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Showing 1 - 50 of 119 items for (author: hang & kn)

EMDB-52262:
Sub-tomogram average of the wild-type C. elegans respirasome
Method: subtomogram averaging / : Buzzard E, Gold VAM, McLaren M, Zhang D

EMDB-52263:
Sub-tomogram average of the wild-type C. elegans I1III2 respiratory supercomplex
Method: subtomogram averaging / : Buzzard E, Gold VAM, McLaren M, Zhang D

EMDB-52264:
Sub-tomogram average of wild-type C. elegans complex I
Method: subtomogram averaging / : Buzzard E, Gold VAM, McLaren M, Zhang D

EMDB-52265:
Sub-tomogram average of nduf-11(RNAi) C. elegans respiratory complex I
Method: subtomogram averaging / : Buzzard E, Gold VAM, McLaren M, Zhang D

EMDB-52266:
Sub-tomogram average of the wild-type C. elegans ATP synthase dimer (narrow membrane curvature)
Method: subtomogram averaging / : Buzzard E, Gold VAM, McLaren M, Zhang D

EMDB-52267:
Sub-tomogram average of the wild-type C. elegans ATP synthase dimer (intermediate membrane curvature)
Method: subtomogram averaging / : Buzzard E, Gold VAM, McLaren M, Zhang D

EMDB-52268:
Sub-tomogram average of the wild-type C. elegans ATP synthase dimer (wide membrane curvature)
Method: subtomogram averaging / : Buzzard E, Gold VAM, McLaren M, Zhang D

EMDB-52269:
Sub-tomogram average of the nduf-11(RNAi) C. elegans ATP synthase dimer (narrow membrane curvature)
Method: subtomogram averaging / : Buzzard E, Gold VAM, McLaren M, Zhang D

EMDB-52271:
Sub-tomogram average of the nduf-11(RNAi) C. elegans ATP synthase dimer (intermediate membrane curvature)
Method: subtomogram averaging / : Buzzard E, Gold VAM, McLaren M, Zhang D

EMDB-52272:
Sub-tomogram average of the nduf-11(RNAi) C. elegans ATP synthase dimer (wide membrane curvature)
Method: subtomogram averaging / : Buzzard E, Gold VAM, McLaren M, Zhang D

EMDB-46649:
Cryo-EM structure of the BG505 SOSIPv2
Method: single particle / : DeLaitsch AT, Bjorkman PJ

PDB-9d8v:
Cryo-EM structure of the BG505 SOSIPv2
Method: single particle / : DeLaitsch AT, Bjorkman PJ

EMDB-45732:
Cryo-EM structure of Gq-coupled FFA2 in complex with TUG-1375 and 4-CMTB
Method: single particle / : Zhang X, Tikhonova I, Milligan G, Zhang C

EMDB-45738:
Cryo-EM structure of Gq-coupled FFA2 in complex with TUG-1375 and compound 187
Method: single particle / : Zhang X, Tikhonova I, Milligan G, Zhang C

EMDB-45743:
Cryo-EM structure of Gi-coupled FFA2 in complex with TUG-1375 and AZ-1729
Method: single particle / : Zhang X, Tikhonova I, Milligan G, Zhang C

EMDB-49745:
Cryo-EM structure of Gi-coupled FFA2 in complex with TUG-1375 and compound 187
Method: single particle / : Zhang X, Tikhonova I, Milligan G, Zhang C

PDB-9clw:
Cryo-EM structure of Gq-coupled FFA2 in complex with TUG-1375 and 4-CMTB
Method: single particle / : Zhang X, Tikhonova I, Milligan G, Zhang C

PDB-9cm3:
Cryo-EM structure of Gq-coupled FFA2 in complex with TUG-1375 and compound 187
Method: single particle / : Zhang X, Tikhonova I, Milligan G, Zhang C

PDB-9cm7:
Cryo-EM structure of Gi-coupled FFA2 in complex with TUG-1375 and AZ-1729
Method: single particle / : Zhang X, Tikhonova I, Milligan G, Zhang C

PDB-9ns9:
Cryo-EM structure of Gi-coupled FFA2 in complex with TUG-1375 and compound 187
Method: single particle / : Zhang X, Tikhonova I, Milligan G, Zhang C

EMDB-48283:
61-12A01 Fab in complex with HIV-1 GT1.1 v4.1 SOSIP Env trimer and RM20A3 Fab
Method: single particle / : Phulera S, Ozorowski G, Ward AB

EMDB-48286:
206-3G08 Fab in complex with HIV-1 GT1.1 v4.1 SOSIP Env trimer and RM20A3 Fab
Method: single particle / : Phulera S, Ozorowski G, Ward AB

EMDB-48287:
206-9C09 Fab in complex with HIV-1 GT1.1 v4.1 SOSIP Env trimer and RM20A3 Fab
Method: single particle / : Phulera S, Ozorowski G, Ward AB

EMDB-48290:
273-4D01 Fab in complex with HIV-1 BG505 SOSIP Env trimer and RM20A3 Fab
Method: single particle / : Phulera S, Ozorowski G, Ward AB

EMDB-48291:
253-7A03 Fab in complex with HIV-1 BG505 SOSIP Env trimer and RM20A3 Fab
Method: single particle / : Phulera S, Ozorowski G, Ward AB

EMDB-70490:
BG505 GT1.1 SOSIP in complex with gp41-base epitope polyclonal antibodies isolated from a participant in the IAVI C101 clinical trial
Method: single particle / : Ozorowski G, Ward AB

EMDB-70491:
BG505 GT1.1 SOSIP in complex with V1V2V3 epitope polyclonal antibodies isolated from a participant in the IAVI C101 clinical trial
Method: single particle / : Ozorowski G, Ward AB

EMDB-70492:
BG505 GT1.1 SOSIP in complex with C3V5 epitope polyclonal antibodies isolated from a participant in the IAVI C101 clinical trial
Method: single particle / : Ozorowski G, Ward AB

EMDB-70493:
BG505 GT1.1 SOSIP in complex with CD4bs epitope polyclonal antibodies isolated from a participant in the IAVI C101 clinical trial
Method: single particle / : Ozorowski G, Ward AB

EMDB-70494:
BG505 GT1.1 SOSIP in complex with gp41 glycan hole epitope polyclonal antibodies isolated from a participant in the IAVI C101 clinical trial
Method: single particle / : Ozorowski G, Ward AB

EMDB-70495:
BG505 GT1.1 SOSIP in complex with gp41 fusion peptide epitope polyclonal antibodies isolated from a participant in the IAVI C101 clinical trial
Method: single particle / : Ozorowski G, Ward AB

EMDB-42363:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 05_B08 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

EMDB-42364:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 01_D03 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

EMDB-42365:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 04_A06 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

EMDB-42366:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 04_A06 and PGDM1400 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

PDB-8ulr:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 05_B08 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

PDB-8uls:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 01_D03 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

PDB-8ult:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 04_A06 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

PDB-8ulu:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 04_A06 and PGDM1400 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

EMDB-50034:
SARS-CoV-2 M protein dimer (short form) in complex with Fab-B and CIM-834
Method: single particle / : Debski-Antoniak OJ, Hurdiss DL

EMDB-50035:
SARS-CoV-2 M protein dimer (long form) in complex with Fab-E and incubated with CIM-834
Method: single particle / : Debski-Antoniak O, Hurdiss DL

PDB-9exa:
SARS-CoV-2 M protein dimer (short form) in complex with Fab-B and CIM-834
Method: single particle / : Debski-Antoniak OJ, Hurdiss DL

EMDB-42123:
M. musculus SC-XL map
Method: single particle / : Letts JA, Padavannil A

EMDB-42125:
CIII focus refined map
Method: single particle / : Letts JA, Padavannil A

EMDB-42126:
CI protomer-1 membrane arm focus refined map
Method: single particle / : Letts JA, Padavannil A

EMDB-42127:
CI protomer-2 membrane arm focus refined map
Method: single particle / : Letts JA, Padavannil A

EMDB-42137:
CI protomer-2 peripheral arm focus refined map
Method: single particle / : Letts JA, Padavannil A

EMDB-42138:
CI protomer-1 peripheral arm focus refined map
Method: single particle / : Letts JA, Padavannil A

EMDB-43577:
CryoEM Structure of a FtsH Helical Assembly in the Presence of ATP
Method: helical / : Li Y, Zhu J, Zhang Z, Wang F, Egelman EH, Tezcan FA

EMDB-43579:
CryoEM Structure of a FtsH Helical Assembly in the Presence of ATP
Method: helical / : Li Y, Zhu J, Zhang Z, Wang F, Egelman EH, Tezcan FA

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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.

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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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