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Showing 1 - 50 of 610 items for (author: arthur & c)

EMDB-72825:
Human delta opioid receptor complex with mini-Gi and agonist DADLE
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-72826:
Human delta opioid receptor complex with mini-Gi and agonist DADLE and allosteric modulator MIPS3614
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-72827:
Human delta opioid receptor complex with mini-Gi and agonist DADLE and allosteric modulator MIPS3983
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-72828:
receptor focused refinement of human delta opioid receptor complex with mini-Gi and DADLE
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-72829:
receptor focused refinement of the human delta opioid complex with mini-Gi, agonist DADLE and allosteric modulator MIPS3614
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-72830:
receptor focused refinement of human delta opioid receptor complex with mini-Gi, agonist DADLE and allosteric modulator MIPS3983
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-72831:
conensus map of the human delta opioid complex with mini-Gi, agonist DADLE and allosteric modulator BMS-986187
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-72832:
receptor focused refinement of human delta opioid complex with mini-Gi, agonist DADLE and allosteric modulator BMS-986187
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

PDB-9ydp:
Human delta opioid receptor complex with mini-Gi and agonist DADLE
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

PDB-9ydq:
Human delta opioid receptor complex with mini-Gi and agonist DADLE and allosteric modulator MIPS3614
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

PDB-9ydr:
Human delta opioid receptor complex with mini-Gi and agonist DADLE and allosteric modulator MIPS3983
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-49646:
Magnesium ions-bound closed-state cryo-EM structure of human TRPV6 in cNW11 nanodiscs
Method: single particle / : Neuberger A, Sobolevsky AI

PDB-9nq9:
Magnesium ions-bound closed-state cryo-EM structure of human TRPV6 in cNW11 nanodiscs
Method: single particle / : Neuberger A, Sobolevsky AI

EMDB-48405:
CRISPR-associated deaminase Cad1 in cA4 bound in hexamer form refined against the consensus map
Method: single particle / : Li H, Zhao Y, Whyms C

PDB-9mmw:
CRISPR-associated deaminase Cad1 in cA4 bound in hexamer form refined against the consensus map
Method: single particle / : Li H, Zhao Y, Whyms C

EMDB-71531:
Angiopoietin-2 in complex with engineered conformationally rigid Fab 5A12.6DS, used for comparison with Fab 5A12.WT
Method: single particle / : Kung J, Johnson MC, Tegunov D, Jao CC, Wu P, Oh A, Lin M, Daria JM, Koth CM, Arthur CP, Rohou A, Sudhamsu J

EMDB-71532:
Angiopoietin-2 in complex with Fab 5A12.WT, used for comparison with Fab 5A12.6DS
Method: single particle / : Kung J, Johnson MC, Tegunov D, Jao CC, Wu P, Oh A, Lin M, Daria JM, Koth CM, Arthur CP, Rohou A, Sudhamsu J

EMDB-48111:
Human M5 muscarinic acetylcholine receptor complex with mini-Gq and iperoxo
Method: single particle / : Burger WAC, Mobbs JI, Thal DM

PDB-9ek0:
Human M5 muscarinic acetylcholine receptor complex with mini-Gq and iperoxo
Method: single particle / : Burger WAC, Mobbs JI, Thal DM

EMDB-62581:
Mechanistic insights into the versatile stoichiometry and biased signaling of the apelin receptor-arrestin complex
Method: single particle / : Yue Y, Wu LJ, Xu F

EMDB-62582:
Cryo-EM structure of dimeric APJR and two Beta-arrestins complex with small molecules
Method: single particle / : Yue Y, Wu LJ, Xu F

EMDB-62583:
Cryo-EM structure of dimeric APJR and one Beta-arrestin complex with small molecules
Method: single particle / : Yue Y, Wu LJ, Xu F

PDB-9kuv:
Mechanistic insights into the versatile stoichiometry and biased signaling of the apelin receptor-arrestin complex
Method: single particle / : Yue Y, Wu LJ, Xu F

PDB-9kuw:
Cryo-EM structure of dimeric APJR and two Beta-arrestins complex with small molecules
Method: single particle / : Yue Y, Wu LJ, Xu F

PDB-9kux:
Cryo-EM structure of dimeric APJR and one Beta-arrestin complex with small molecules
Method: single particle / : Yue Y, Wu LJ, Xu F

EMDB-44444:
PaMsbA in an occluded, outward conformation
Method: single particle / : Bahramimoghaddam H, Laganowsky A

EMDB-44445:
PaMsbA in an open, outward conformation
Method: single particle / : Bahramimoghaddam H, Laganowsky A

PDB-9bd6:
PaMsbA in an occluded, outward conformation
Method: single particle / : Bahramimoghaddam H, Laganowsky A

PDB-9bd7:
PaMsbA in an open, outward conformation
Method: single particle / : Bahramimoghaddam H, Laganowsky A

EMDB-70417:
CryoEM structure of Cad1 in App form, symmetry expanded dimer, refined against a composite map
Method: single particle / : Zhao Y, Li H

EMDB-70419:
Consensus map of Cad1 in App form
Method: single particle / : Zhao Y, Li H

EMDB-70422:
CryoEM structure of Cad1 bound with cA4 and ATP, symmetry expanded dimer refined against a composite map
Method: single particle / : Zhao Y, Li H

EMDB-70423:
Focused map on CARF domain of Cad1 in Apo form
Method: single particle / : Zhao Y, Li H

EMDB-70424:
Focused map for the ADA domain of Cad1 in Apo form
Method: single particle / : Zhao Y, Li H

EMDB-70425:
Consensus map of Cad1 bound with cA4 and ATP
Method: single particle / : Zhao Y, Li H

EMDB-70426:
Focused map of the CARF domain of Cad1 bound with cA4 and ATP
Method: single particle / : Zhao Y, Li H

EMDB-70427:
Focused map of the ADA domain of Cad1 bound with cA4 and ATP
Method: single particle / : Zhao Y, Li H

EMDB-70428:
CryoEM structure of Cad1 bound with cA4 and ATP, hexamer with three intact dimers
Method: single particle / : Zhao Y, Li H

EMDB-70429:
CryoEM structure of Cad1 bound with cA4 and ATP, hexamer with one intact dimer
Method: single particle / : Zhao Y, Li H

EMDB-70430:
CryoEM structure of Cad1 bound with cA4 and ATP, hexamer with two intact dimers
Method: single particle / : Zhao Y, Li H

PDB-9of1:
CryoEM structure of Cad1 in Apo form, symmetry expanded dimer, refined against a composite map
Method: single particle / : Zhao Y, Li H

PDB-9ofb:
CryoEM structure of Cad1 bound with cA4 and ATP, symmetry expanded dimer refined against a composite map
Method: single particle / : Zhao Y, Li H

PDB-9ofc:
CryoEM structure of Cad1 bound with cA4 and ATP, hexamer with three intact dimers
Method: single particle / : Zhao Y, Li H

PDB-9ofd:
CryoEM structure of Cad1 bound with cA4 and ATP, hexamer with one intact dimer
Method: single particle / : Zhao Y, Li H

PDB-9ofe:
CryoEM structure of Cad1 bound with cA4 and ATP, hexamer with two intact dimers
Method: single particle / : Zhao Y, Li H

EMDB-47879:
Human adenosine A3 receptor Gi1 complex bound to adenosine
Method: single particle / : Zhang L, Mobbs JI, Glukhova A, Thal DM

EMDB-47880:
Human adenosine A3 receptor Gi complex (mini-Gsi chimera) bound to Piclidenoson (CF101, IB-MECA)
Method: single particle / : Zhang L, Mobbs JI, Glukhova A, Thal DM

EMDB-47994:
Focused refinement map of the human A3 adenosine receptor bound to adenosine (receptor only)
Method: single particle / : Zhang L, Mobbs JI, Glukhova A, Thal DM

EMDB-47998:
Focused refinement map of the human A3 adenosine receptor bound to Piclidenoson (receptor only)
Method: single particle / : Zhang L, Mobbs JI, Glukhova A, Thal DM

EMDB-48063:
Consensus map for A3AR-LUF7602 complex.
Method: single particle / : Zhang L, Mobbs JI, Glukhova A, Thal DM

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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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