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Showing 1 - 50 of 59 items for (author: william & sheffler)

EMDB-42070:
DpHF18 filament
Method: helical / : Lynch EM, Shen H, Kollman JM, Baker D

EMDB-42075:
DpHF7 filament
Method: helical / : Lynch EM, Farrell D, Shen H, Kollman JM, DiMaio F, Baker D

EMDB-42088:
DpHF19 filament
Method: helical / : Lynch EM, Shen H, Kollman JM, Baker D

PDB-8uao:
DpHF18 filament
Method: helical / : Lynch EM, Shen H, Kollman JM, Baker D

PDB-8ub3:
DpHF7 filament
Method: helical / : Lynch EM, Farrell D, Shen H, Kollman JM, DiMaio F, Baker D

PDB-8ubg:
DpHF19 filament
Method: helical / : Lynch EM, Shen H, Kollman JM, Baker D

EMDB-27031:
Accurate computational design of genetically encoded 3D protein crystals
Method: single particle / : Li Z, Borst AJ, Baker D

EMDB-40926:
CryoEM Structure of Computationally Designed Nanocage O32-ZL4
Method: single particle / : Weidle C, Borst A

PDB-8cwy:
Accurate computational design of genetically encoded 3D protein crystals
Method: single particle / : Li Z, Borst AJ, Baker D

PDB-8szz:
CryoEM Structure of Computationally Designed Nanocage O32-ZL4
Method: single particle / : Weidle C, Borst A

EMDB-40557:
Cryo-EM structure of designed Influenza HA binder, HA_20, bound to Influenza HA (Strain: Iowa43)
Method: single particle / : Borst AJ, Bennett NR

PDB-8sk7:
Cryo-EM structure of designed Influenza HA binder, HA_20, bound to Influenza HA (Strain: Iowa43)
Method: single particle / : Borst AJ, Bennett NR

EMDB-29502:
Fast and versatile sequence- independent protein docking for nanomaterials design using RPXDock
Method: single particle / : Skotheim R, Borst AJ, Baker D

PDB-8fwd:
Fast and versatile sequence- independent protein docking for nanomaterials design using RPXDock
Method: single particle / : Skotheim R, Borst AJ, Baker D

EMDB-28862:
KWOCA 4 nanoparticle
Method: single particle / : Antanasijevic A, Ward AB

EMDB-28929:
Improving the secretion of designed protein assemblies through negative design of cryptic transmembrane domains - KWOCA51
Method: single particle / : Borst AJ, King NP

EMDB-23168:
Dihedral ring D2_Wm-01
Method: single particle / : Park YJ, Veesler D

EMDB-23169:
Dihedral ring D2_Wm-02
Method: single particle / : Park YJ, Veesler D

EMDB-23170:
Dihedral ring D2_Wm-01_trunc
Method: single particle / : Park YJ, Veesler D

EMDB-23171:
Point Group nanocage T_Wm-1606
Method: single particle / : Park YJ, Veesler D

EMDB-23172:
Point Group nanocage I32_Wm-42
Method: single particle / : Park YJ, Veesler D

EMDB-23173:
Crown C5_Crn_HF-12_26
Method: single particle / : Park YJ, Veesler D

EMDB-23174:
Crown C5_Crn_HF-12_26
Method: single particle / : Park YJ, Veesler D

EMDB-23265:
Computationally designed icosahedral antibody nanocage with Fc i52.3+Fc
Method: single particle / : Dang HV, Veesler D

EMDB-23266:
Computationally designed octahedral antibody nanocage with Fc o42.1+Fc
Method: single particle / : Dang HV, Veesler D

EMDB-22305:
CryoEM structure of designed helical fusion protein C4_nat_HFuse-7900
Method: single particle / : Redler RL, Edman NI

EMDB-22306:
CryoEM map of designed helical fusion protein C5_HFuse-3921
Method: single particle / : Redler RL, Edman NI, Baker D, Ekiert D, Bhabha G

PDB-6xss:
CryoEM structure of designed helical fusion protein C4_nat_HFuse-7900
Method: single particle / : Redler RL, Edman NI, Baker D, Ekiert D, Bhabha G

EMDB-21162:
De novo designed tetrahedral nanoparticle T33_dn2
Method: single particle / : Ward AB, Antanasijevic A

EMDB-21163:
De novo designed tetrahedral nanoparticle T33_dn5
Method: single particle / : Ward AB, Antanasijevic A

EMDB-21164:
De novo designed tetrahedral nanoparticle T33_dn10
Method: single particle / : Ward AB, Antanasijevic A

EMDB-21165:
De novo designed octahedral nanoparticle O43_dn18
Method: single particle / : Ward AB, Antanasijevic A

EMDB-21166:
De novo designed icosahedral nanoparticle I53_dn5
Method: single particle / : Ward AB, Antanasijevic A

EMDB-21167:
BG505-SOSIP-T33_dn2A nanoparticle fusion component
Method: single particle / : Ward AB, Antanasijevic A

EMDB-21168:
BG505-SOSIP-T33_dn2A nanoparticle fusion component in complex with VRC01-Fab
Method: single particle / : Ward AB, Antanasijevic A

EMDB-21169:
De novo designed tetrahedral nanoparticle T33_dn2 presenting BG505-SOSIP
Method: single particle / : Ward AB, Antanasijevic A

EMDB-21170:
Tetrahedral nanoparticle T33_dn10 presenting BG505-SOSIP
Method: single particle / : Ward AB, Antanasijevic A

EMDB-21171:
Icosahedral Nanoparticle I53_dn5 presenting BG505-SOSIP
Method: single particle / : Ward AB, Antanasijevic A

EMDB-21172:
De novo designed tetrahedral nanoparticle T33_dn10
Method: single particle / : Antanasijevic A, Ward AB

EMDB-21173:
De novo designed octahedral nanoparticle O43_dn18
Method: single particle / : Antanasijevic A, Ward AB

EMDB-21174:
De novo designed icosahedral nanoparticle I53_dn5
Method: single particle / : Antanasijevic A, Ward AB

PDB-6vfh:
De novo designed tetrahedral nanoparticle T33_dn10
Method: single particle / : Antanasijevic A, Ward AB

PDB-6vfi:
De novo designed octahedral nanoparticle O43_dn18
Method: single particle / : Antanasijevic A, Ward AB

PDB-6vfj:
De novo designed icosahedral nanoparticle I53_dn5
Method: single particle / : Antanasijevic A, Ward AB

EMDB-20261:
Single Particle Electron Cryo-Microscopy Reconstruction of BG505 SOSIP-I53-50NP
Method: single particle / : Berndsen ZT, Nieusma T, Ward AB

PDB-6p6f:
BG505 SOSIP-I53-50NP
Method: single particle / : Berndsen ZT, Ward AB

EMDB-9016:
DHF46 filament
Method: helical / : Lynch EM, Shen H

EMDB-9017:
DHF58 filament
Method: helical / : Lynch EM, Shen H

EMDB-9018:
DHF79 filament
Method: helical / : Lynch EM, Shen H

EMDB-9019:
DHF91 filament
Method: helical / : Lynch EM, Shen H

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Feb 9, 2022. New format data for meta-information of EMDB entries

New format data for meta-information of EMDB entries

  • Version 3 of the EMDB header file is now the official format.
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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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