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Showing 1 - 50 of 991 items for (author: jenni & s)

EMDB-40261:
DDB1/CRBN in complex with ARV-471 and the ER ligand-binding domain
Method: single particle / : Digianantonio K, Drulyte I, Gough S, Bekes M, Taylor I

EMDB-42837:
Cryo-EM structure of GeoCas9 in complex with sgRNA and target DNA
Method: single particle / : Eggers AR, Soczek KM, Tuck OT, Doudna JA

EMDB-42838:
Cryo-EM structure of iGeoCas9 in complex with sgRNA and target DNA
Method: single particle / : Eggers AR, Soczek KM, Tuck OT, Doudna JA

PDB-8uza:
Cryo-EM structure of GeoCas9 in complex with sgRNA and target DNA
Method: single particle / : Eggers AR, Soczek KM, Tuck OT, Doudna JA

PDB-8uzb:
Cryo-EM structure of iGeoCas9 in complex with sgRNA and target DNA
Method: single particle / : Eggers AR, Soczek KM, Tuck OT, Doudna JA

EMDB-40825:
10E8-GT10.2 immunogen in complex with human Fab 10E8 and mouse Fab W6-10
Method: single particle / : Huang J, Ozorowski G, Ward AB

PDB-8sx3:
10E8-GT10.2 immunogen in complex with human Fab 10E8 and mouse Fab W6-10
Method: single particle / : Huang J, Ozorowski G, Ward AB

EMDB-40248:
CRISPR-Cas type III-D effector complex
Method: single particle / : Schwartz EA, Taylor DW

EMDB-40250:
CRISPR-Cas type III-D effector complex bound to a self-target RNA in the pre-cleavage state
Method: single particle / : Schwartz EA, Taylor DW

EMDB-40251:
CRISPR-Cas type III-D effector complex bound to self-target RNA in a post-cleavage state
Method: single particle / : Schwartz EA, Taylor DW

EMDB-40276:
CRISPR-Cas type III-D effector complex consensus map
Method: single particle / : Schwartz EA, Taylor DW

EMDB-40296:
CRISPR-Cas type III-D effector complex local refinement map
Method: single particle / : Schwartz EA, Taylor DW

EMDB-40297:
CRISPR-Cas type III-D effector complex bound to a target RNA local refinement map
Method: single particle / : Schwartz EA, Taylor DW

EMDB-40298:
CRISPR-Cas type III-D effector complex bound to a target RNA consensus map
Method: single particle / : Schwartz EA, Taylor DW

PDB-8s9t:
CRISPR-Cas type III-D effector complex
Method: single particle / : Schwartz EA, Taylor DW

PDB-8s9v:
CRISPR-Cas type III-D effector complex bound to a self-target RNA in the pre-cleavage state
Method: single particle / : Schwartz EA, Taylor DW

PDB-8s9x:
CRISPR-Cas type III-D effector complex bound to self-target RNA in a post-cleavage state
Method: single particle / : Schwartz EA, Taylor DW

EMDB-42343:
The rotavirus VP5*/VP8* conformational transition permeabilizes membranes to Ca2+ (class 5 reconstruction)
Method: single particle / : De Sautu M, Herrmann T, Jenni S, Harrison SC

EMDB-42344:
The rotavirus VP5*/VP8* conformational transition permeabilizes membranes to Ca2+ (class 6 reconstruction)
Method: single particle / : De Sautu M, Herrmann T, Jenni S, Harrison SC

PDB-8uk2:
The rotavirus VP5*/VP8* conformational transition permeabilizes membranes to Ca2+ (class 5 reconstruction)
Method: single particle / : De Sautu M, Herrmann T, Jenni S, Harrison SC

PDB-8uk3:
The rotavirus VP5*/VP8* conformational transition permeabilizes membranes to Ca2+ (class 6 reconstruction)
Method: single particle / : De Sautu M, Herrmann T, Jenni S, Harrison SC

EMDB-19132:
Structure of dynein-2 intermediate chain DYNC2I2 (WDR34) in complex with dynein-2 heavy chain DYNC2H1.
Method: single particle / : Mukhopadhyay AG, Toropova K, Daly L, Wells J, Vuolo L, Mladenov M, Seda M, Jenkins D, Stephens DJ, Roberts AJ

EMDB-19133:
Structure of dynein-2 intermediate chain DYNC2I1 (WDR60) in complex with the dynein-2 heavy chain DYNC2H1.
Method: single particle / : Mukhopadhyay AG, Toropova K, Daly L, Wells J, Vuolo L, Seda M, Jenkins D, Stephens DJ, Roberts AJ

PDB-8rgg:
Structure of dynein-2 intermediate chain DYNC2I2 (WDR34) in complex with dynein-2 heavy chain DYNC2H1.
Method: single particle / : Mukhopadhyay AG, Toropova K, Daly L, Wells J, Vuolo L, Mladenov M, Seda M, Jenkins D, Stephens DJ, Roberts AJ

PDB-8rgh:
Structure of dynein-2 intermediate chain DYNC2I1 (WDR60) in complex with the dynein-2 heavy chain DYNC2H1.
Method: single particle / : Mukhopadhyay AG, Toropova K, Daly L, Wells J, Vuolo L, Seda M, Jenkins D, Stephens DJ, Roberts AJ

EMDB-43613:
Structure of HamAB apo complex from the Escherichia coli Hachiman defense system
Method: single particle / : Tuck OT, Doudna JA

EMDB-43615:
Structure of HamB-DNA complex, conformation 1, from the Escherichia coli Hachiman defense system
Method: single particle / : Tuck OT, Doudna JA

EMDB-43616:
Structure of HamB-DNA complex, conformation 2, from the Escherichia coli Hachiman defense system
Method: single particle / : Tuck OT, Doudna JA

EMDB-43643:
Structure of HamA(E138A,K140A)B-plasmid DNA complex from the Escherichia coli Hachiman defense system
Method: single particle / : Tuck OT, Hu JJ, Doudna JA

PDB-8vx9:
Structure of HamAB apo complex from the Escherichia coli Hachiman defense system
Method: single particle / : Tuck OT, Doudna JA

PDB-8vxa:
Structure of HamB-DNA complex, conformation 1, from the Escherichia coli Hachiman defense system
Method: single particle / : Tuck OT, Doudna JA

PDB-8vxc:
Structure of HamB-DNA complex, conformation 2, from the Escherichia coli Hachiman defense system
Method: single particle / : Tuck OT, Doudna JA

PDB-8vxy:
Structure of HamA(E138A,K140A)B-plasmid DNA complex from the Escherichia coli Hachiman defense system
Method: single particle / : Tuck OT, Hu JJ, Doudna JA

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

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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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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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