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Showing 1 - 50 of 428 items for (author: geng & y)

EMDB-80133:
Cryo-EM structure of human Nav1.6 in complex with Cn2
Method: single particle / : Fan X, Huang J, Yan N

EMDB-80134:
Cryo-EM structure of human Nav1.6 in complex with Iota-Conotoxin RXIA
Method: single particle / : Fan X, Huang J, Yan N

EMDB-80135:
Cryo-EM structure of human Nav1.6 in complex with delta-paraponeritoxin-Pc1a
Method: single particle / : Yang L, Fan X, Huang J, Yan N

PDB-25ih:
Cryo-EM structure of human Nav1.6 in complex with Cn2
Method: single particle / : Fan X, Huang J, Yan N

PDB-25ii:
Cryo-EM structure of human Nav1.6 in complex with Iota-Conotoxin RXIA
Method: single particle / : Fan X, Huang J, Yan N

PDB-25ij:
Cryo-EM structure of human Nav1.6 in complex with delta-paraponeritoxin-Pc1a
Method: single particle / : Yang L, Fan X, Huang J, Yan N

EMDB-65569:
Cryo-EM structure of DDB1-CRBN in complex with dHuR-2 and HuR
Method: single particle / : Dou H, Zhu Y

PDB-9w2f:
Cryo-EM structure of DDB1-CRBN in complex with dHuR-2 and HuR
Method: single particle / : Dou H, Zhu Y

EMDB-76333:
Native structure of the cytoplasmic lattice filament from mouse MII eggs
Method: single particle / : Li Y, Zheng W, Leem J, Wu C, Tang S, Mogessie B, Xiong Y

EMDB-63955:
Structure of ASC-PYD filament from condensates
Method: single particle / : Gao P, Li QJ, Li ZL

PDB-9u8k:
Structure of ASC-PYD filament from condensates
Method: single particle / : Gao P, Li QJ, Li ZL

EMDB-76315:
Native structure of cytoplasmic lattice (CPL) asymmetric unit from mouse MII eggs, focused on PADI6 dimers 1-4
Method: single particle / : Li Y, Zheng W, Leem J, Wu C, Tang S, Mogessie B, Xiong Y

EMDB-76321:
Native structure of the cytoplasmic lattice (CPL) asymmetric unit from mouse MII eggs, focused on NLRP5+TLE6+OOEP+KHDC3
Method: single particle / : Li Y, Zheng W, Leem J, Wu C, Tang S, Mogessie B, Xiong Y

EMDB-76322:
Native structure of the cytoplasmic lattice (CPL) asymmetric unit from mouse MII eggs, focused on NLRP5+TLE6+OOEP+ZBED3+FBXW18
Method: single particle / : Li Y, Zheng W, Leem J, Wu C, Tang S, Mogessie B, Xiong Y

EMDB-76323:
Native structure of the cytoplasmic lattice (CPL) asymmetric unit from mouse MII eggs, focused on NLRP14+UHRF1
Method: single particle / : Li Y, Zheng W, Leem J, Wu C, Tang S, Mogessie B, Xiong Y

EMDB-76324:
Native structure of the cytoplasmic lattice (CPL) asymmetric unit from mouse MII eggs, focused on tubulin
Method: single particle / : Li Y, Zheng W, Leem J, Wu C, Tang S, Mogessie B, Xiong Y

EMDB-76325:
Native structure of the cytoplasmic lattice (CPL) asymmetric unit from mouse MII eggs, focused on NLRP4F
Method: single particle / : Li Y, Zheng W, Leem J, Wu C, Tang S, Mogessie B, Xiong Y

EMDB-76326:
Native structure of the cytoplasmic lattice (CPL) asymmetric unit from mouse MII eggs, focused on FBXW19+FBXW21
Method: single particle / : Li Y, Zheng W, Leem J, Wu C, Tang S, MOgessie B, Xiong Y

EMDB-76327:
Native structure of the cytoplasmic lattice (CPL) asymmetric unit from mouse MII eggs, focused on UBE2D3+UHRF1 RING
Method: single particle / : Li Y, Zheng W, Leem J, Wu C, Tang S, Mogessie B, Xiong Y

EMDB-76330:
Native structure of the cytoplasmic lattice (CPL) asymmetric unit from mouse MII eggs, focused on PADI6 dimers 5
Method: single particle / : Li Y, Zheng W, Leem J, Wu C, Tang S, Mogessie B, Xiong Y

EMDB-76331:
Native structure of the cytoplasmic lattice (CPL) asymmetric unit from mouse MII eggs, focused on NLRP14+UHRF1+UBE2D3
Method: single particle / : Li Y, Zheng W, Leem J, Wu C, Tang S, Mogessie B, Xiong Y

EMDB-76334:
Native structure of the cytoplasmic lattice (CPL) asymmetric unit from mouse MII eggs
Method: single particle / : Li Y, Zheng W, Leem J, Wu C, Tang S, Mogessie B, Xiong Y

EMDB-76335:
Native structure of the cytoplasmic lattice (CPL) asymmetric unit from mouse MII eggs, consensus map
Method: single particle / : Li Y, Zheng W, Leem J, Wu C, Tang S, Mogessie B, Xiong Y

PDB-12dl:
Native structure of the cytoplasmic lattice (CPL) asymmetric unit from mouse MII eggs
Method: single particle / : Li Y, Zheng W, Leem J, Wu C, Tang S, Mogessie B, Xiong Y

EMDB-64929:
Cryo-EM structure of the multi-component acyltransferase complex MucABC from Streptococcus macacae at a stoichiometric ratio of 4:2:2
Method: single particle / : Luo Z, Shen Z, Liao G, Tang X, Pan X

EMDB-64933:
Cryo-EM structure of the multi-component acyltransferase complex MucABC from Streptococcus macacae at a stoichiometric ratio of 4:4:4
Method: single particle / : Luo Z, Shen Z, Liao G, Tang X, Pan X

PDB-9vbo:
Cryo-EM structure of the multi-component acyltransferase complex MucABC from Streptococcus macacae at a stoichiometric ratio of 4:2:2
Method: single particle / : Luo Z, Shen Z, Liao G, Tang X, Pan X

PDB-9vbt:
Cryo-EM structure of the multi-component acyltransferase complex MucABC from Streptococcus macacae at a stoichiometric ratio of 4:4:4
Method: single particle / : Luo Z, Shen Z, Liao G, Tang X, Pan X

EMDB-49892:
Cryo-EM structure of DDB1dB:CRBN:mezigdomide:SALL4(392-449)
Method: single particle / : Park J, Hunkeler M, Roy Burman SS, Fishcer ES

EMDB-49893:
Cryo-EM structure of DDB1dB:CRBN:mezigdomide:SALL4(392-449;G416A)
Method: single particle / : Park J, Hunkeler M, Roy Burman SS, Fischer ES

PDB-9nws:
Cryo-EM structure of DDB1dB:CRBN:mezigdomide:SALL4(392-449)
Method: single particle / : Park J, Hunkeler M, Roy Burman SS, Fishcer ES

PDB-9nwt:
Cryo-EM structure of DDB1dB:CRBN:mezigdomide:SALL4(392-449;G416A)
Method: single particle / : Park J, Hunkeler M, Roy Burman SS, Fischer ES

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-61501:
Cryo-EM Structure of the apo HCAR3-Gi complex
Method: single particle / : Fang Y

EMDB-61502:
Cryo-EM Structure of the niacin-HCAR3-Gi complex
Method: single particle / : Fang Y

PDB-9jic:
Cryo-EM Structure of the apo HCAR3-Gi complex
Method: single particle / : Fang Y, Fang Y

PDB-9jid:
Cryo-EM Structure of the niacin-HCAR3-Gi complex
Method: single particle / : Fang Y, Fang Y

EMDB-63640:
Molecular Architecture of Human Glycogen Debranching Enzyme: Insights into Glycogen Storage Disease III Pathogenesis
Method: single particle / : Guan H, Chen H

EMDB-61570:
6O-HCAR3-Gi complex
Method: single particle / : Binghao Z, Fang Y

EMDB-61571:
PLA-HCAR3-Gi complex
Method: single particle / : Binghao Z, Fang Y

EMDB-61572:
IBC-HCAR3-Gi complex
Method: single particle / : Binghao Z, Fang Y

EMDB-61573:
acifran-HCAR3-Gi complex
Method: single particle / : Binghao Z, Fang Y

EMDB-61574:
acifran-HCAR2-Gi complex
Method: single particle / : Binghao Z, Fang Y

PDB-9jks:
6O-HCAR3-Gi complex
Method: single particle / : Binghao Z, Fang Y

PDB-9jkt:
PLA-HCAR3-Gi complex
Method: single particle / : Binghao Z, Fang Y

PDB-9jkv:
IBC-HCAR3-Gi complex
Method: single particle / : Binghao Z, Fang Y

PDB-9jkx:
acifran-HCAR3-Gi complex
Method: single particle / : Binghao Z, Fang Y

PDB-9jky:
acifran-HCAR2-Gi complex
Method: single particle / : Binghao Z, Fang Y

EMDB-63702:
PGS fused GPR3 dimer with antagonist AF64394
Method: single particle / : Geng C, Jun 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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