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Showing 1 - 50 of 256 items for (author: howard & g)

EMDB-41248:
Structure of AT118-H Nanobody Antagonist in Complex with the Angiotensin II Type I Receptor
Method: single particle / : Skiba MA, Kruse AC

EMDB-41249:
Structure of AT118-L Nanobody Antagonist in Complex with the Angiotensin II Type I Receptor and Losartan
Method: single particle / : Skiba MA, Kruse AC

PDB-8th3:
Structure of AT118-H Nanobody Antagonist in Complex with the Angiotensin II Type I Receptor
Method: single particle / : Skiba MA, Kruse AC

PDB-8th4:
Structure of AT118-L Nanobody Antagonist in Complex with the Angiotensin II Type I Receptor and Losartan
Method: single particle / : Skiba MA, Kruse AC

EMDB-50106:
Artificial membrane protein TMHC4_R (ROCKET)
Method: single particle / : Abramsson ML, Anden O, Howard RJ, Lindahl E, Landreh M

EMDB-50107:
Artificial membrane protein TMHC4_R (ROCKET) mutant R9A/K10A/R13A
Method: single particle / : Abramsson M, Anden O, Howard RJ, Lindahl E, Landreh M

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-42455:
Candidatus Methanomethylophilus alvus tRNAPyl in A-site of ribosome
Method: single particle / : Krahn N, Zhang J, Melnikov SV, Tharp JM, Villa A, Patel A, Howard RJ, Gabir H, Patel TR, Stetefeld J, Puglisi J, Soll D

PDB-8upt:
Candidatus Methanomethylophilus alvus tRNAPyl in A-site of ribosome
Method: single particle / : Krahn N, Zhang J, Melnikov SV, Tharp JM, Villa A, Patel A, Howard RJ, Gabir H, Patel TR, Stetefeld J, Puglisi J, Soll D

EMDB-29281:
Cryo-EM structure of STING oligomer bound to cGAMP and NVS-STG2
Method: single particle / : Li J, Canham SM, Zhang X, Bai X, Feng Y

EMDB-29282:
Cryo-EM structure of STING oligomer bound to cGAMP, NVS-STG2 and C53
Method: single particle / : Li J, Canham SM, Zhang X, Bai X, Feng Y

PDB-8flk:
Cryo-EM structure of STING oligomer bound to cGAMP and NVS-STG2
Method: single particle / : Li J, Canham SM, Zhang X, Bai X, Feng Y

PDB-8flm:
Cryo-EM structure of STING oligomer bound to cGAMP, NVS-STG2 and C53
Method: single particle / : Li J, Canham SM, Zhang X, Bai X, Feng Y

EMDB-28209:
Apo rat TRPV2 in nanodiscs, state 1
Method: single particle / : Pumroy RA, Moiseenkova-Bell VY

EMDB-28210:
Apo rat TRPV2 in nanodiscs, state 2
Method: single particle / : Pumroy RA, Moiseenkova-Bell VY

EMDB-28211:
Apo rat TRPV2 in nanodiscs, state 3
Method: single particle / : Pumroy RA, Moiseenkova-Bell VY

EMDB-28212:
rat TRPV2 in nanodiscs in the presence of weak acid at pH 5
Method: single particle / : Pumroy RA, Moiseenkova-Bell VY

PDB-8ekp:
Apo rat TRPV2 in nanodiscs, state 1
Method: single particle / : Pumroy RA, Moiseenkova-Bell VY

PDB-8ekq:
Apo rat TRPV2 in nanodiscs, state 2
Method: single particle / : Pumroy RA, Moiseenkova-Bell VY

PDB-8ekr:
Apo rat TRPV2 in nanodiscs, state 3
Method: single particle / : Pumroy RA, Moiseenkova-Bell VY

PDB-8eks:
rat TRPV2 in nanodiscs in the presence of weak acid at pH 5
Method: single particle / : Pumroy RA, Moiseenkova-Bell VY

EMDB-15649:
Pentameric ligand-gated ion channel GLIC with bound lipids
Method: single particle / : Bergh C, Rovsnik U, Howard RJ, Lindahl E

PDB-8atg:
Pentameric ligand-gated ion channel GLIC with bound lipids
Method: single particle / : Bergh C, Rovsnik U, Howard RJ, Lindahl E

EMDB-17045:
CryoEM structure of human rho1 GABAA receptor in complex with GABA
Method: single particle / : Chen F, Victor T, John C, Rebecca JH, Erik L

EMDB-17106:
CryoEM structure of human rho1 GABAA receptor apo state
Method: single particle / : Chen F, Victor T, John C, Rebecca JH, Erik L

EMDB-17107:
CryoEM structure of human rho1 GABAA receptor in complex with inhibitor TPMPA
Method: single particle / : Chen F, Victor T, John C, Rebecca JH, Erik L

EMDB-17108:
CryoEM structure of human rho1 GABAA receptor in complex with pore blocker picrotoxin
Method: single particle / : Chen F, Victor T, John C, Rebecca JH, Erik L

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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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