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Showing 1 - 50 of 95 items for (author: ryan & cm)

EMDB-42681:
The structure of the native cardiac thin filament troponin core in Ca2+-free state from the upper strand
Method: single particle / : Galkin VE, Risi CM

EMDB-42682:
The structure of the native cardiac thin filament troponin core in Ca2+-free tilted state from the upper strand
Method: single particle / : Galkin VE, Risi CM

EMDB-42683:
The structure of the native cardiac thin filament troponin core in Ca2+-free rotated state from the upper strand
Method: single particle / : Galkin VE, Risi CM

EMDB-42800:
The structure of the native cardiac thin filament troponin core in Ca2+-free state from the lower strand
Method: single particle / : Galkin VE, Risi CM

EMDB-42833:
The structure of the native cardiac thin filament troponin core in Ca2+-free rotated state from the lower strand
Method: single particle / : Galkin VE, Risi CM

EMDB-42835:
The structure of the native cardiac thin filament troponin core in Ca2+-free tilted state from the lower strand
Method: single particle / : Galkin VE, Risi CM

EMDB-42846:
The structure of the native cardiac thin filament troponin core in Ca2+-bound fully activated state from the upper strand
Method: single particle / : Galkin VE, Risi CM

EMDB-42847:
The structure of the native cardiac thin filament troponin core in Ca2+-bound partially activated state from the upper strand
Method: single particle / : Galkin VE, Risi CM

EMDB-42849:
The structure of the native cardiac thin filament troponin core in Ca2+-bound fully activated state 1 from the lower strand
Method: single particle / : Galkin VE, Risi CM

EMDB-42856:
The structure of the native cardiac thin filament troponin core in Ca2+-bound fully activated state 2 from the lower strand
Method: single particle / : Galkin VE, Risi CM

EMDB-42858:
The structure of the native cardiac thin filament troponin core in Ca2+-bound partially activated state from the lower strand
Method: single particle / : Galkin VE, Risi CM

EMDB-42874:
The structure of the native cardiac thin filament troponin core in Ca2+-free state from the upper strand activated by the C1-domain of cardiac myosin binding protein C
Method: single particle / : Galkin VE, Risi CM

EMDB-42526:
Alpha7-nicotinic acetylcholine receptor bound to epibatidine
Method: single particle / : Burke SM, Hibbs RE, Noviello CM

EMDB-42537:
Alpha7-nicotinic acetylcholine receptor bound to epibatidine and NS-1738
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-42841:
Alpha7-nicotinic acetylcholine receptor bound to epibatidine and ivermectin
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43012:
Alpha7-nicotinic acetylcholine receptor bound to epibatidine and (-)-TQS
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43015:
Alpha7-nicotinic acetylcholine receptor bound to epibatidine and PNU-120596
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43025:
Alpha7-nicotinic acetylcholine receptor bound to GAT107
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43030:
Alpha7-nicotinic acetylcholine receptor bound to epibatidine and GAT107
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43031:
Alpha7-nicotinic acetylcholine receptor time resolved resting state
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43032:
Alpha7-nicotinic acetylcholine receptor time resolved bound to epibatidine and PNU-120596 desensitized intermediate state
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43034:
Alpha7-nicotinic acetylcholine receptor time resolved bound to epibatidine and PNU-120596 asymmetric state 1
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43035:
Alpha7-nicotinic acetylcholine receptor time resolved bound to epibatidine and PNU-120596 asymmetric state 2
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-42124:
Cryo-EM structure of human STEAP1 in complex with AMG 509 Fab
Method: single particle / : Li F, Bailis JM

EMDB-41089:
Cryo-EM structure of RSV preF in complex with Fab 2.4K
Method: single particle / : McCool RS, McLellan JS

EMDB-40462:
Human GABAA receptor alpha1-beta2-gamma2 subtype in complex with GABA plus pregnenolone sulfate
Method: single particle / : Legesse DH, Fan C, Teng J, Zhuang Y, Howard RJ, Noviello CM, Lindahl E, Hibbs RE

EMDB-40503:
Human GABAA receptor alpha1-beta2-gamma2 subtype in complex with GABA plus allopregnanolone
Method: single particle / : Legesse DH, Hibbs RE

EMDB-40506:
Human GABAA receptor alpha1-beta2-gamma2 subtype in complex with GABA plus dehydroepiandrosterone sulfate
Method: single particle / : Legesse DH, Hibbs RE

EMDB-27331:
The structure of the native cardiac thin filament junction region
Method: single particle / : Galkin VE, Risi CM

EMDB-25612:
CryoEM structure of mu-opioid receptor - Gi protein complex bound to mitragynine pseudoindoxyl (MP)
Method: single particle / : Seven AB, Qu Q, Robertson MJ, Wang H, Kobilka BK, Skiniotis G

EMDB-25613:
CryoEM structure of mu-opioid receptor - Gi protein complex bound to lofentanil (LFT)
Method: single particle / : Seven AB, Qu Q, Huang W, Robertson MJ, Kobilka BK, Skiniotis G

EMDB-24670:
SthK Y26F Closed State
Method: single particle / : Gao X, Nimigean C

EMDB-24681:
SthK R120A Closed State
Method: single particle / : Gao X, Nimigean C

EMDB-24682:
SthK Y26F Activated State
Method: single particle / : Gao X, Nimigean C

EMDB-24692:
SthK R120A Open State 1
Method: single particle / : Gao X, Nimigean C, Schmidpeter P

EMDB-24746:
SthK R120A Open State 3
Method: single particle / : Gao X, Nimigean C, Schmidpeter P

EMDB-24747:
SthK R120A Open State 2
Method: single particle / : Gao X, Nimigean C, Schmidpeter P

EMDB-25401:
5-HT2B receptor bound to LSD obtained by cryo-electron microscopy (cryoEM)
Method: single particle / : Barros-Alvarez X, Cao C, Panova O, Roth BL, Skiniotis G

EMDB-25402:
5-HT2B receptor bound to LSD in complex with heterotrimeric mini-Gq protein obtained by cryo-electron microscopy (cryoEM)
Method: single particle / : Barros-Alvarez X, Kim K, Panova O, Cao C, Roth BL, Skiniotis G

EMDB-25403:
5-HT2B receptor bound to LSD in complex with beta-arrestin1 obtained by cryo-electron microscopy (cryoEM)
Method: single particle / : Barros-Alvarez X, Cao C, Panova O, Roth BL, Skiniotis G

EMDB-27640:
Org 2274179-0-bound Thyrotropin Receptor
Method: single particle / : Faust B, Cheng Y, Manglik A

EMDB-27647:
Human thyrotropin analog TR1402 bound to human Thyrotropin receptor (extracellular domain map only)
Method: single particle / : Faust B, Cheng Y, Manglik A

EMDB-27648:
Human thyrotropin analog TR1402 bound to human Thyrotropin receptor (transmembrane domain and G protein map only)
Method: single particle / : Faust B, Cheng Y, Manglik A

EMDB-27649:
Native human TSH bound to human Thyrotropin receptor (extracellular domain map only)
Method: single particle / : Faust B, Cheng Y, Manglik A

EMDB-27650:
Native human TSH bound to human Thyrotropin receptor (transmembrane domain and G protein map only)
Method: single particle / : Faust B, Cheng Y, Manglik A

EMDB-27651:
M22 Fab bound to human Thyrotropin receptor (extracellular domain map only)
Method: single particle / : Faust B, Cheng Y, Manglik A

EMDB-27652:
M22 Fab bound to human Thyrotropin receptor (transmembrane domain and G protein map only)
Method: single particle / : Faust B, Cheng Y, Manglik A

EMDB-25762:
Human Thyrotropin receptor bound by CS-17 Inverse Agonist Fab/Org 274179-0 Antagonist
Method: single particle / : Faust B, Cheng Y, Manglik A

EMDB-25758:
Native human TSH bound to human Thyrotropin receptor in complex with miniGs399 (composite structure)
Method: single particle / : Faust B, Cheng Y, Manglik A

EMDB-25763:
M22 Agonist Autoantibody bound to Human Thyrotropin receptor in complex with miniGs399 (composite structure)
Method: single particle / : Faust B, Cheng Y, Manglik A

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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.
  • 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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