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Showing all 47 items for (author: el & omari & k)

EMDB-16005:
GABA-A receptor a5 homomer - a5V3 - APO
Method: single particle / : Miller PS, Malinauskas TM, Hardwick SW, Chirgadze DY

EMDB-16050:
GABA-A receptor a5 homomer - a5V3 - Basmisanil - HR
Method: single particle / : Malinauskas TM, Wahid AA, Hardwick SW, Chirgadze DY, Miller PS

EMDB-16051:
GABA-A receptor a5 homomer - a5V3 - RO154513
Method: single particle / : Miller PS, Malinauskas TM, Hardwick SW, Chirgadze DY, Wahid AA

EMDB-16055:
GABA-A receptor a5 homomer - a5V3 - RO5211223
Method: single particle / : Miller PS, Malinauskas TM, Hardwick SW, Chirgadze DY

EMDB-16058:
GABA-A receptor a5 homomer - a5V3 - Diazepam
Method: single particle / : Miller PS, Malinauskas TM, Kasaragod VB, Chirgadze DY

EMDB-16060:
GABA-A receptor a5 homomer - a5V3 - DMCM
Method: single particle / : Miller PS, Malinauskas TM, Hardwick SW, Chirgadze DY

EMDB-16063:
GABA-A receptor a5 homomer - a5V3 - L655708
Method: single particle / : Miller PS, Malinauskas TM, Hardwick SW, Chirgadze DY

EMDB-16066:
GABA-A receptor a5 homomer - a5V3 - RO7172670
Method: single particle / : Miller PS, Malinauskas TM, Hardwick SW, Kasaragod VB

EMDB-16067:
GABA-A receptor a5 homomer - a5V3 - RO7015738
Method: single particle / : Miller PS, Malinauskas TM, Kasaragod VB, Chirgadze DY

EMDB-16068:
GABA-A receptor a5 homomer - a5V3 - RO4938581
Method: single particle / : Miller PS, Malinauskas TM, Hardwick SW, Chirgadze DY

PDB-8bej:
GABA-A receptor a5 homomer - a5V3 - APO
Method: single particle / : Miller PS, Malinauskas TM, Hardwick SW, Chirgadze DY

PDB-8bha:
GABA-A receptor a5 homomer - a5V3 - Basmisanil - HR
Method: single particle / : Malinauskas TM, Wahid AA, Hardwick SW, Chirgadze DY, Miller PS

PDB-8bhb:
GABA-A receptor a5 homomer - a5V3 - RO154513
Method: single particle / : Miller PS, Malinauskas TM, Hardwick SW, Chirgadze DY, Wahid AA

PDB-8bhi:
GABA-A receptor a5 homomer - a5V3 - RO5211223
Method: single particle / : Miller PS, Malinauskas TM, Hardwick SW, Chirgadze DY

PDB-8bhk:
GABA-A receptor a5 homomer - a5V3 - Diazepam
Method: single particle / : Miller PS, Malinauskas TM, Kasaragod VB, Chirgadze DY

PDB-8bhm:
GABA-A receptor a5 homomer - a5V3 - DMCM
Method: single particle / : Miller PS, Malinauskas TM, Hardwick SW, Chirgadze DY

PDB-8bho:
GABA-A receptor a5 homomer - a5V3 - L655708
Method: single particle / : Miller PS, Malinauskas TM, Hardwick SW, Chirgadze DY

PDB-8bhq:
GABA-A receptor a5 homomer - a5V3 - RO7172670
Method: single particle / : Miller PS, Malinauskas TM, Hardwick SW, Kasaragod VB

PDB-8bhr:
GABA-A receptor a5 homomer - a5V3 - RO7015738
Method: single particle / : Miller PS, Malinauskas TM, Kasaragod VB

PDB-8bhs:
GABA-A receptor a5 homomer - a5V3 - RO4938581
Method: single particle / : Miller PS, Malinauskas TM, Hardwick SW, Chirgadze DY

EMDB-13957:
Extended H/L (SLPH/SLPL) complex from C. difficile (CD630 strain) fit into R20291 S-layer negative stain map
Method: electron crystallography / : Banerji O, Wilson JS, Bullough PA

PDB-7qgq:
Extended H/L (SLPH/SLPL) complex from C. difficile (CD630 strain) fit into R20291 S-layer negative stain map
Method: electron crystallography / : Banerji O, Wilson JS, Bullough PA

EMDB-13355:
Structure of the Caulobacter crescentus S-layer protein RsaA N-terminal domain bound to LPS and soaked with Holmium
Method: single particle / : von Kugelgen A, Bharat TAM

PDB-7peo:
Structure of the Caulobacter crescentus S-layer protein RsaA N-terminal domain bound to LPS and soaked with Holmium
Method: single particle / : von Kugelgen A, Bharat TAM

PDB-6rvd:
Revised cryo-EM structure of the human 2:1 Ptch1-Shh complex
Method: single particle / : El Omari K, Rudolf AF, Kowatsch C, Malinauskas T, Kinnebrew M, Ansell TB, Bishop B, Pardon E, Schwab RA, Qian M, Duman R, Covey DF, Steyaert J, Wagner A, Sansom MSP, Rohatgi R, Siebold C

EMDB-10289:
Bacteriophage phi6 dsRNA genome, layer 1, conformation pseudo C2
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-10075:
Bacteriophage phi6 dsRNA genome, layer 1, conformation pseudo D3
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-0294:
Bacteriophage phi6 dsRNA genome, layer 2
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-0295:
Bacteriophage phi6 dsRNA genome, layer 3
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-0296:
Bacteriophage phi6 dsRNA genome, layers 4 and 5
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-0299:
Bacteriophage phi6 nucleocapsid reconstructed with icosahedral symmetry
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-0300:
Reconstruction of dsRNA bacteriophage phi6 nucleocapsid with D3 symmetry
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-0302:
Bacteriophage phi6 dsRNA genome, layer 1, conformation pseudo D3'
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-0304:
Bacteriophage phi6 dsRNA genome, layer 1, conformation pseudo D3', sub-conformation 1
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-0305:
Bacteriophage phi6 dsRNA genome, layer 1, conformation pseudo D3', sub-conformation 2
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-0306:
Bacteriophage phi6 dsRNA genome, layer 1, conformation pseudo D3', sub-conformation 3
Method: single particle / : Ilca SL, Huiskonen JT

PDB-6hy0:
Atomic models of P1, P4 C-terminal fragment and P8 fitted in the bacteriophage phi6 nucleocapsid reconstructed with icosahedral symmetry
Method: single particle / : El Omari K, Ilca SL, Stuart DI, Huiskonen JT

EMDB-9779:
Reconstruction of HRPV6 VP5 spike
Method: subtomogram averaging / : Li S, Huiskonen JT

PDB-6j7v:
Structure of HRPV6 VP5 fitted in the cryoEM density of the spike
Method: subtomogram averaging / : El Omari K, Li S, Huiskonen JT, Stuart DI

EMDB-3571:
dsRNA bacteriophage phi6 nucleocapsid
Method: single particle / : Sun Z, El Omari K, Sun X, Ilca SL, Kotecha A, Stuart DI, Poranen MM, Huiskonen JT

EMDB-3572:
Localized reconstruction of bacteriophage phi6 packaging hexamer P4
Method: single particle / : Sun Z, El Omari K, Sun X, Ilca S, Kotecha A, Stuart DI, Poranen MM, Huiskonen JT

EMDB-3573:
Localized reconstruction of bacteriophage phi6 vertex
Method: single particle / : Sun Z, El Omari K, Sun X, Ilca S, Kotecha A, Stuart DI, Poranen MM, Huiskonen JT

PDB-5muu:
dsRNA bacteriophage phi6 nucleocapsid
Method: single particle / : Sun Z, El Omari K, Sun X, Ilca SL, Kotecha A, Stuart DI, Poranen MM, Huiskonen JT

PDB-5muv:
Atomic structure fitted into a localized reconstruction of bacteriophage phi6 packaging hexamer P4
Method: single particle / : Sun Z, El Omari K, Sun X, Ilca S, Kotecha A, Stuart DI, Poranen MM, Huiskonen JT

PDB-5muw:
Atomic structure of P4 packaging enzyme fitted into a localized reconstruction of bacteriophage phi6 vertex
Method: single particle / : Sun Z, El Omari K, Sun X, Ilca S, Kotecha A, Stuart DI, Poranen MM, Huiskonen JT

PDB-5fki:
Pseudorabies virus (PrV) nuclear egress complex proteins fitted as a hexameric lattice into a sub-tomogram average derived from focused- ion beam milled lamellae electron cryo-microscopic data
Method: electron tomography / : Hagen C, Dent KC, Zeev Ben Mordehai T, Vasishtan D, Antonin W, Mettenleiter TC, Gruenewald K

PDB-4bx4:
Fitting of the bacteriophage Phi8 P1 capsid protein into cryo-EM density
Method: single particle / : El Omari K, Sutton G, Ravantti JJ, Zhang H, Walter TS, Grimes JM, Bamford DH, Stuart DI, Mancini EJ

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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

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  • The previous official version 1.9 will be removed from the archive.

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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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