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Showing 1 - 50 of 631 items for (author: kim & gh)

EMDB-46884:
Q23.MD39 in Complex with Fabs from antibodies CH01 iGL and 35O22
Method: single particle / : Lin ZJ, Cui J, Du J, Habib R, Kulp D, Pallesen J

EMDB-46914:
Q23.MD39 in Complex with Fab from antibody 35O22
Method: single particle / : Lin ZJ, Cui J, Du J, Habib R, Kulp D, Pallesen J

PDB-9dhw:
Q23.MD39 in Complex with Fabs from antibodies CH01 iGL and 35O22
Method: single particle / : Lin ZJ, Cui J, Du J, Habib R, Kulp D, Pallesen J

PDB-9dim:
Q23.MD39 in Complex with Fab from antibody 35O22
Method: single particle / : Lin ZJ, Cui J, Du J, Habib R, Kulp D, Pallesen J

EMDB-71801:
Cryo ET of Native Hippocampal Glutamatergic Synapses Using Dimeric AuNP Labeling
Method: electron tomography / : Kim H, Spangler CJ, Matsui A, Elferich J, Gouaux E

EMDB-71954:
Cryo ET of Native Hippocampal Glutamatergic Synapses Using Dimeric AuNP Labeling 2
Method: electron tomography / : Kim H, Spangler CJ, Matsui A, Elferich J, Gouaux E

EMDB-71955:
Cryo ET of Native Hippocampal Glutamatergic Synapses Using Dimeric AuNP Labeling 3
Method: electron tomography / : Kim H, Spangler CJ, Matsui A, Elferich J, Gouaux E

EMDB-71956:
Cryo ET of Native Hippocampal Glutamatergic Synapses Using Dimeric AuNP Labeling 4
Method: electron tomography / : Kim H, Spangler CJ, Matsui A, Elferich J, Gouaux E

EMDB-71957:
Cryo ET of Native Hippocampal Glutamatergic Synapses Using Dimeric AuNP Labeling 5
Method: electron tomography / : Kim H, Spangler CJ, Matsui A, Elferich J, Gouaux E

EMDB-71958:
Cryo ET of Native Hippocampal Glutamatergic Synapses Using Dimeric AuNP Labeling 6
Method: electron tomography / : Kim H, Spangler CJ, Matsui A, Elferich J, Gouaux E

EMDB-71959:
Cryo ET of Native Hippocampal Glutamatergic Synapses Using Dimeric AuNP Labeling 7
Method: electron tomography / : Kim H, Spangler CJ, Matsui A, Elferich J, Gouaux E

EMDB-72056:
Cryo ET of Native Hippocampal Glutamatergic Synapses without AuNP label
Method: electron tomography / : Kim H, Spangler CJ, Matsui A, Elferich J, Gouaux E

EMDB-72057:
Cryo ET of Native Hippocampal Glutamatergic Synapses without AuNP label 2
Method: electron tomography / : Kim H, Spangler CJ, Matsui A, Elferich J, Gouaux E

EMDB-72058:
Cryo ET of Native Hippocampal Glutamatergic Synapses without AuNP label 3
Method: electron tomography / : Kim H, Spangler CJ, Matsui A, Elferich J, Gouaux E

EMDB-72059:
Cryo ET of Native Hippocampal Glutamatergic Synapses without AuNP label 4
Method: electron tomography / : Kim H, Spangler CJ, Matsui A, Elferich J, Gouaux E

EMDB-73631:
The Kaggle CryoET Object Identification Challenge: ground truth 80S ribosome
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73633:
The Kaggle CryoET Object Identification Challenge: first place 80S ribosome
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73634:
The Kaggle CryoET Object Identification Challenge: ground truth apo-ferritin
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73635:
The Kaggle CryoET Object Identification Challenge: first place apo-ferritin
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73636:
The Kaggle CryoET Object Identification Challenge: ground truth virus-like-particle
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73637:
The Kaggle CryoET Object Identification Challenge: first place virus-like-particle
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73638:
The Kaggle CryoET Object Identification Challenge: ground truth beta-galactosidase
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73639:
The Kaggle CryoET Object Identification Challenge: first place beta-galactosidase
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73640:
The Kaggle CryoET Object Identification Challenge: ground truth beta-amylase
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73641:
The Kaggle CryoET Object Identification Challenge: first place beta-amylase
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73642:
The Kaggle CryoET Object Identification Challenge: ground truth thyroglobulin
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-73643:
The Kaggle CryoET Object Identification Challenge: first place thyroglobulin
Method: subtomogram averaging / : Peck A, Hutchings J, Schwartz J, Paraan M

EMDB-70990:
Compact, ligand-free state of Manduca sexta soluble guanylate cyclase mutant beta C122S
Method: single particle / : Thomas WC, Houghton KA

EMDB-71030:
H-NOX domain local map of ligand-free of M. sexta soluble guanylate cyclase mutant beta C122S
Method: single particle / : Thomas WC, Houghton KA

EMDB-71036:
Catalytic domain local map of ligand-free M. sexta soluble guanylate cyclase mutant beta C122S
Method: single particle / : Thomas WC, Houghton KA

EMDB-71045:
Consensus map of ligand-free M. sexta soluble guanylate cyclase mutant beta C122S
Method: single particle / : Thomas WC, Houghton KA

EMDB-71150:
Consensus map of extended state M. sexta soluble guanylate cyclase mutant beta C122S with CYR715
Method: single particle / : Thomas WC, Houghton KA

EMDB-71151:
H-NOX domain local map of extended M. sexta soluble guanylate cyclase mutant beta C122S
Method: single particle / : Thomas WC, Houghton KA

EMDB-71152:
Catalytic domain local map of extended M. sexta soluble guanylate cyclase mutant beta C122S
Method: single particle / : Thomas WC, Houghton KA

EMDB-71204:
Extended, CYR715-bound state of Manduca sexta soluble guanylate cyclase mutant beta C122S
Method: single particle / : Thomas WC, Houghton KA

PDB-9oxn:
Compact, ligand-free state of Manduca sexta soluble guanylate cyclase mutant beta C122S
Method: single particle / : Thomas WC, Houghton KA

PDB-9p2r:
Extended, CYR715-bound state of Manduca sexta soluble guanylate cyclase mutant beta C122S
Method: single particle / : Thomas WC, Houghton KA

EMDB-70190:
HIV-1 N332-GT5 SOSIP in complex with mouse polyclonal antibodies (V3-glycan epitope) following mRNA multi antigen prime
Method: single particle / : Torres JL, Ozorowski G, Ward AB

EMDB-70192:
HIV-1 N332-GT5 SOSIP in complex with mouse polyclonal antibodies (V3-glycan and gp41-base epitopes) following protein multi antigen prime
Method: single particle / : Torres JL, Ozorowski G, Ward AB

EMDB-47126:
Cryo-EM map of the human TREX-2.1 complex bound to DDX39B(UAP56)
Method: single particle / : Clarke BP, Xie Y, Ren Y

EMDB-46983:
Cryo-EM structure of the human TREX-2.1 complex (LENG8/PCID2/DSS1) bound to the N-terminal motif of DDX39B(UAP56)
Method: single particle / : Clarke BP, Xie Y, Ren Y

EMDB-46985:
Cryo-EM structure of the human TREX-2.1 complex (LENG8/PCID2/DSS1) bound to DDX39B(UAP56)
Method: single particle / : Clarke BP, Xie Y, Ren Y

PDB-9dlr:
Cryo-EM structure of the human TREX-2.1 complex (LENG8/PCID2/DSS1) bound to the N-terminal motif of DDX39B(UAP56)
Method: single particle / : Clarke BP, Xie Y, Ren Y

PDB-9dlv:
Cryo-EM structure of the human TREX-2.1 complex (LENG8/PCID2/DSS1) bound to DDX39B(UAP56)
Method: single particle / : Clarke BP, Xie Y, Ren Y

EMDB-43718:
NU-refined consensus map of CXCL1-KSHV ORF74-Gi-scFv16 Complex
Method: single particle / : Sahoo B, Seo HD, Dai X, Jung J

EMDB-48095:
3DFlex refined map of CXCL1-KSHV ORF74-Gi-scFv16 Complex
Method: single particle / : Sahoo B, Seo HD, Dai X, Jung J

EMDB-48097:
Local refined cryoEM map of CXCL1-KSHV ORF74 region
Method: single particle / : Sahoo B, Seo HD, Dai X, Jung J

EMDB-48100:
Cryo-EM Structure of CXCL1-KSHV ORF74-Gi-scFv16 Complex
Method: single particle / : Sahoo B, Seo HD, Dai X, Jung J

PDB-9ejc:
Cryo-EM Structure of CXCL1-KSHV ORF74-Gi-scFv16 Complex
Method: single particle / : Sahoo B, Seo HD, Dai X, Jung J

EMDB-43717:
Cryo-EM Structure of KSHV ORF74 Apo Dimer at 2.8A
Method: single particle / : Sahoo B, Seo HD, Dai X, Jung J

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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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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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