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Showing 1 - 50 of 17,945 items for (author: mi & w)

EMDB-37997:
Cryo-EM structure of human alpha-fetoprotein
Method: single particle / : Liu ZM, Li MS, Wu C, Liu K

PDB-8x1n:
Cryo-EM structure of human alpha-fetoprotein
Method: single particle / : Liu ZM, Li MS, Wu C, Liu K

EMDB-42114:
Cryo-EM structure of the AlbAB cyclodipeptide oxidase enzyme filament
Method: helical / : Andreas MP, Giessen TW

PDB-8uc3:
Cryo-EM structure of the AlbAB cyclodipeptide oxidase enzyme filament
Method: helical / : Andreas MP, Giessen TW

EMDB-36366:
Cryo-EM structure of Symbiodinium photosystem I
Method: single particle / : Zhao LS, Wang N, Li K, Zhang YZ, Liu LN

PDB-8jjr:
Cryo-EM structure of Symbiodinium photosystem I
Method: single particle / : Zhao LS, Wang N, Li K, Zhang YZ, Liu LN

EMDB-38215:
Human GPR34 -Gi complex bound to S3E-LysoPS
Method: single particle / : Kawahara R, Shihoya W, Nureki O

EMDB-38217:
Human GPR34 -Gi complex bound to S3E-LysoPS, receptor focused
Method: single particle / : Kawahara R, Shihoya W, Nureki O

PDB-8xbe:
Human GPR34 -Gi complex bound to S3E-LysoPS
Method: single particle / : Kawahara R, Shihoya W, Nureki O

PDB-8xbg:
Human GPR34 -Gi complex bound to S3E-LysoPS, receptor focused
Method: single particle / : Kawahara R, Shihoya W, Nureki O

EMDB-44736:
HIV Envelope trimer BG505 SOSIP.664 in complex with wild type CH103 antibody
Method: single particle / : Edwards RJ, Mansouri K

EMDB-44738:
HIV Envelope BG505 SOSIP.664 in complex with one Fab of CH103 E75K/D76N mutant
Method: single particle / : Edwards RJ, Mansouri K

EMDB-44739:
HIV Envelope trimer CH505 SOSIP.664 in complex with wild type CH103 antibody
Method: single particle / : Edwards RJ, Mansouri K

EMDB-17296:
Stabilised BA.1 SARS-CoV-2 spike with H6 nanobodies in '2 up 1 down' RBD conformation
Method: single particle / : Weckener M, Naismith JH, Owens RJ

PDB-8oyu:
Stabilised BA.1 SARS-CoV-2 spike with H6 nanobodies in '2 up 1 down' RBD conformation
Method: single particle / : Weckener M, Naismith JH, Owens RJ

EMDB-42528:
CryoEM structure of A/Perth/16/2009 H3 in complex with flu HA central stem VH1-18 antibody UCA6
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42529:
CryoEM structure of A/Michigan/45/2015 H1 in complex with flu HA central stem VH1-18 antibody 09-1B12
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42530:
CryoEM structure of A/Michigan/45/2015 H1 in complex with flu HA central stem VH1-18 antibody UCA6_N55T
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42531:
CryoEM structure of A/Perth/16/2009 H3 in complex with polyclonal Fab from mice immunized with H3 stem nanoparticles-15 days post immunization
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42532:
CryoEM structure of A/Perth/16/2009 H3 in complex with polyclonal Fab from mice immunized with H3 stem nanoparticles-28 days post immunization
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42533:
CryoEM structure of A/Shanghai/1/2013 H7 in complex with polyclonal Fab from mice immunized with H7 stem nanoparticles-15 days post-immunization
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42534:
CryoEM structure of A/Shanghai/1/2013 H7 in complex with polyclonal Fab from mice immunized with H7 stem nanoparticles-28 days post immunization
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42535:
CryoEM structure of A/Perth/16/2009 H3
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42536:
CryoEM map of A/Shanghai/1/2013 H7 HA
Method: single particle / : Huang J, Han J, Ward AB

PDB-8ut3:
CryoEM structure of A/Perth/16/2009 H3 in complex with flu HA central stem VH1-18 antibody UCA6
Method: single particle / : Huang J, Han J, Ward AB

PDB-8ut4:
CryoEM structure of A/Michigan/45/2015 H1 in complex with flu HA central stem VH1-18 antibody 09-1B12
Method: single particle / : Huang J, Han J, Ward AB

PDB-8ut5:
CryoEM structure of A/Michigan/45/2015 H1 in complex with flu HA central stem VH1-18 antibody UCA6_N55T
Method: single particle / : Huang J, Han J, Ward AB

PDB-8ut6:
CryoEM structure of A/Perth/16/2009 H3 in complex with polyclonal Fab from mice immunized with H3 stem nanoparticles-15 days post immunization
Method: single particle / : Huang J, Han J, Ward AB

PDB-8ut7:
CryoEM structure of A/Perth/16/2009 H3 in complex with polyclonal Fab from mice immunized with H3 stem nanoparticles-28 days post immunization
Method: single particle / : Huang J, Han J, Ward AB

PDB-8ut8:
CryoEM structure of A/Shanghai/1/2013 H7 in complex with polyclonal Fab from mice immunized with H7 stem nanoparticles-15 days post-immunization
Method: single particle / : Huang J, Han J, Ward AB

PDB-8ut9:
CryoEM structure of A/Shanghai/1/2013 H7 in complex with polyclonal Fab from mice immunized with H7 stem nanoparticles-28 days post immunization
Method: single particle / : Huang J, Han J, Ward AB

EMDB-17779:
Structure of human oligosaccharyltransferase OST-A complex bound to NGI-1
Method: single particle / : Ramirez AS, Kowal J, Locher KP

PDB-8pn9:
Structure of human oligosaccharyltransferase OST-A complex bound to NGI-1
Method: single particle / : Ramirez AS, Kowal J, Locher KP

EMDB-42383:
Cryo-EM map of the human CTF18-RFC-PCNA binary complex in the three-subunit binding state (state 2)
Method: single particle / : Wang F, He Q, Li H

EMDB-42384:
Cryo-EM map of the human CTF18-RFC-PCNA binary complex in the four-subunit binding state (state 3)
Method: single particle / : Wang F, He Q, Li H

EMDB-42385:
Cryo-EM map of the human CTF18-RFC-PCNA-DNA ternary complex with narrow PCNA opening state I (state 5)
Method: single particle / : Wang F, He Q, Li H

EMDB-42386:
Cryo-EM map of the human CTF18-RFC-PCNA-DNA ternary complex in the five-subunit binding state (state 4)
Method: single particle / : Wang F, He Q, Li H

EMDB-42388:
Cryo-EM map of the human CTF18-RFC-PCNA-DNA ternary complex with narrow PCNA opening state II (state 6)
Method: single particle / : Wang F, He Q, Li H

EMDB-42389:
Cryo-EM map of the human CTF18-RFC-PCNA-DNA ternary complex with cracked and closed PCNA (state 7)
Method: single particle / : Wang F, He Q, Li H

EMDB-42406:
Cryo-EM map of the human CTF18-RFC alone in the apo state (State 1)
Method: single particle / : Wang F, He Q, Li H

PDB-8umt:
Atomic model of the human CTF18-RFC-PCNA binary complex in the three-subunit binding state (state 2)
Method: single particle / : Wang F, He Q, Li H

PDB-8umu:
Atomic model of the human CTF18-RFC-PCNA binary complex in the four-subunit binding state (state 3)
Method: single particle / : Wang F, He Q, Li H

PDB-8umv:
Atomic model of the human CTF18-RFC-PCNA-DNA ternary complex with narrow PCNA opening state I (state 5)
Method: single particle / : Wang F, He Q, Li H

PDB-8umw:
Atomic model of the human CTF18-RFC-PCNA-DNA ternary complex in the five-subunit binding state (state 4)
Method: single particle / : Wang F, He Q, Li H

PDB-8umy:
Atomic model of the human CTF18-RFC-PCNA-DNA ternary complex with narrow PCNA opening state II (state 6)
Method: single particle / : Wang F, He Q, Li H

PDB-8un0:
Atomic model of the human CTF18-RFC-PCNA-DNA ternary complex with cracked and closed PCNA (state 7)
Method: single particle / : Wang F, He Q, Li H

PDB-8unj:
Atomic model of the human CTF18-RFC alone in the apo state (State 1)
Method: single particle / : Wang F, He Q, Li H

EMDB-36659:
Structure of human TRPV4 with antagonist A1
Method: single particle / : Fan J, Lei X

EMDB-36660:
Structure of human TRPV4 with antagonist GSK279
Method: single particle / : Fan J, Lei X

EMDB-36675:
Structure of human TRPV4 with antagonist A2
Method: single particle / : Fan J, Lei X

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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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Related info.:Covid-19 info / Mar 5, 2020. Novel coronavirus structure data

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External links:COVID-19 featured content - PDBj / Molecule of the Month (242):Coronavirus Proteases

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