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Showing 1 - 50 of 25,803 items for (author: hu & z)

EMDB-71798: 
Cryo-EM structure of the human inward-rectifier potassium 7.1 channel (Kir7.1) extended state
Method: single particle / : Niu Q, Vu S, Zhang R, Fu Z, Lishko PV

EMDB-71799: 
Cryo-EM structure of the human inward-rectifier potassium 7.1 channel (Kir7.1) docked state
Method: single particle / : Niu Q, Vu S, Zhang R, Fu Z, Lishko PV

EMDB-71800: 
Cryo-EM structure of the human inward-rectifier potassium 7.1 channel (Kir7.1) with enantiomer of 17-hydroxyprogesterone caproate
Method: single particle / : Niu Q, Vu S, Zhang R, Fu Z, Lishko PV

PDB-9pr5: 
Cryo-EM structure of the human inward-rectifier potassium 7.1 channel (Kir7.1) extended state
Method: single particle / : Niu Q, Vu S, Zhang R, Fu Z, Lishko PV

PDB-9pr6: 
Cryo-EM structure of the human inward-rectifier potassium 7.1 channel (Kir7.1) docked state
Method: single particle / : Niu Q, Vu S, Zhang R, Fu Z, Lishko PV

PDB-9pr7: 
Cryo-EM structure of the human inward-rectifier potassium 7.1 channel (Kir7.1) with enantiomer of 17-hydroxyprogesterone caproate
Method: single particle / : Niu Q, Vu S, Zhang R, Fu Z, Lishko PV

EMDB-70373: 
Structure of the MOR/Gi/DAMGO Complex, GTP-Bound, G-ACT-1
Method: single particle / : Robertson MJ, Skiniotis G

EMDB-70374: 
Structure of the MOR/Gi/DAMGO Complex, GTP-Bound, G-ACT-2/3 Consensus Refinement
Method: single particle / : Robertson MJ, Skiniotis G

EMDB-55369: 
Control media rat neuronal 80S ribosome - consensus
Method: subtomogram averaging / : Schwarz A, Schuman EM

EMDB-55370: 
Control media rat neuronal 80S ribosome state - decoding
Method: subtomogram averaging / : Schwarz A, Schuman EM

EMDB-55371: 
Control media rat neuronal 80S ribosome state - peptide bond formation
Method: subtomogram averaging / : Schwarz A, Schuman EM

EMDB-55372: 
Control media rat neuronal 80S ribosome state - pre-translocating
Method: subtomogram averaging / : Schwarz A, Schuman EM

EMDB-55373: 
Control media rat neuronal 80S ribosome state - hibernating I
Method: subtomogram averaging / : Schwarz A, Schuman EM

EMDB-55374: 
Nutrient deprived rat neuronal 80S ribosome - consensus
Method: subtomogram averaging / : Schwarz A, Schuman EM

EMDB-55375: 
Nutrient deprived rat neuronal 80S ribosome state - decoding
Method: subtomogram averaging / : Schwarz A, Schuman EM

EMDB-55376: 
Nutrient deprived rat neuronal 80S ribosome state - peptide bond formation
Method: subtomogram averaging / : Schwarz A, Schuman EM

EMDB-55377: 
Nutrient deprived rat neuronal 80S ribosome state - pre-translocating
Method: subtomogram averaging / : Schwarz A, Schuman EM

EMDB-55378: 
Nutrient deprived rat neuronal 80S ribosome state - hibernating II
Method: subtomogram averaging / : Schwarz A, Schuman EM

EMDB-55379: 
Nutrient deprived rat neuronal 80S ribosome state - hibernating III
Method: subtomogram averaging / : Schwarz A, Schuman EM

EMDB-55381: 
Nutrient deprived rat neuronal 80S ribosome state - hibernating IV
Method: subtomogram averaging / : Schwarz A, Schuman EM

EMDB-55383: 
Nutrient deprived rat neuronal 110S disome
Method: subtomogram averaging / : Schwarz A, Schuman EM

EMDB-55384: 
1 h nitrogen + carbon starved yeast-rat-hybrid hibernating disome
Method: subtomogram averaging / : Schwarz A, Schuman EM, Dietrich LT

EMDB-55385: 
3-4 h cold shock chicken neuronal hibernating tetrasome
Method: subtomogram averaging / : Schwarz A, Schuman EM, Dietrich LT

EMDB-49283: 
A non-averaged 3D density map of an individual particle, with a 2D lattice formed by octahedral DNA origami and ferritin, was revealed by individual particle cryo-electron tomography (Arm #09 of Particle #001).
Method: electron tomography / : Liu J, Ren G

EMDB-49285: 
A non-averaged 3D density map of an individual particle, with a 2D lattice formed by octahedral DNA origami and ferritin, was revealed by individual particle cryo-electron tomography (Arm #11 of Particle #001).
Method: electron tomography / : Liu J, Ren G

EMDB-49286: 
A 3D density map of a 2D lattice formed by octahedral DNA origami with 100% loaded ferritin, was revealed by IMOD (Tomo #1).
Method: electron tomography / : Liu J, Ren G

EMDB-49287: 
A 3D density map of a 2D lattice formed by octahedral DNA origami with 100% loaded ferritin, was revealed by IMOD (Tomo #2).
Method: electron tomography / : Liu J, Ren G

EMDB-49288: 
A 3D density map of a 2D lattice formed by octahedral DNA origami with 70% loaded ferritin, was revealed by IMOD (Tomo #3).
Method: electron tomography / : Liu J, Ren G

EMDB-49289: 
A 3D density map of a 2D lattice formed by octahedral DNA origami without ferritin, was revealed by IMOD (Tomo #4).
Method: electron tomography / : Liu J, Ren G

EMDB-64277: 
native GluN1/N2B receptor in the fully open state
Method: single particle / : Yu J, Ge JP, Chen JH

EMDB-64278: 
native GluN1/N2B receptor in the open state TMD focused map
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64279: 
native GluN1/N2A/N2B-s1 consensus map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64280: 
native GluN1/N2A/N2B-s1-TMD focused map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64281: 
native GluN1/N2A/N2B-subtype2 consensus map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64283: 
native GluN1/N2A/N2B-S2-TMD focused map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64284: 
native GluN1/N2A-subtype 1-TMD focused
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64285: 
native GluN1/N2B-subtype1 in closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64289: 
native GluN1/N2A-subtype2-consensus map
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64290: 
native GluN1/N2A-subtype2-TMD focused map
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64292: 
native GluN1/N2A-S3-consensus map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64294: 
native GluN1/N2A-S3 TMD focused map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64295: 
native GluN1/N2B receptor consensus map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64296: 
native GluN1/N2B-TMD-focused map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64297: 
native GluN1/N2B/NX-consensus map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64298: 
native GluN1/N2A/NX-TMD-focused map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64299: 
native GluN1/N2B/NX composite map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64300: 
native GluN1_N2A_NX_subtype-consensus map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64301: 
native GluN1_N2A_NX_subtype1_TMD_focused map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64302: 
native GluN1_N2A_NX_subtype1_composite_map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64303: 
native GluN1_N2A_NX_S2_consensus map
Method: single particle / : Yu J, Xu RS, Ge JP
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