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Showing 1 - 50 of 170 items for (author: lau & pm)

EMDB-52336:
Docedameric RuvBL1/RuvBL2
Method: single particle / : Santo PE, Plisson-Chastang C

EMDB-52013:
Hexameric RuvBL1/RuvBL2 bound to SPAG1 C-ter
Method: single particle / : Santo PE, Plisson-Chastang C

EMDB-71396:
Cryo-EM structure of the PAC1nR-VIP-Gs complex
Method: single particle / : Piper SJ, Lu J, Sexton P, Wootten D

EMDB-71397:
Cryo-EM structure of the PAC1sR-VIP-Gs complex
Method: single particle / : Piper SJ, Lu J, Sexton P, Wootten D

EMDB-71398:
Cryo-EM structure of the PAC1sR-PACAP27-Gs complex
Method: single particle / : Piper SJ, Sexton P, Wootten D

EMDB-70663:
Cryo-EM structure of vaccine-elicited antibody T3_NB_G05 in complex with HIV Env trimer Q23-APEX-GT1.N187S
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

EMDB-70666:
Cryo-EM structure of vaccine-elicited antibody T6_P_H03 in complex with HIV Env trimer Q23-APEX-GT1
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

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-70664:
Cryo-EM structure of vaccine-elicited antibody T3_QB_G12 in complex with HIV Env trimer Q23-APEX-GT1
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

EMDB-48424:
CGRP Receptor in complex with dC2_050
Method: single particle / : Cao J, Cary BP, Belousoff MJ, Wootten DL

EMDB-50913:
Structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50914:
Structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50915:
Consensus refinement of the complex between human RNF213 and the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Nadenova K, Randow F

EMDB-50916:
Local refinement of the RNF213 CBM domain in the structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50917:
Local refinement of the RNF213 stalk domain in the structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50918:
Local refinement of the RNF213 ATPase domain in the structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50919:
Local refinement of the RNF213 C-terminal and hinge domains in the structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50920:
Local refinement of the RNF213 E3 module in the structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50921:
Local refinement of the RNF213 RING domain and the IpaH1.4 LRR domain in the structure of human RNF213 bound to the secreted effector IpaH1.4 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50922:
Consensus refinement of the complex between human RNF213 and the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50923:
Local refinement of the RNF213 CBM domain in the structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50924:
Local refinement of the RNF213 stalk domain in the structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50925:
Local refinement of the RNF213 ATPase domain in the structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50926:
Local refinement of the RNF213 C-terminal and hinge domains in the structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50928:
Local refinement of the RNF213 E3 module in the structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-50929:
Local refinement of the RNF213 RING domain and the IpaH2.5 LRR domain in the structure of human RNF213 bound to the secreted effector IpaH2.5 from Shigella flexneri
Method: single particle / : Naydenova K, Randow F

EMDB-43882:
Negative stain EM map of SARS-COV-2 (XBB) spike protein in complex with Fab COV2-3872
Method: single particle / : Binshtein E, Crowe JE

EMDB-43883:
Negative stain EM map of SARS-COV-2 (XBB) spike protein in complex with Fab COV2-3889
Method: single particle / : Binshtein E, Crowe JE

EMDB-43884:
Negative stain EM map of SARS-COV-2 (BQ 1.1) spike protein in complex with Fab COV2-3891
Method: single particle / : Binshtein E, Crowe JE

EMDB-43885:
Negative stain EM map of SARS-COV-2 (XBB) spike protein in complex with Fab COV2-3892
Method: single particle / : Binshtein E, Crowe JE

EMDB-43886:
Negative stain EM map of SARS-COV-2 (XBB) spike protein in complex with Fab COV2-3906
Method: single particle / : Binshtein E, Crowe JE

EMDB-43887:
Negative stain EM map of SARS-COV-2 (XBB) spike protein in complex with Fab COV2-3967
Method: single particle / : Binshtein E, Crowe JE

EMDB-43888:
Negative stain EM map of SARS-COV-2 (XBB) spike protein in complex with Fab COV2-4094
Method: single particle / : Binshtein E, Crowe JE

EMDB-51841:
50S subunit precursor C-CP_H68_L35
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

EMDB-51976:
Pooled 50S subunit C-CP_(L22)- precursor states supplemented with Api137
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

PDB-9h3x:
50S subunit precursor C-CP_H68_L35
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

PDB-9ha4:
Pooled 50S subunit C-CP_(L22)- precursor states supplemented with Api137
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

EMDB-51828:
50S subunit precursor d126_(L29)-/(L22)-
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

EMDB-51829:
50S subunit precursor C_(L29)-/(L22)-
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

EMDB-51830:
50S subunit precursor C_(L22)-
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

EMDB-51831:
50S subunit precursor C_(L22)-~H61
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

EMDB-51832:
50S subunit precursor C_(L22)-_GAC
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

EMDB-51833:
50S subunit precursor C-CP_(L22)-
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

EMDB-51834:
50S subunit precursor C-CP_YjgA_(L22)-~H61
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

EMDB-51835:
50S subunit precursor C-CP_YjgA_(L22)-
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

EMDB-51836:
50S subunit precursor C-CP_YjgA_L22
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

EMDB-51837:
50S subunit precursor C_L2
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

EMDB-51838:
50S subunit precursor C_H68
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

EMDB-51839:
50S subunit precursor C-CP_L2-L28
Method: single particle / : Lauer S, Nikolay R, Spahn CMT

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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

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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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