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Showing 1 - 50 of 458 items for (author: chow & m)

EMDB-49462:
N1 neuraminidase of influenza A/Vietnam/1203/2004 H5N1 in complex with four FNI9 Fab molecules
Method: single particle / : Errico JM, Dang HV, Snell G

EMDB-71776:
CryoEM structure of delta opioid receptor bound to G proteins and Naltrindole
Method: single particle / : Fay JF, Che T

EMDB-71777:
CryoEM structure of delta opioid receptor bound to G proteins and naltrexone
Method: single particle / : Fay JF, Che T

EMDB-71778:
CryoEM structure of delta opioid receptor bound to G proteins and met-enkephalin
Method: single particle / : Fay JF, Che T

EMDB-71779:
CryoEM structure of delta opioid receptor bound to G proteins and SNC80
Method: single particle / : Fay JF, Che T

EMDB-71780:
CryoEM structure of delta opioid receptor bound to G proteins and ADL5859
Method: single particle / : Fay JF, Che T

EMDB-73876:
Stable open sheep connexin-46/50 in amphipol at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

EMDB-73885:
Stable open state sheep connexin-46/50 in DMPC nanodiscs at neutral pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

EMDB-73896:
Destabilized open state sheep connexin-46 in DMPC nanodiscs at neutral pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

EMDB-73900:
Gated state sheep connexin-46/50 in DMPC nanodiscs at neutral pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

EMDB-73942:
Stable open state sheep connexin-46/50 in DMPC nanodiscs at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

EMDB-73957:
Destabilized open state sheep connexin-46/50 in DMPC nanodiscs at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

EMDB-73962:
Gated state sheep connexin-46/50 in DMPC nanodiscs at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

EMDB-73965:
Asymmetrically gated state sheep connexin-46/50 in DMPC nanodiscs at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9z7p:
Stable open sheep connexin-46 in amphipol at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9z7w:
Stable open sheep connexin-50 in amphipol at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9z81:
Stable open state sheep connexin-46 in DMPC nanodiscs at neutral pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9z82:
Stable open state sheep connexin-50 in DMPC nanodiscs at neutral pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9z8f:
Destabilized open state sheep connexin-46 in DMPC nanodiscs at neutral pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9z8l:
Destabilized open state sheep connexin-50 in DMPC nanodiscs at neutral pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9z8m:
Gated state sheep connexin-46 in DMPC nanodiscs at neutral pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9z9b:
Gated state sheep connexin-50 in DMPC nanodiscs at neutral pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9z9g:
Stable open state sheep connexin-46 in DMPC nanodiscs at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9z9h:
Stable open state sheep connexin-50 in DMPC nanodiscs at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9z9s:
Destabilized open state sheep connexin-46 in DMPC nanodiscs at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9z9w:
Destabilized open state sheep connexin-50 in DMPC nanodiscs at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9z9x:
Gated state sheep connexin-46 in DMPC nanodiscs at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9z9y:
Gated state sheep connexin-50 in DMPC nanodiscs at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9za3:
Asymmetrically gated state sheep connexin-46 in DMPC nanodiscs at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

PDB-9za4:
Asymmetrically gated state sheep connexin-50 in DMPC nanodiscs at low pH
Method: single particle / : Jarodsky JM, Myers JB, Reichow SL

EMDB-70338:
Cryo-EM structure of modified Zika virus E protein dimer complexed with a neutralizing antibody SMZAb2 Fab
Method: single particle / : Galkin A, Pozharski E

EMDB-71715:
Cryo-EM structure of modified JEV virus E protein dimer
Method: single particle / : Galkin A, Pozharski E, Li Y

EMDB-71727:
West Nile virus E protein
Method: single particle / : Galkin A, Pozharski E, Li Y

EMDB-71728:
Cryo-EM structure of modified Zika virus E protein dimer complexed with a neutralizing antibody OZ-D4 Fab
Method: single particle / : Galkin A, Pozharski E, Li Y

PDB-9od2:
Cryo-EM structure of modified Zika virus E protein dimer complexed with a neutralizing antibody SMZAb2 Fab
Method: single particle / : Galkin A, Pozharski E

PDB-9pl9:
Cryo-EM structure of modified JEV virus E protein dimer
Method: single particle / : Galkin A, Pozharski E, Li Y

PDB-9pm6:
Cryo-EM structure of modified Zika virus E protein dimer complexed with a neutralizing antibody OZ-D4 Fab
Method: single particle / : Galkin A, Pozharski E, Li Y

EMDB-61131:
Cryo-EM structure of aPlexinA1-19-43 Fab in complex with PlexinA1 dimer
Method: single particle / : Tian H, Fung CP

PDB-9j4c:
Cryo-EM structure of aPlexinA1-19-43 Fab in complex with PlexinA1 dimer
Method: single particle / : Tian H, Fung CP

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

PDB-9oog:
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

PDB-9oom:
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-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

PDB-9ook:
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-70613:
Cryo-EM structure of rhesus antibody V033-Int1 in complex with HIV Env trimer Q23.17 MD39
Method: single particle / : Roark RS, Shapiro L, Kwong PD

PDB-9omg:
Cryo-EM structure of rhesus antibody V033-a.I1 in complex with HIV Env trimer Q23.17 MD39
Method: single particle / : Roark RS, Shapiro L, Kwong PD

EMDB-61605:
50S Ribosomal Subunit precursor state III
Method: single particle / : Sengupta S, Mukherjee R, Pilsl M, Bagale S, Adhikary AD, Borkar A, Pradeepkumar PI, Engel C, Chowdhury A, Kaushal PS, Anand R

EMDB-61613:
50S subunit precursor state I
Method: single particle / : Sengupta S, Mukherjee R, Pilsl M, Bagale S, Adhikary AD, Borkar A, Pradeepkumar PI, Engel C, Chowdhury A, Kaushal PS, Anand R

EMDB-61625:
50S precursor - Erm complex (C-II)
Method: single particle / : Sengupta S, Mukherjee R, Pilsl M, Bagale S, Adhikary AD, Borkar A, Pradeepkumar PI, Engel C, Chowdhury A, Kaushal PS, Anand R

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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.
  • The previous official version 1.9 will be removed from the archive.

Related info.:EMDB header

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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

  • The Nobel Prize in Physiology or Medicine 2021 was awarded jointly to David Julius and Ardem Patapoutian "for their discoveries of receptors for temperature and touch."
  • 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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