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Showing 1 - 50 of 284 items for (author: mian & d)

EMDB-49463:
Computationally optimized broadly reactive influenza B hemagglutinin BC2 bound by antibodies #46 and #3978
Method: single particle / : Dzimianski JV, Kunkel I, Balasco Serrao VH, DuBois RM

EMDB-49475:
Computationally optimized broadly reactive influenza B hemagglutinin BC2 bound by antibody #3978
Method: single particle / : Dzimianski JV, Kunkel I, Balasco Serrao VH, DuBois RM

EMDB-49476:
Computationally optimized broadly reactive influenza B hemagglutinin BC2 bound by antibodies #46 and #3978
Method: single particle / : Dzimianski JV, Kunkel I, Balasco Serrao VH, DuBois RM

EMDB-49477:
Computationally optimized broadly reactive influenza B hemagglutinin BC2 bound by antibody #46
Method: single particle / : Dzimianski JV, Kunkel I, Balasco Serrao VH, DuBois RM

PDB-9nj3:
Computationally optimized broadly reactive influenza B hemagglutinin BC2 bound by antibodies #46 and #3978
Method: single particle / : Dzimianski JV, Kunkel I, Balasco Serrao VH, DuBois RM

PDB-9nj6:
Computationally optimized broadly reactive influenza B hemagglutinin BC2 bound by antibody #3978
Method: single particle / : Dzimianski JV, Kunkel I, Balasco Serrao VH, DuBois RM

PDB-9nj9:
Computationally optimized broadly reactive influenza B hemagglutinin BC2 bound by antibodies #46 and #3978
Method: single particle / : Dzimianski JV, Kunkel I, Balasco Serrao VH, DuBois RM

PDB-9nja:
Computationally optimized broadly reactive influenza B hemagglutinin BC2 bound by antibody #46
Method: single particle / : Dzimianski JV, Kunkel I, Balasco Serrao VH, DuBois RM

EMDB-75514:
Structure of amplified aSyn filament by using seed amplification assay (SAA) from MSA patient CSF.
Method: helical / : Banerjee V, Wang F, Baker ML, Serysheva II, Soto C

PDB-10xu:
Structure of amplified aSyn filament by using seed amplification assay (SAA) from MSA patient CSF.
Method: helical / : Banerjee V, Wang F, Baker ML, Serysheva II, Soto C

EMDB-72825:
Human delta opioid receptor complex with mini-Gi and agonist DADLE
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-72826:
Human delta opioid receptor complex with mini-Gi and agonist DADLE and allosteric modulator MIPS3614
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-72827:
Human delta opioid receptor complex with mini-Gi and agonist DADLE and allosteric modulator MIPS3983
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-72828:
receptor focused refinement of human delta opioid receptor complex with mini-Gi and DADLE
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-72829:
receptor focused refinement of the human delta opioid complex with mini-Gi, agonist DADLE and allosteric modulator MIPS3614
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-72830:
receptor focused refinement of human delta opioid receptor complex with mini-Gi, agonist DADLE and allosteric modulator MIPS3983
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-72831:
conensus map of the human delta opioid complex with mini-Gi, agonist DADLE and allosteric modulator BMS-986187
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-72832:
receptor focused refinement of human delta opioid complex with mini-Gi, agonist DADLE and allosteric modulator BMS-986187
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

PDB-9ydp:
Human delta opioid receptor complex with mini-Gi and agonist DADLE
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

PDB-9ydq:
Human delta opioid receptor complex with mini-Gi and agonist DADLE and allosteric modulator MIPS3614
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

PDB-9ydr:
Human delta opioid receptor complex with mini-Gi and agonist DADLE and allosteric modulator MIPS3983
Method: single particle / : Mobbs JI, Venugopal H, Thal DM

EMDB-49152:
Intermembrane lipid transport complex LetAB from Escherichia coli (Composite Map 2)
Method: single particle / : Santarossa CC, Bhabha G, Ekiert DC

PDB-9n8x:
Intermembrane lipid transport complex LetAB from Escherichia coli (Composite model corresponding to Map 2)
Method: single particle / : Santarossa CC, Bhabha G, Ekiert DC

EMDB-71559:
Cryo-EM structure of CCR6 bound by PF-07054894 and OXM2
Method: single particle / : Wasilko DJ, Wu H

PDB-9pee:
Cryo-EM structure of CCR6 bound by PF-07054894 and OXM2
Method: single particle / : Wasilko DJ, Wu H

EMDB-47128:
Cryo-EM structure of the T33-549 tetrahedral cage
Method: single particle / : Redler R, Coudray N, Lubner J, Wang S, Baker D, Ekiert DC, Bhabha G

PDB-9drl:
Cryo-EM structure of the T33-549 tetrahedral cage
Method: single particle / : Redler R, Coudray N, Lubner J, Wang S, Baker D, Ekiert DC, Bhabha G

EMDB-47024:
TJ5-1 Fab in complex with NG2 COBRA hemagglutinin
Method: single particle / : Nagashima K, Mousa J

EMDB-47071:
#1664 Fab in complex with NG2 COBRA hemagglutinin
Method: single particle / : Nagashima K, Mousa J

PDB-9dn2:
TJ5-1 Fab in complex with NG2 COBRA hemagglutinin
Method: single particle / : Nagashima K, Mousa J

PDB-9do2:
#1664 Fab in complex with NG2 COBRA hemagglutinin
Method: single particle / : Nagashima K, Mousa J

EMDB-49148:
Intermembrane lipid transport complex LetAB from Escherichia coli (Crosslinked, Composite Map 1)
Method: single particle / : Santarossa CC, Bhabha G, Ekiert DC

PDB-9n8w:
Intermembrane lipid transport complex LetAB from Escherichia coli (Crosslinked, Composite model corresponding to Map 1)
Method: single particle / : Santarossa CC, Bhabha G, Ekiert DC

EMDB-49145:
Local refinement of crosslinked LetA and LetB MCE Rings 1 and 2 (Map 1a)
Method: single particle / : Santarossa CC, Bhabha G, Ekiert DC

EMDB-49146:
Local refinement of crosslinked LetB MCE Rings 2, 3 and 4 (Map 1b)
Method: single particle / : Santarossa CC, Bhabha G, Ekiert DC

EMDB-49147:
Local refinement of crosslinked LetB MCE Rings 5, 6 and 7 (Map 1c)
Method: single particle / : Santarossa CC, Bhabha G, Ekiert DC

EMDB-49149:
Local refinement of LetA and LetB MCE Rings 1 and 2 (Map 2a)
Method: single particle / : Santarossa CC, Bhabha G, Ekiert DC

EMDB-49150:
Local refinement of LetB MCE Rings 2, 3 and 4 (Map 2b)
Method: single particle / : Santarossa CC, Bhabha G, Ekiert DC

EMDB-49151:
Local refinement of LetB MCE Rings 5, 6 and 7 (Map 2c)
Method: single particle / : Santarossa CC, Bhabha G, Ekiert DC

EMDB-70434:
CI ring of dusk state KaiC
Method: single particle / : Dzimianski JV, Crosby P, Balasco Serrao VH, Partch CL

PDB-9ofj:
CI ring of dusk state KaiC
Method: single particle / : Dzimianski JV, Crosby P, Balasco Serrao VH, Partch CL

EMDB-70431:
CI ring of daytime state KaiC
Method: single particle / : Dzimianski JV, Sandate CR, Balasco Serrao VH, Lander GC, Partch CL

PDB-9ofg:
CI ring of daytime state KaiC
Method: single particle / : Dzimianski JV, Sandate CR, Balasco Serrao VH, Lander GC, Partch CL

EMDB-70432:
Extended conformation of dusk state KaiC
Method: single particle / : Dzimianski JV, Crosby P, Balasco Serrao VH, Partch CL

PDB-9ofh:
Extended conformation of dusk state KaiC
Method: single particle / : Dzimianski JV, Crosby P, Balasco Serrao VH, Partch CL

EMDB-44305:
Cryo-EM structure of antibody TJ5-13 bound to H3 COBRA NG2 hemagglutinin
Method: single particle / : Dzimianski JV, Cruz JM, Serrao VHB, DuBois RM

PDB-9b7g:
Cryo-EM structure of antibody TJ5-13 bound to H3 COBRA NG2 hemagglutinin
Method: single particle / : Dzimianski JV, Cruz JM, Serrao VHB, DuBois RM

EMDB-48856:
70S Ribosome of Goslar infected WT E. coli
Method: subtomogram averaging / : Klusch N, Villa E

EMDB-48875:
70S Ribosome of Goslar infected chmA KD E. coli
Method: subtomogram averaging / : Hutchings J, Rodriguez ZK, Klusch N, Villa E

EMDB-48876:
70S Ribosome of Goslar infected chmA KD E. coli
Method: subtomogram averaging / : Hutchings J, Rodriguez ZK, Klusch N, Villa E

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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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  • EM Navigator can help to find cryo-EM structure data by both pioneers.

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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