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Showing 1 - 50 of 241 items for (author: kay & rr)

EMDB-73228:
Local refinement of Fab-14/SARS-CoV-2 D614G spike complex, Mode I
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73231:
Cryo-EM map of D614G spike, 1-up-RBD
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73244:
SARS-CoV-2 D614G spike, 3-RBD-downn
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73245:
Local refinement of Fab-14/SARS-CoV-2 D614G spike complex, Mode I, Subgroup I conformation
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73247:
Fab-14/SARS-CoV-2 D614G spike complex, Mode V conformation
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73260:
Fab-14/SARS-CoV-2 D614G spike complex, Mode I conformation
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73263:
Fab-14/SARS-CoV-2 D614G spike complex, Mode II, subgroup I conformation
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73265:
Fab-14/SARS-CoV-2 D614G spike complex, Mode II, subgroup II conformation
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73267:
Fab-14/SARS-CoV-2 D614G spike complex, Mode II, subgroup III conformation
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73270:
Fab-14/SARS-CoV-2 Omicron BA.1 spike complex
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73271:
SARS-CoV-2 Omicron BA.1 spike, 3-RBD-down
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73273:
SARS-CoV-2 Omicron BA.1 spike, 1-RBD-up
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73290:
Fab-14/SARS-CoV-2 D614G spike complex, Mode III conformation
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73291:
Unbound SARS-CoV-2 D614G spike
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73292:
Fab-14/SARS-CoV-2 D614G spike complex, Mode IV, subgroup II conformation
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73306:
Fab-14/SARS-CoV-2 D614G spike complex, Mode IV, subgroup II conformation
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-75144:
30S ribosomal subunit from E. coli missing the gene encoding for the 16S rRNA 2'-O-methyltransferase RsmI
Method: single particle / : Barmada MI, Nandi S, Conn GL

EMDB-47792:
Structure of full length AMPA receptor GluA2 and auxiliary subunit TARP gamma-2 in complex with anti-miR 17 oligonucleotide RGLS4326
Method: single particle / : Yen LY, Gangwar SP, Yelshanskaya MV, Sobolevsky AI

EMDB-47793:
Structure of AMPA receptor GluA2 and auxiliary subunit TARP gamma-2 (LBD-TMD) in complex with anti-miR 17 oligonucleotide RGLS4326
Method: single particle / : Yen LY, Gangwar SP, Yelshanskaya MV, Sobolevsky AI

PDB-9e9d:
Structure of full length AMPA receptor GluA2 and auxiliary subunit TARP gamma-2 in complex with anti-miR 17 oligonucleotide RGLS4326
Method: single particle / : Yen LY, Gangwar SP, Yelshanskaya MV, Sobolevsky AI

PDB-9e9e:
Structure of AMPA receptor GluA2 and auxiliary subunit TARP gamma-2 (LBD-TMD) in complex with anti-miR 17 oligonucleotide RGLS4326
Method: single particle / : Yen LY, Gangwar SP, Yelshanskaya MV, Sobolevsky AI

EMDB-12318:
Nematocida Huwe1 in closed conformation
Method: single particle / : Petrova O, Grishkovskaya I

EMDB-72071:
Bacterial ribosomal 2'-O-methyltransferase RsmI in complex with the small ribosomal subunit
Method: single particle / : Barmada MI, Conn GL

PDB-9pzg:
Bacterial ribosomal 2'-O-methyltransferase RsmI in complex with the small ribosomal subunit
Method: single particle / : Barmada MI, Conn GL

EMDB-53281:
Single particle cryo-EM structure of the multidrug efflux pump MdtF from Escherichia coli
Method: single particle / : Lawrence R, Adams C, Sousa JS, Ahdash Z, Reading E

EMDB-53282:
Single particle cryo-EM structure of MdtF V610F
Method: single particle / : Lawrence R, Adams C, Sousa JS, Ahdash Z, Reading E

EMDB-53283:
Single particle cryo-EM structure of MdtF V610F with bound Rhodamine 6G
Method: single particle / : Lawrence R, Adams C, Sousa JS, Ahdash Z, Reading E

PDB-9qpr:
Single particle cryo-EM structure of the multidrug efflux pump MdtF from Escherichia coli
Method: single particle / : Lawrence R, Adams C, Sousa JS, Ahdash Z, Reading E

PDB-9qps:
Single particle cryo-EM structure of MdtF V610F
Method: single particle / : Lawrence R, Adams C, Sousa JS, Ahdash Z, Reading E

PDB-9qpt:
Single particle cryo-EM structure of MdtF V610F with bound Rhodamine 6G
Method: single particle / : Lawrence R, Adams C, Sousa JS, Ahdash Z, Reading E

EMDB-51183:
Structure of human PHLPP2 in conformation 2
Method: single particle / : Siess K, Grishkovskaya I, Haselbach D, Leonard TA

EMDB-51182:
cryoEM map of human PHLPP2
Method: single particle / : Siess K, Grishkovskaya I, Haselbach D, Leonard TA

EMDB-19898:
Plasmodium falciparum sporozoite actin determined in situ
Method: subtomogram averaging / : Prazak V, Ferreira JL

EMDB-42524:
Cryo-EM Structure of Full-Length Spike Protein of Omicron XBB.1.5
Method: single particle / : Huynh KW, Chang JS, Fennell KF, Che Y, Wu H

PDB-8usz:
Cryo-EM Structure of Full-Length Spike Protein of Omicron XBB.1.5
Method: single particle / : Huynh KW, Chang JS, Fennell KF, Che Y, Wu H

EMDB-45876:
Consensus olfactory receptor consOR1 bound to L-menthol and in complex with mini-Gs trimeric protein (transmembrane domain)
Method: single particle / : Billesboelle CB, Del Torrent CL, Manglik A

EMDB-45879:
Consensus olfactory receptor consOR2 bound to S-carvone and in complex with mini-Gs trimeric protein (transmembrane domain)
Method: single particle / : Billesboelle CB, Del Torrent CL, Manglik A

EMDB-45881:
Consensus olfactory receptor consOR51 in complex with mini-Gs trimeric protein (transmembrane domain)
Method: single particle / : Billesboelle CB, Del Torrent CL, Manglik A

EMDB-45880:
Consensus olfactory receptor consOR4 bound to 2-methylthiazoline and in complex with mini-Gs trimeric protein (transmembrane domain)
Method: single particle / : Billesboelle CB, Del Torrent CL, Manglik A

EMDB-42786:
Consensus olfactory receptor consOR51 in complex with mini-Gs trimeric protein
Method: single particle / : Billesboelle CB, Del Torrent CL, Manglik A

EMDB-42789:
Consensus olfactory receptor consOR1 bound to L-menthol and in complex with mini-Gs trimeric protein
Method: single particle / : Billesboelle CB, Del Torrent CL, Manglik A

EMDB-42791:
Consensus olfactory receptor consOR2 bound to S-carvone and in complex with mini-Gs trimeric protein
Method: single particle / : Billesboelle CB, Del Torrent CL, Manglik A

EMDB-42817:
Consensus olfactory receptor consOR4 bound to 2-methylthiazoline and in complex with mini-Gs trimeric protein
Method: single particle / : Billesboelle CB, Del Torrent CL, Manglik A

PDB-8uxv:
Consensus olfactory receptor consOR51 in complex with mini-Gs trimeric protein
Method: single particle / : Billesboelle CB, Del Torrent CL, Manglik A

PDB-8uxy:
Consensus olfactory receptor consOR1 bound to L-menthol and in complex with mini-Gs trimeric protein
Method: single particle / : Billesboelle CB, Del Torrent CL, Manglik A

PDB-8uy0:
Consensus olfactory receptor consOR2 bound to S-carvone and in complex with mini-Gs trimeric protein
Method: single particle / : Billesboelle CB, Del Torrent CL, Manglik A

PDB-8uyq:
Consensus olfactory receptor consOR4 bound to 2-methylthiazoline and in complex with mini-Gs trimeric protein
Method: single particle / : Billesboelle CB, Del Torrent CL, Manglik A

EMDB-42489:
Bacillus niacini flavin monooxygenase
Method: single particle / : Richardson BC, French JB

EMDB-42490:
Bacillus niacini flavin monooxygenase with bound (2,6)DHP
Method: single particle / : Richardson BC, French JB

PDB-8urc:
Bacillus niacini flavin monooxygenase
Method: single particle / : Richardson BC, French JB

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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

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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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