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Showing 1 - 50 of 19,754 items for (author: ke & d)

EMDB-55110:
Cryo-EM structure of the Arabidopsis thaliana CAT4 transporter in the outward-open apo state (without synthetic nanobody)
Method: single particle / : Kolokouris D, Zeng YC, Newstead S

PDB-9sqh:
Cryo-EM structure of the Arabidopsis thaliana CAT4 transporter in the outward-open apo state (without synthetic nanobody)
Method: single particle / : Kolokouris D, Zeng YC, Newstead S

EMDB-56682:
In situ ribosome structure from environmental sample of Pseudo-nitzschia
Method: subtomogram averaging / : Leisch N, Pyle E

EMDB-71394:
Avian TRPM8 (Parus major) desensitized, fully-swapped, ligand-free structure resolved in cell vesicles using cryo-EM
Method: single particle / : Choi KY, Lin X, Cheng Y, Julius D

EMDB-71455:
Avian TRPM8 (Parus major) menthol bound structure resolved in cell vesicles using cryo-EM
Method: single particle / : Choi KY, Lin X, Cheng Y, Julius D

EMDB-74123:
Avian TRPM8 (Parus major) semi-swapped, calcium free, menthol bound structure resolved in cell vesicles
Method: single particle / : Choi KY, Lin X, Cheng Y, Julius D

EMDB-74125:
Parus major TRPM8, fully-swapped state determined in the presence of menthol
Method: single particle / : Choi KY, Lin X, Cheng Y, Julius D

EMDB-74126:
Avian TRPM8 (Parus major) "undetermined" class 1 resolved in cell vesicles using cryo-EM
Method: single particle / : Choi KY, Lin X, Cheng Y, Julius D

EMDB-74127:
Avian TRPM8 (Parus major) "undetermined" class 2 resolved in cell vesicles using cryo-EM
Method: single particle / : Choi KY, Lin X, Cheng Y, Julius D

EMDB-74128:
Human TRPM8 V915Y semi-swapped structure, cold in the presence of calcium, determined using GDN
Method: single particle / : Choi KY, Lin X, Cheng Y, Julius D

EMDB-74129:
Human TRPM8 (wild-type) semi-swapped structure, calcium-free, 4 degress Celsius, determined using cell vesicles
Method: single particle / : Choi KY, Lin X, Cheng Y, Julius D

PDB-9p90:
Avian TRPM8 (Parus major) desensitized, fully-swapped, ligand-free structure resolved in cell vesicles using cryo-EM
Method: single particle / : Choi KY, Lin X, Cheng Y, Julius D

PDB-9pb6:
Avian TRPM8 (Parus major) menthol bound structure resolved in cell vesicles using cryo-EM
Method: single particle / : Choi KY, Lin X, Cheng Y, Julius D

PDB-9zez:
Avian TRPM8 (Parus major) semi-swapped, calcium free, menthol bound structure resolved in cell vesicles
Method: single particle / : Choi KY, Lin X, Cheng Y, Julius D

EMDB-74880:
Dimer structure of Thlaspi arvense plastid biotin carboxylase
Method: single particle / : Madison HJ, Van Doren SR, Yokom AL

EMDB-74881:
Tetramer structure of Thlaspi arvense plastid biotin carboxylase
Method: single particle / : Madison HJ, Van Doren SR, Yokom AL

PDB-9zvm:
Dimer structure of Thlaspi arvense plastid biotin carboxylase
Method: single particle / : Madison HJ, Van Doren SR, Yokom AL

EMDB-56885:
NorA bound to miniprotein I-23
Method: single particle / : Lamon G, Mishra P, Chazin-Gray A, Baker D, Traaseth NJ

PDB-28vj:
NorA bound to miniprotein I-23
Method: single particle / : Lamon G, Mishra P, Chazin-Gray A, Baker D, Traaseth NJ

EMDB-53238:
Invasive protrusion of a flam-del-412-St2 Drosophila follicle
Method: electron tomography / : Voichek M, Bernhard A, Brennecke J

EMDB-71909:
Structure of AP-2 bound to the dileucine motif of CCDC32; combined map
Method: single particle / : Baker RW, Kikkawa M, Sloan DE, Yanagisawa H

PDB-9pwb:
Structure of AP-2 bound to the dileucine motif of CCDC32; combined map
Method: single particle / : Baker RW, Kikkawa M, Sloan DE, Yanagisawa H

EMDB-71914:
Composite structure of AP-2 bound to the dileucine motif and WxxPhi motif of CCDC32
Method: single particle / : Baker RW, Kikkawa M, Sloan DE, Yanagisawa H

PDB-9pwc:
Composite structure of AP-2 bound to the dileucine motif and WxxPhi motif of CCDC32
Method: single particle / : Baker RW, Kikkawa M, Sloan DE, Yanagisawa H

EMDB-71906:
Structure of AP-2 bound to the dileucine motif of CCDC32; consensus refinement
Method: single particle / : Baker RW, Kikkawa M, Sloan DE, Yanagisawa H

EMDB-71911:
Structure of AP-2 bound to the dileucine motif and WxxPhi motif of CCDC32; focused refinement 1
Method: single particle / : Baker RW, Kikkawa M, Sloan DE, Yanagisawa H

EMDB-56783:
MBP-maltose bound to distal DARPin (AHIR dodecamer scaffold system from split dataset with 8694 micrographs)
Method: single particle / : Ferreira DSM, Noble M, Rowland RJ, Fairhead M, Gittins O, von Delft F, Endicott J, Martin M, Pike ACW, Dlamini LS, Sauer DB

EMDB-56785:
MBP-maltose bound to distal DARPin (AHIR dodecamer scaffold system from split dataset with 8500 micrographs)
Method: single particle / : Ferreira DSM, Noble M, Rowland RJ, Fairhead M, Gittins O, von Delft F, Endicott J, Martin M, Pike ACW, Sauer DB, Dlamini LS

EMDB-56787:
MBP-maltose bound to distal DARPin (AHIR dodecamer scaffold system from split dataset with 7500 micrographs)
Method: single particle / : Ferreira DSM, Noble M, Rowland RJ, Fairhead M, Gittins O, von Delft F, Endicott J, Martin M, Pike ACW, Dlamini LS, Sauer DB

EMDB-56789:
MBP-maltose bound to distal DARPin (AHIR dodecamer scaffold system from split dataset with 6500 micrographs)
Method: single particle / : Ferreira DSM, Noble M, Rowland RJ, Fairhead M, Gittins O, von Delft F, Endicott J, Martin M, Pike ACW, Dlamini LS, Sauer DB

EMDB-56791:
MBP-maltose bound to distal DARPin (AHIR dodecamer scaffold system from split dataset with 5500 micrographs)
Method: single particle / : Ferreira DSM, Noble M, Rowland RJ, Fairhead M, Gittins O, von Delft F, Endicott J, Martin M, Pike ACW, Dlamini LS, Sauer DB

EMDB-56793:
MBP-maltose bound to distal DARPin (AHIR dodecamer scaffold system from split dataset with 4500 micrographs)
Method: single particle / : Ferreira DSM, Noble M, Rowland RJ, Fairhead M, Gittins O, von Delft F, Endicott J, Martin M, Pike ACW, Dlamini LS, Sauer DB

EMDB-56795:
MBP-maltose bound to distal DARPin (AHIR dodecamer scaffold system from split dataset with 3500 micrographs)
Method: single particle / : Ferreira DSM, Noble M, Rowland RJ, Fairhead M, Gittins O, von Delft F, Endicott J, Martin M, Pike ACW, Dlamini LS, Sauer DB

EMDB-56797:
MBP-maltose bound to distal DARPin (AHIR dodecamer scaffold system from split dataset with 2500 micrographs)
Method: single particle / : Ferreira DSM, Noble M, Rowland RJ, Fairhead M, Gittins O, von Delft F, Endicott J, Martin M, Pike ACW, Dlamini LS, Sauer DB

EMDB-56799:
MBP-maltose bound to distal DARPin (AHIR dodecamer scaffold system from split dataset with 1500 micrographs)
Method: single particle / : Ferreira DSM, Noble M, Rowland RJ, Fairhead M, Gittins O, von Delft F, Endicott J, Martin M, Pike ACW, Dlamini LS, Sauer DB

EMDB-56801:
MBP-maltose bound to distal DARPin (AHIR dodecamer scaffold system from split dataset with 500 micrographs)
Method: single particle / : Ferreira DSM, Noble M, Rowland RJ, Fairhead M, Gittins O, von Delft F, Endicott J, Martin M, Pike ACW, Dlamini LS, Sauer DB

EMDB-71912:
Structure of AP-2 bound to the dileucine motif and WxxPhi motif of CCDC32; focused refinement 2
Method: single particle / : Baker RW, Kikkawa M, Sloan DE, Yanagisawa H

EMDB-71913:
Structure of AP-2 bound to the dileucine motif and WxxPhi motif of CCDC32; focused refinement 3
Method: single particle / : Baker RW, Kikkawa M, Sloan DE, Yanagisawa H

EMDB-54060:
Cryo-EM structure of the CorM filament in the presence of CorR from cyanobacterium Anabaena sp. PCC 7120
Method: single particle / : Springstein BL, Javoor MG, Megrian D, Hajdu R, Hanke DM, Schur FKM, Loose M

EMDB-54061:
Cryo-EM structure of the CorM filament from cyanobacterium Anabaena sp. PCC 7120
Method: single particle / : Springstein BL, Javoor MG, Megrian D, Hajdu R, Hanke DM, Schur FKM, Loose M

EMDB-54062:
Cryo-EM structure of the delta1-40 CorM filament from cyanobacterium Anabaena sp. PCC 7120
Method: single particle / : Springstein BL, Javoor MG, Megrian D, Hajdu R, Hanke DM, Schur FKM, Loose M

EMDB-55454:
Cryo-electron tomogram of cyanobacterium Anabaena sp. PCC 7120 with putative CorM filaments (Isonet-processed)
Method: electron tomography / : Springstein BL, Javoor MG, Megrian D, Hajdu R, Hanke DM, Zens B, Weiss GL, Schur FKM, Loose M

EMDB-55455:
Cryo-electron tomogram of delta-cse mutant cyanobacterium Anabaena sp. PCC 7120 with putative CorM filaments
Method: electron tomography / : Springstein BL, Javoor MG, Megrian D, Hajdu R, Hanke DM, Zens B, Weiss GL, Schur FKM, Loose M

PDB-9rmi:
Cryo-EM structure of the CorM filament in the presence of CorR from cyanobacterium Anabaena sp. PCC 7120
Method: single particle / : Springstein BL, Javoor MG, Megrian D, Hajdu R, Hanke DM, Schur FKM, Loose M

EMDB-70069:
CryoEM structure of mu-opioid receptor - Gi protein complex bound to FNZ, Global Map
Method: single particle / : Robertson MJ, Skiniotis G

EMDB-70070:
CryoEM structure of mu-opioid receptor - Gi protein complex bound to FNZ- local map
Method: single particle / : Robertson MJ, Skiniotis G

EMDB-71905:
Closed AP-2 clathrin adaptor complex in solution
Method: single particle / : Baker RW, Kikkawa M, Sloan DE, Yanagisawa H

PDB-9pwa:
Closed AP-2 clathrin adaptor complex in solution
Method: single particle / : Baker RW, Kikkawa M, Sloan DE, Yanagisawa H

EMDB-71907:
Structure of AP-2 bound to the dileucine motif of CCDC32; focused refinement
Method: single particle / : Baker RW, Kikkawa M, Sloan DE, Yanagisawa H

EMDB-70024:
Rhesus Macaque mAb CHM-27 complexed with SARS-CoV-2 spike protein
Method: single particle / : Lin RN, Ward AB

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Feb 9, 2022. New format data for meta-information of EMDB entries

New format data for meta-information of EMDB entries

  • Version 3 of the EMDB header file is now the official format.
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Oct 5, 2021. Nobel Prize for mechanically activated and temperature-gated ion channels

Nobel Prize for mechanically activated and temperature-gated ion channels

  • The Nobel Prize in Physiology or Medicine 2021 was awarded jointly to David Julius and Ardem Patapoutian "for their discoveries of receptors for temperature and touch."
  • EM Navigator can help to find cryo-EM structure data by both pioneers.

External links:The Nobel Prize in Physiology or Medicine 2021 - NobelPrize.org / Structure data by Ardem Patapoutian / Structure data by David Julius

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