)
Constituent EM map: Focused refinement on BSol of RyR1 in complex with rosuvastatin (Ca2+/CFF/ATP dataset; open pore)
Constituent EM map: Focused refinement on TaF/TMD/CTD of RyR1 in complex with rosuvastatin (Ca2+/CFF/ATP dataset; open pore)
Peptidoglycan and lipopolysaccharide biosynthesis enzymes with inhibitor
Cryo-EM structure of 20S proteasome from cell lysates on carbon nanotubes
Cryo-EM structure of GroEL-GroES complex from cell lysates on carbon nanotubes
Structural and Functional Insights into VEGFR-3-Mediated Lymphangiogenesis : Unraveling the clustering mechanism of VEGFR-3/VEGF-C
Structural and Functional Insights into VEGFR-3-Mediated Lymphangiogenesis : Unraveling the clustering mechanism of VEGFR-3/VEGF-C
Human monosomes with bound toxin NT-2, focus on 60S subunit. Cells treated with NT-2.
Dormant 80S:eEF2:SERBP1:tRNA complex from human cells treated with toxin NT-2
Human monosomes with bound toxin NT-2, focus on 60S subunit. NT-2 added to purified ribosomes as control.
CryoEM structure of F7 pyocin tail tip in the post-ejection state
CryoEM structure of F7 pyocin tail fiber in the pre-ejection state
Asymmetric cryoEM structure of F7 pyocin tail tip in the post-ejection state
Structure of RyR1 in presence of rosuvastatin (including auxiliary transmembrane helices TMx1 and TMx2; Ca2+/CFF/ATP dataset; closed pore)
Raw consensus map of RyR1 in presence of rosuvastatin (including auxiliary transmembrane helices TMx1 and TMx2; Ca2+/CFF/ATP dataset; closed pore)
Raw consensus map of RyR1 in presence of rosuvastatin (Ca2+/CFF/ATP dataset; closed pore)
Raw consensus map of RyR1 in complex with rosuvastatin (Ca2+/CFF/ATP dataset; open pore)
Constituent EM map: Focused refinement on Ry12 of RyR1 in presence of rosuvastatin (including auxiliary transmembrane helices TMx1 and TMx2; Ca2+/CFF/ATP dataset; closed pore)
Constituent EM map: Focused refinement on BSol of RyR1 in presence of rosuvastatin (including auxiliary transmembrane helices TMx1 and TMx2; Ca2+/CFF/ATP dataset; closed pore)
Constituent EM map: Focused refinement on TaF/TMD/CTD of RyR1 in presence of rosuvastatin (including auxiliary transmembrane helices TMx1 and TMx2; Ca2+/CFF/ATP dataset; closed pore)
Constituent EM map: Focused refinement on NTD/SPRY/Calstabin-1 of RyR1 in presence of rosuvastatin (including auxiliary transmembrane helices TMx1 and TMx2; Ca2+/CFF/ATP dataset; closed pore)
Constituent EM map: Focused refinement on Ry34 of RyR1 in presence of rosuvastatin (including auxiliary transmembrane helices TMx1 and TMx2; Ca2+/CFF/ATP dataset; closed pore)
Constituent EM map: Focused refinement on JSol/CSol of RyR1 in presence of rosuvastatin (including auxiliary transmembrane helices TMx1 and TMx2; Ca2+/CFF/ATP dataset; closed pore)
Constituent EM map: Focused refinement on TMx region of RyR1 in presence of rosuvastatin (including auxiliary transmembrane helices TMx1 and TMx2; Ca2+/CFF/ATP dataset; closed pore)
Cryo-EM structure of wild-type Arabidopsis thaliana mechanosensitive channel of small conductance-like protein 2 (MSL2) in DOPC lipid nanodiscs.
Structure of RyR1 in complex with rosuvastatin (Ca2+/CFF/ATP dataset; open pore)
Cryo-EM map of crosslinked E. coli TAM Complex in DDM detergent, alpha helices resolved in POTRA domains
Cryo-EM structure of wild-typeArabidopsis thaliana mechanosensitive channel of small conductance-like protein 2 (MSL2) in chloroplast lipid nanodiscs
Cryo-EM map of crosslinked E. coli TAM Complex in DDM detergent, interruption of density visible near TamA lateral gate
Structure of human MAIT A-F7 TCR in complex with miniaturized MR1-5-OP-RU
Structure of the human ZNFX1 protein in a bundled sheet of twisted fibrils
Cryo-EM map of the occluded-state full-length human Adenylyl cyclase 9 in complex with stimulatory G protein, ATPalphaS, and forskolin
Cryo-EM map of the full-length chimeric Adenylyl cyclase 95 in complex with stimulatory G protein, ATPalphaS, and forskolin
Cryo-EM map of the ATPalphaS-bound full-length human Adenylyl cyclase 9 in complex with stimulatory G protein, ATPalphaS, and forskolin
Cryo-EM map of the occluded-state full-length human Adenylyl cyclase 9 in complex with stimulatory G protein
Cryo-EM map of Yarrowia lipolytica ORC-Cdc6 bound to 54bp segment of OriC-061 DNA
Cryo-EM map of Yarrowia lipolytica ORC-Cdc6 bound to 60bp segment of OriA-006 DNA
Cryo-EM map of Yarrowia lipolytica ORC-Cdc6 bound to 60bp segment of OriA-006 mutant CNNGGNR DNA
CryoEM structure of the human origin recognition complex with DNA and CDC6 protein
Cryo EM Structure of Full Length mGluR8 in Complex with Beta-Arrestin-1 Bound to Agonist L-AP4 and PAM VU6005649
Cryo EM Structure of Full lengthmGluR8 Bound to Agonist L-AP4 and PAM VU6005649 in complex with G proteins
In situ C2S2M2L4-type PSII-LHCII supercomplex, two loosely bound (L-) LHCII trimers at one side, protomer 2
In situ C2S2M2L4-type PSII-LHCII supercomplex, two loosely bound (L-) LHCII trimers at one side, protomer 1
In situ structure of side-by-side PSII-LHCII dimer (focused on PSII copy 2)
In situ structure of side-by-side PSII-LHCII dimer (focused on PSII copy 1)
In situ structure of the side-by-side PSII-LHCII dimer from Oryza sativa (composite)
In situ structure of side-by-side PSII-LHCII dimer (Consensus map)
In situ structure of the trans-lumenal PSII-LHCII dimer (Consensus map)
In situ structure of the bis-trans-lumenal/trans-stromal PSII-LHCII tetramer (Consensus map)
