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Showing 1 - 50 of 151 items for (author: ryan & cm)

EMDB-44865:
Local refinement of DRD2 bound to LSD in complex with a mini-GoA and scFv16 obtained by cryo-electron microscopy (cryoEM)
Method: single particle / : Kim K, Gumpper RH, Fay JF, Roth BL

EMDB-44866:
Global reconstruction of DRD2 bound to LSD in complex with a mini-GoA and scFv16 obtained by cryo-electron microscopy (cryoEM)
Method: single particle / : Kim K, Gumpper RH, Fay JF, Roth BL

EMDB-48468:
Structure of native murine cardiac thin filament at pCa=5.8 in Ca2+-free rotated state (upper strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48469:
Structure of native murine cardiac thin filament at pCa=5.8 in Ca2+-free tilted state (upper strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48470:
Structure of native murine cardiac thin filament at pCa=5.8 in Ca2+-bound partially activated state (upper strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48471:
Structure of native murine cardiac thin filament at pCa=5.8 in Ca2+-bound fully activated state (upper strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48476:
Structure of native murine cardiac thin filament variant I79N in troponin T at pCa=5.8 in Ca2+-free state (lower strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-47449:
The structure of the junction region of the wild-type murine native cardiac thin filament in Ca2+-free state
Method: single particle / : Galkin VE, Risi CM

EMDB-48467:
Structure of native murine cardiac thin filament at pCa=5.8 in Ca2+-free rotated state (lower strand)
Method: single particle / : Galkin VE, Risi CM

EMDB-48477:
Structure of native murine cardiac thin filament variant I79N in troponin T at pCa=5.8 in Ca2+-bound fully activated state (lower strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48482:
Structure of native murine cardiac thin filament variant I79N in troponin T at pCa=5.8 in Ca2+-bound partially activated state (upper strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48483:
Structure of native murine cardiac thin filament variant I79N in troponin T at pCa=5.8 in Ca2+-bound fully activated state (upper strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48484:
Structure of native murine cardiac thin filament variant I79N in troponin T at pCa=5.8 in Ca2+-bound partially activated state (lower strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48447:
Structure of native murine cardiac thin filament at pCa=5.8 in Ca2+-free state (lower strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48448:
Structure of native murine cardiac thin filament at pCa=5.8 in Ca2+-bound partially activated state (lower strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48449:
Structure of native murine cardiac thin filament at pCa=5.8 in Ca2+-free tilted state (lower strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48450:
Structure of native murine cardiac thin filament at pCa=5.8 in Ca2+-bound fully activated state (lower strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48451:
Structure of native murine cardiac thin filament at pCa=5.8 in Ca2+-free state (upper strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48452:
Structure of native murine cardiac thin filament variant I79N in troponin T at pCa=5.8 in Ca2+-free rotated state (lower strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48453:
Structure of native murine cardiac thin filament variant I79N in troponin T at pCa=5.8 in Ca2+-free tilted state (lower strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48454:
Structure of native murine cardiac thin filament variant I79N in troponin T at pCa=5.8 in Ca2+-free state (upper strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48455:
Structure of native murine cardiac thin filament variant I79N in troponin T at pCa=5.8 in Ca2+-free rotated state (upper strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-48456:
Structure of native murine cardiac thin filament variant I79N in troponin T at pCa=5.8 in Ca2+-free tilted state (upper strand)
Method: single particle / : Risi CM, Galkin VE

EMDB-53281:
Single particle cryo-EM structure of the multidrug efflux pump MdtF from Escherichia coli
Method: single particle / : Lawrence R, Adams C, Sousa JS, Ahdash Z, Reading E

EMDB-53282:
Single particle cryo-EM structure of MdtF V610F
Method: single particle / : Lawrence R, Adams C, Sousa JS, Ahdash Z, Reading E

EMDB-53283:
Single particle cryo-EM structure of MdtF V610F with bound Rhodamine 6G
Method: single particle / : Lawrence R, Adams C, Sousa JS, Ahdash Z, Reading E

PDB-9qpr:
Single particle cryo-EM structure of the multidrug efflux pump MdtF from Escherichia coli
Method: single particle / : Lawrence R, Adams C, Sousa JS, Ahdash Z, Reading E

PDB-9qps:
Single particle cryo-EM structure of MdtF V610F
Method: single particle / : Lawrence R, Adams C, Sousa JS, Ahdash Z, Reading E

PDB-9qpt:
Single particle cryo-EM structure of MdtF V610F with bound Rhodamine 6G
Method: single particle / : Lawrence R, Adams C, Sousa JS, Ahdash Z, Reading E

EMDB-47003:
Human muscle nAChR apo state
Method: single particle / : Li H, Hibbs RE

EMDB-47005:
Human muscle nAChR ACh-bound state
Method: single particle / : Li H, Hibbs RE

EMDB-47007:
Human muscle nAChR with two fab1b-bound
Method: single particle / : Li H, Hibbs RE

EMDB-47008:
Human muscle nAChR with one fab1b-bound
Method: single particle / : Li H, Hibbs RE

EMDB-47009:
Human muscle nAChR with fab2-bound
Method: single particle / : Li H, Hibbs RE

EMDB-47013:
Human muscle nAChR with fab3-bound
Method: single particle / : Li H, Hibbs RE

EMDB-47014:
Human muscle nAChR with fab6-bound
Method: single particle / : Li H, Hibbs RE

EMDB-47015:
Human muscle nAChR with fab7-bound
Method: single particle / : Li H, Hibbs RE

EMDB-45878:
Native human GABAA receptor of beta2-alpha1-beta2-alpha1-gamma2 assembly
Method: single particle / : Zhou J, Hibbs RE, Noviello CM

EMDB-45884:
Native human GABAA receptor of beta2-alpha1-gamma2-beta2-alpha2 assembly
Method: single particle / : Zhou J, Hibbs RE, Noviello CM

EMDB-45890:
Native human GABAA receptor of beta3-alpha1-beta2-alpha2-gamma2 assembly
Method: single particle / : Zhou J, Hibbs RE, Noviello CM

EMDB-45894:
Native human GABAA receptor of beta2-alpha1-beta2-alpha2-gamma2 assembly
Method: single particle / : Zhou J, Hibbs RE, Noviello CM

EMDB-45908:
Native human GABAA receptor of beta2-alpha1-beta3-alpha2-gamma2 assembly
Method: single particle / : Zhou J, Hibbs RE, Noviello CM

EMDB-45914:
Native human GABAA receptor of beta2-alpha1-beta2-alpha3-gamma2 assembly
Method: single particle / : Zhou J, Hibbs RE, Noviello CM

EMDB-45920:
Native human GABAA receptor of beta2-alpha1-gamma2-beta1-alpha2 assembly
Method: single particle / : Zhou J, Hibbs RE, Noviello CM

EMDB-45980:
Native human GABAA receptor of beta3-alpha1-gamma2-beta3-alpha2 assembly
Method: single particle / : Zhou J, Hibbs RE, Noviello CM

EMDB-45983:
Native human GABAA receptor of beta2-alpha1-beta3-alpha1-gamma2 assembly
Method: single particle / : Zhou J, Hibbs RE, Noviello CM

EMDB-45984:
Native human GABAA receptor of beta2-alpha1-beta1-alpha2-gamma2 assembly
Method: single particle / : Zhou J, Hibbs RE, Noviello CM

EMDB-45985:
Native human GABAA receptor of beta3-alpha1-gamma2-beta2-alpha2 assembly
Method: single particle / : Zhou J, Hibbs RE, Noviello CM

EMDB-45986:
Native human GABAA receptor of beta2-alpha1-beta1-beta1-gamma2 assembly
Method: single particle / : Zhou J, Hibbs RE, Noviello CM

EMDB-47132:
Human GABAA receptor of beta2-alpha1-beta2-alpha1-gamma2 subtype in complex with GABA plus Lamotrigine
Method: single particle / : Zhou J, Hibbs RE, Noviello CM

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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.

Related info.:EMDB header

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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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Related info.:Covid-19 info / Mar 5, 2020. Novel coronavirus structure data

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