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Showing 1 - 50 of 357 items for (author: howard & g)

EMDB-52416: 
a5b3 GABAAR bound to GABA and Mb25 in a desensitized state in saposin nanodiscs after short GABA treatment
Method: single particle / : Cowgill J, Fan C, Howard RJ, Lindahl E

PDB-9hum: 
a5b3 GABAAR bound to GABA and Mb25 in a desensitized state in saposin nanodiscs after short GABA treatment
Method: single particle / : Cowgill J, Fan C, Howard RJ, Lindahl E

EMDB-52312: 
a5b3 GABAA Receptor bound to GABA and Mb25 in desensitized state in detergent micelles
Method: single particle / : Cowgill J, Fan C, Howard RJ, Lindahl E

PDB-9hnq: 
a5b3 GABAA Receptor bound to GABA and Mb25 in desensitized state in detergent micelles
Method: single particle / : Cowgill J, Fan C, Howard RJ, Lindahl E

EMDB-52315: 
a5b3 GABAAR bound to Etomidate, GABA, and Mb25 in a desensitized state in saposin nanodiscs
Method: single particle / : Cowgill J, Fan C, Howard RJ, Lindahl E

PDB-9hnt: 
a5b3 GABAAR bound to Etomidate, GABA, and Mb25 in a desensitized state in saposin nanodiscs
Method: single particle / : Cowgill J, Fan C, Howard RJ, Lindahl E

EMDB-52314: 
a5b3 GABAAR bound to GABA and Mb25 in a desensitized state in saposin nanodiscs after long GABA treatment
Method: single particle / : Cowgill J, Fan C, Howard RJ, Lindahl E

PDB-9hns: 
a5b3 GABAAR bound to GABA and Mb25 in a desensitized state in saposin nanodiscs after long GABA treatment
Method: single particle / : Cowgill J, Fan C, Howard RJ, Lindahl E

EMDB-52313: 
a5b3 GABAA Receptor in 1 a5 to 4 b3 stoichiometry in desensitized state
Method: single particle / : Cowgill J, Fan C, Howard RJ, Lindahl E

PDB-9hnr: 
a5b3 GABAA Receptor in 1 a5 to 4 b3 stoichiometry in desensitized state
Method: single particle / : Cowgill J, Fan C, Howard RJ, Lindahl E

EMDB-51980: 
a5b3 GABAA Receptor resting state
Method: single particle / : Cowgill J, Fan C, Howard RJ, Lindahl E

PDB-9haa: 
a5b3 GABAA Receptor resting state
Method: single particle / : Cowgill J, Fan C, Howard RJ, Lindahl E

EMDB-51107: 
CryoEM structure of human rho1 GABAA receptor in complex with GABA and neurosteroid pregnanolone
Method: single particle / : Fan C, Howard RJ, Lindahl E

EMDB-51115: 
CryoEM structure of human rho1 GABAA receptor in complex with neurosteroid pregnanolone
Method: single particle / : Fan C, Howard RJ, Lindahl E

EMDB-51117: 
CryoEM structure of human rho1 GABAA receptor in complex with loreclezole
Method: single particle / : Fan C, Howard RJ, Lindahl E

EMDB-51118: 
CryoEM structure of human rho1 GABAA receptor in complex with GABA and loreclezole
Method: single particle / : Fan C, Howard RJ, Lindahl E

EMDB-51078: 
CryoEM structure of human rho1 GABAA receptor in complex with neurosteroid THDOC
Method: single particle / : Fan C, Howard RJ, Lindahl E

EMDB-42495: 
E. coli 70S ribosome with unmodified tRNAPro(GGG) bound to slippery P-site CCC-C codon and tRNAVal(UAC) in the A site
Method: single particle / : Kimbrough EM, Dunham CM, Nguyen HA

EMDB-42541: 
E. coli 70S ribosome with unmodified lys-tRNAPro(GGG) bound to slippery P-site CCC-C codon in the 0 frame
Method: single particle / : Kimbrough EM, Dunham CM, Nguyen HA

EMDB-42714: 
E. coli 70S ribosome with unmodified Lys-tRNAPro(GGG) bound to slippery P-site CCC-C codon in the +1 mRNA reading frame
Method: single particle / : Kimbrough EM, Dunham CM, Nguyen HA

EMDB-42721: 
E. coli 70S ribosome with unmodified P/E-tRNAPro(GGG) bound to slippery P-site CCC-C codon
Method: single particle / : Kimbrough EM, Dunham CM, Nguyen HA

EMDB-42840: 
E. coli 70S ribosome with unmodified e*/E-tRNAPro(GGG) bound to slippery P-site CCC-C codon
Method: single particle / : Kimbrough EM, Dunham CM, Nguyen HA

EMDB-42852: 
E. coli 70S ribosome with unmodified P/E-tRNAPro(GGG) bound to slippery P-site CCC-C codon
Method: single particle / : Kimbrough EM, Dunham CM, Nguyen HA

PDB-8urm: 
E. coli 70S ribosome with unmodified tRNAPro(GGG) bound to slippery P-site CCC-C codon and tRNAVal(UAC) in the A site
Method: single particle / : Kimbrough EM, Dunham CM, Nguyen HA

PDB-8utj: 
E. coli 70S ribosome with unmodified lys-tRNAPro(GGG) bound to slippery P-site CCC-C codon in the 0 frame
Method: single particle / : Kimbrough EM, Dunham CM, Nguyen HA

PDB-8ux8: 
E. coli 70S ribosome with unmodified Lys-tRNAPro(GGG) bound to slippery P-site CCC-C codon in the +1 mRNA reading frame
Method: single particle / : Kimbrough EM, Dunham CM, Nguyen HA

PDB-8uxb: 
E. coli 70S ribosome with unmodified P/E-tRNAPro(GGG) bound to slippery P-site CCC-C codon
Method: single particle / : Kimbrough EM, Dunham CM, Nguyen HA

PDB-8uzg: 
E. coli 70S ribosome with unmodified e*/E-tRNAPro(GGG) bound to slippery P-site CCC-C codon
Method: single particle / : Kimbrough EM, Dunham CM, Nguyen HA

PDB-8v03: 
E. coli 70S ribosome with unmodified P/E-tRNAPro(GGG) bound to slippery P-site CCC-C codon
Method: single particle / : Kimbrough EM, Dunham CM, Nguyen HA

EMDB-50710: 
CryoEM structure of human rho1 GABAA receptor in complex with CGP36742
Method: single particle / : Fan C, Howard RJ, Lindahl E

EMDB-50712: 
CryoEM structure of human rho1 GABAA receptor in complex with THIP
Method: single particle / : Fan C, Howard RJ, Lindahl E

EMDB-50713: 
CryoEM structure of human rho1 GABAA receptor in complex with (R)-GABOB in the desensitized state
Method: single particle / : Fan C, Howard RJ, Lindahl E

EMDB-50714: 
CryoEM structure of human rho1 GABAA receptor in complex with (R)-GABOB in the primed state
Method: single particle / : Fan C, Howard RJ, Lindahl E

PDB-9frb: 
CryoEM structure of human rho1 GABAA receptor in complex with CGP36742
Method: single particle / : Fan C, Howard RJ, Lindahl E

PDB-9fre: 
CryoEM structure of human rho1 GABAA receptor in complex with THIP
Method: single particle / : Fan C, Howard RJ, Lindahl E

PDB-9frf: 
CryoEM structure of human rho1 GABAA receptor in complex with (R)-GABOB in the desensitized state
Method: single particle / : Fan C, Howard RJ, Lindahl E

PDB-9frg: 
CryoEM structure of human rho1 GABAA receptor in complex with (S)-GABOB in the desensitized state
Method: single particle / : Fan C, Howard RJ, Lindahl E

PDB-9frh: 
CryoEM structure of human rho1 GABAA receptor in complex with (R)-GABOB in the primed state
Method: single particle / : Fan C, Howard RJ, Lindahl E

PDB-9fri: 
CryoEM structure of human rho1 GABAA receptor in complex with (S)-GABOB in the primed state
Method: single particle / : Fan C, Howard RJ, Lindahl E

EMDB-19991: 
3DFlex refinement of the CryoEM structure of DeCLIC nanodisc with 10mM EDTA in sym-like state
Method: single particle / : Fan C, Howard RJ, Lindahl E

EMDB-19993: 
3DFlex refinement of the CryoEM structure of DeCLIC nanodisc with 10mM EDTA in asym state
Method: single particle / : Fan C, Howard RJ, Lindahl E

EMDB-19994: 
Non-uniform refinement of the CryoEM structure of DeCLIC nanodisc with 10mM calcium
Method: single particle / : Fan C, Howard RJ, Lindahl E

EMDB-19995: 
Non-uniform refinement of the CryoEM structure of DeCLIC nanodisc with 10mM EDTA in asym state
Method: single particle / : Fan C, Howard RJ, Lindahl E

EMDB-19996: 
3DFlex refinement of the CryoEM structure of DeCLIC nanodisc with 10mM calcium
Method: single particle / : Fan C, Howard RJ, Lindahl E

EMDB-19997: 
Non-uniform refinement of the CryoEM structure of DeCLIC nanodisc with 10mM EDTA in sym-like state
Method: single particle / : Fan C, Howard RJ, Lindahl E

PDB-9ev1: 
3DFlex refinement of the CryoEM structure of DeCLIC nanodisc with 10mM EDTA in sym-like state
Method: single particle / : Fan C, Howard RJ, Lindahl E

PDB-9ev7: 
3DFlex refinement of the CryoEM structure of DeCLIC nanodisc with 10mM EDTA in asym state
Method: single particle / : Fan C, Howard RJ, Lindahl E

PDB-9ev8: 
Non-uniform refinement of the CryoEM structure of DeCLIC nanodisc with 10mM calcium
Method: single particle / : Fan C, Howard RJ, Lindahl E

PDB-9ev9: 
Non-uniform refinement of the CryoEM structure of DeCLIC nanodisc with 10mM EDTA in asym state
Method: single particle / : Fan C, Howard RJ, Lindahl E

PDB-9eva: 
3DFlex refinement of the CryoEM structure of DeCLIC nanodisc with 10mM calcium
Method: single particle / : Fan C, Howard RJ, Lindahl E
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