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Showing 1 - 50 of 123 items for (author: bella & j)

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

PDB-8uww:
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

PDB-8uwx:
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

PDB-8uwy:
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

PDB-8uyd:
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

PDB-8uz5:
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

PDB-8uz6:
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

PDB-8uzx:
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

PDB-8uzy:
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

PDB-8v01:
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

PDB-8v0i:
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

PDB-8v0k:
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

PDB-8v0y:
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-42023:
GPR3 Orphan G-coupled Protein Receptor in complex with Dominant Negative Gs.
Method: single particle / : Russell IC, Belousoff MJ, Sexton P

PDB-8u8f:
GPR3 Orphan G-coupled Protein Receptor in complex with Dominant Negative Gs.
Method: single particle / : Russell IC, Belousoff MJ, Sexton P

EMDB-29283:
Human PTH1R in complex with PTH(1-34) and Gs
Method: single particle / : Cary BP, Belousoff MJ, Piper SJ, Wootten D, Sexton PM

EMDB-29284:
Human PTH1R in complex with PTHrP and Gs
Method: single particle / : Cary BP, Belousoff MJ, Piper SJ, Wootten D, Sexton PM

EMDB-29285:
Human PTH1R in complex with Abaloparatide and Gs
Method: single particle / : Cary BP, Belousoff MJ, Piper SJ, Wootten D, Sexton PM

EMDB-29286:
Human PTH1R in complex with M-PTH(1-14) and Gs
Method: single particle / : Cary BP, Belousoff MJ, Piper SJ, Wootten D, Sexton PM

EMDB-29287:
Human PTH1R in complex with LA-PTH and Gs
Method: single particle / : Cary BP, Belousoff MJ, Piper SJ, Wootten D, Sexton PM

PDB-8flq:
Human PTH1R in complex with PTH(1-34) and Gs
Method: single particle / : Cary BP, Belousoff MJ, Piper SJ, Wootten D, Sexton PM

PDB-8flr:
Human PTH1R in complex with PTHrP and Gs
Method: single particle / : Cary BP, Belousoff MJ, Piper SJ, Wootten D, Sexton PM

PDB-8fls:
Human PTH1R in complex with Abaloparatide and Gs
Method: single particle / : Cary BP, Belousoff MJ, Piper SJ, Wootten D, Sexton PM

PDB-8flt:
Human PTH1R in complex with M-PTH(1-14) and Gs
Method: single particle / : Cary BP, Belousoff MJ, Piper SJ, Wootten D, Sexton PM

PDB-8flu:
Human PTH1R in complex with LA-PTH and Gs
Method: single particle / : Cary BP, Belousoff MJ, Piper SJ, Wootten D, Sexton PM

EMDB-13895:
CryoEM structure of the Smc5/6-holocomplex (composite structure)
Method: single particle / : Hallett ST, Oliver AW

PDB-7qcd:
CryoEM structure of the Smc5/6-holocomplex (composite structure)
Method: single particle / : Hallett ST, Oliver AW

EMDB-27399:
Cryo-electron microscopy structure of Neisseria gonorrhoeae multidrug efflux pump MtrD with CASP peptide complex
Method: single particle / : Lyu M, Yu EW

EMDB-27400:
Cryo-electron microscopy structure of Neisseria gonorrhoeae multidrug efflux pump MtrD with colistin complex
Method: single particle / : Lyu M, Yu EW

EMDB-27401:
Cryo-electron microscopy structure of Neisseria gonorrhoeae multidrug efflux pump MtrD with LL-37 complex
Method: single particle / : Lyu M, Yu EW

PDB-8deu:
Cryo-electron microscopy structure of Neisseria gonorrhoeae multidrug efflux pump MtrD with CASP peptide complex
Method: single particle / : Lyu M, Yu EW

PDB-8dev:
Cryo-electron microscopy structure of Neisseria gonorrhoeae multidrug efflux pump MtrD with colistin complex
Method: single particle / : Lyu M, Yu EW

PDB-8dew:
Cryo-electron microscopy structure of Neisseria gonorrhoeae multidrug efflux pump MtrD with LL-37 complex
Method: single particle / : Lyu M, Yu EW

EMDB-13893:
Cryo-EM structure of the Smc5/6 holo-complex; map for head-end of complex.
Method: single particle / : OLIVER AW, Hallett ST

EMDB-13894:
CryoEM structure of the Smc5/6 holocomplex; map for hinge and arm region.
Method: single particle / : OLIVER AW, Hallett ST

EMDB-33152:
Structural basis for Gemin5 decamer-mediated mRNA binding
Method: single particle / : Guo Q, Zhao S, Zhang K, Xu C

EMDB-33187:
Structure of Gemin5 C-terminal region (protomer)
Method: single particle / : Guo Q, Zhao S, Zhang K, Xu C

PDB-7xdt:
Structural basis for Gemin5 decamer-mediated mRNA binding
Method: single particle / : Guo Q, Zhao S, Zhang K, Xu C

PDB-7xgr:
Structure of Gemin5 C-terminal region (protomer)
Method: single particle / : Guo Q, Zhao S, Zhang K, Xu C

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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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Oct 5, 2021. Nobel Prize for mechanically activated and temperature-gated ion channels

Nobel Prize for mechanically activated and temperature-gated ion channels

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  • 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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