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Showing 1 - 50 of 69 items for (author: choi & ws)

EMDB-75498:
KpSwz DUF4062 (Hexamer, catalytic mutant E97A)
Method: single particle / : Osinski A, Lopez VA, Tagliabracci VS

EMDB-75622:
KpSwz in complex with bacteriophage Bas14 Portal
Method: single particle / : Osinski A, Tagliabracci VS

EMDB-75626:
KpSwz DUF4062 (Tetramer, catalytic mutant E97A)
Method: single particle / : Osinski A, Tagliabracci VS

EMDB-75638:
Human Brain RNA Vault Shoulder bound to ADPR, focused refinement (EMPIAR-10766)
Method: single particle / : Osinski A, Tagliabracci VS

EMDB-75642:
RNA Vault waist region, focused refinement (MVP/TEP1 sample)
Method: single particle / : Osinski A, Tagliabracci VS

EMDB-75647:
RNA Vault shoulder region with BAD bound, focused refinement (MVP/TEP1 sample)
Method: single particle / : Osinski A, Tagliabracci VS

EMDB-75656:
RNA Vault with BAD bound (MVP/TEP1 sample)
Method: single particle / : Osinski A, Tagliabracci VS

EMDB-75664:
RNA Vault cap (MVP/PARP4/TEP1 sample)
Method: single particle / : Osinski A, Tagliabracci VS

EMDB-75731:
RNA Vault with ADPR bound (MVP/PARP4/TEP1 NADP sample)
Method: single particle / : Osinski A, Tagliabracci VS

EMDB-75732:
RNA Vault Shoulder with ADPR bound, compact conformation, focused refinement (MVP/PARP4/TEP1 NADP sample)
Method: single particle / : Osinski A, Tagliabracci VS

EMDB-75733:
RNA Vault Shoulder with ADPR bound, extended conformation, focused refinement (MVP/PARP4/TEP1 NADP sample)
Method: single particle / : Osinski A, Tagliabracci VS

EMDB-75735:
RNA Vault bound to PARP4 MINT, focused refinement (MVP/PARP4/TEP1 NADP sample)
Method: single particle / : Osinski A, Tagliabracci VS

EMDB-75744:
RNA Vault intermediate conformation (MVP/PARP4/TEP1 sample)
Method: single particle / : Osinski A, Tagliabracci VS

EMDB-75745:
RNA Vault extended conformation (MVP/PARP4/TEP1 sample)
Method: single particle / : Osinski A, Tagliabracci VS

PDB-10wc:
KpSwz DUF4062 (Hexamer, catalytic mutant E97A)
Method: single particle / : Osinski A, Lopez VA, Tagliabracci VS

PDB-11cq:
KpSwz in complex with bacteriophage Bas14 Portal
Method: single particle / : Osinski A, Tagliabracci VS

PDB-11cv:
KpSwz DUF4062 (Tetramer, catalytic mutant E97A)
Method: single particle / : Osinski A, Tagliabracci VS

PDB-11dr:
Human Brain RNA Vault Shoulder bound to ADPR, focused refinement (EMPIAR-10766)
Method: single particle / : Osinski A, Tagliabracci VS

PDB-11dv:
RNA Vault waist region, focused refinement (MVP/TEP1 sample)
Method: single particle / : Osinski A, Tagliabracci VS

PDB-11ee:
RNA Vault shoulder region with BAD bound, focused refinement (MVP/TEP1 sample)
Method: single particle / : Osinski A, Tagliabracci VS

PDB-11eq:
RNA Vault with BAD bound (MVP/TEP1 sample)
Method: single particle / : Osinski A, Tagliabracci VS

PDB-11fh:
RNA Vault cap (MVP/PARP4/TEP1 sample)
Method: single particle / : Osinski A, Tagliabracci VS

PDB-11jb:
RNA Vault with ADPR bound (MVP/PARP4/TEP1 NADP sample)
Method: single particle / : Osinski A, Tagliabracci VS

PDB-11jc:
RNA Vault Shoulder with ADPR bound, compact conformation, focused refinement (MVP/PARP4/TEP1 NADP sample)
Method: single particle / : Osinski A, Tagliabracci VS

PDB-11jd:
RNA Vault Shoulder with ADPR bound, extended conformation, focused refinement (MVP/PARP4/TEP1 NADP sample)
Method: single particle / : Osinski A, Tagliabracci VS

PDB-11jf:
RNA Vault bound to PARP4 MINT, focused refinement (MVP/PARP4/TEP1 NADP sample)
Method: single particle / : Osinski A, Tagliabracci VS

EMDB-51158:
Structure of the human two pore domain potassium ion channel TASK-3 (K2P9.1)
Method: single particle / : Hall PH, Rodstrom KEJ, Tucker SJ

EMDB-51159:
Structure of the human two pore domain potassium ion channel TASK-3 (K2P9.1) G236R mutant
Method: single particle / : Rodstrom KEJ, Hall PH, Tucker SJ

EMDB-51160:
Structure of the human two pore domain potassium ion channel TASK-1 (K2P3.1)
Method: single particle / : Rodstrom KEJ, Hall PH, Tucker SJ

PDB-9g9v:
Structure of the human two pore domain potassium ion channel TASK-3 (K2P9.1)
Method: single particle / : Hall PH, Rodstrom KEJ, Tucker SJ

PDB-9g9w:
Structure of the human two pore domain potassium ion channel TASK-3 (K2P9.1) G236R mutant
Method: single particle / : Rodstrom KEJ, Hall PH, Tucker SJ

PDB-9g9x:
Structure of the human two pore domain potassium ion channel TASK-1 (K2P3.1)
Method: single particle / : Rodstrom KEJ, Hall PH, Tucker SJ

EMDB-37069:
Cryo-EM structure of human TMEM87A A308M
Method: single particle / : Han A, Kim HM

EMDB-34998:
Cryo-EM structure of human TMEM87A, PE-bound
Method: single particle / : Han A, Kim HM

EMDB-35017:
Cryo-EM structure of human TMEM87A, gluconate-bound
Method: single particle / : Han A, Kim HM

EMDB-29044:
Structure of Zanidatamab bound to HER2
Method: single particle / : Worrall LJ, Atkinson CE, Sanches M, Dixit S, Strynadka NCJ

PDB-8ffj:
Structure of Zanidatamab bound to HER2
Method: single particle / : Worrall LJ, Atkinson CE, Sanches M, Dixit S, Strynadka NCJ

EMDB-28551:
RMC-5552 in complex with mTORC1 and FKBP12
Method: single particle / : Tomlinson ACA, Yano JK

EMDB-8977:
Cryo-EM structure at 3.2 A resolution of HIV-1 fusion peptide-directed antibody, A12V163-b.01, elicited by vaccination of Rhesus macaques, in complex with stabilized HIV-1 Env BG505 DS-SOSIP, which was also bound to antibodies VRC03 and PGT122
Method: single particle / : Acharya P, Eng ET, Kwong PD

EMDB-20191:
Cryo-EM structure of vaccine-elicited antibody 0PV-b.01 in complex with HIV-1 Env BG505 DS-SOSIP and antibodies VRC03 and PGT122
Method: single particle / : Gorman J, Kwong PD

PDB-6ot1:
Cryo-EM structure of vaccine-elicited antibody 0PV-b.01 in complex with HIV-1 Env BG505 DS-SOSIP and antibodies VRC03 and PGT122
Method: single particle / : Gorman J, Kwong PD

EMDB-20189:
Cryo-EM structure of vaccine-elicited antibody 0PV-a.01 in complex with HIV-1 Env BG505 DS-SOSIP and antibodies VRC03 and PGT122
Method: single particle / : Gorman J, Kwong PD

EMDB-9189:
Cryo-EM structure at 3.8 A resolution of HIV-1 fusion peptide-directed antibody, DF1W-a.01, elicited by vaccination of Rhesus macaques, in complex with stabilized HIV-1Env BG505 DS-SOSIP, which was also bound to antibodies VRC03 and PGT122
Method: single particle / : Acharya P, Xu K

EMDB-9319:
Cryo-EM structure at 4.0 A resolution of vaccine-elicited antibody 17D4 in complex with HIV-1 Env BG505 DS-SOSIP, and antibodies VRC03 and PGT122
Method: single particle / : Acharya P, Kwong PD

EMDB-9320:
Cryo-EM structure at 4.2 A resolution of vaccine-elicited antibody DFPH-a.15 in complex with HIV-1 Env BG505 DS-SOSIP, and antibodies VRC03 and PGT122
Method: single particle / : Acharya P, Kwong PD

EMDB-9359:
Cryo-EM structure of vaccine-elicited antibody 0PV-c.01 in complex with HIV-1 Env BG505 DS-SOSIP and antibodies VRC03 and PGT122
Method: single particle / : Gorman J, Kwong PD

PDB-6mpg:
Cryo-EM structure at 3.2 A resolution of HIV-1 fusion peptide-directed antibody, A12V163-b.01, elicited by vaccination of Rhesus macaques, in complex with stabilized HIV-1 Env BG505 DS-SOSIP, which was also bound to antibodies VRC03 and PGT122
Method: single particle / : Acharya P, Kwong PD

PDB-6mph:
Cryo-EM structure at 3.8 A resolution of HIV-1 fusion peptide-directed antibody, DF1W-a.01, elicited by vaccination of Rhesus macaques, in complex with stabilized HIV-1 Env BG505 DS-SOSIP, which was also bound to antibodies VRC03 and PGT122
Method: single particle / : Acharya P, Xu K, Kwong PD

PDB-6n1v:
Cryo-EM structure at 4.0 A resolution of vaccine-elicited antibody A12V163-a.01 in complex with HIV-1 Env BG505 DS-SOSIP, and antibodies VRC03 and PGT122
Method: single particle / : Acharya P, Kwong PD

PDB-6n1w:
Cryo-EM structure at 4.2 A resolution of vaccine-elicited antibody DFPH-a.15 in complex with HIV-1 Env BG505 DS-SOSIP, and antibodies VRC03 and PGT122
Method: single particle / : Acharya P, Kwong PD

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Feb 9, 2022. 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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