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Showing 1 - 50 of 525 items for (author: j. & jiang)

PDB-8w4f:
SARS-CoV-2 spike protein in complex with a trivalent nanobody
Method: single particle / : Jiang XY, Qian JQ, Zhu HX, Qin Q, Huang Q

PDB-8xql:
Structure of human class T GPCR TAS2R14-miniGs/gust complex with Aristolochic acid A.
Method: single particle / : Hu XL, Wu LJ, Hua T, Liu ZJ

PDB-8xqn:
Structure of human class T GPCR TAS2R14-DNGi complex with Aristolochic acid A.
Method: single particle / : Hu XL, Wu LJ, Hua T, Liu ZJ

PDB-8xqo:
Structure of human class T GPCR TAS2R14-Gi complex with Aristolochic acid A.
Method: single particle / : Hu XL, Wu LJ, Hua T, Liu ZJ

PDB-8xqp:
Structure of human class T GPCR TAS2R14-Gustducin complex with Aristolochic acid A.
Method: single particle / : Hu XL, Wu LJ, Hua T, Liu ZJ

PDB-8xqr:
Structure 2 of human class T GPCR TAS2R14-miniGs/gust complex with Flufenamic acid.
Method: single particle / : Hu XL, Wu LJ, Hua T, Liu ZJ

PDB-8xqs:
Structure of human class T GPCR TAS2R14-DNGi complex with Flufenamic acid.
Method: single particle / : Hu XL, Wu LJ, Hua T, Liu ZJ

PDB-8xqt:
Structure of human class T GPCR TAS2R14-Gi complex.
Method: single particle / : Hu XL, Pei Y, Wu LJ, Hua T, Liu ZJ

PDB-8yky:
Structure of human class T GPCR TAS2R14-Ggustducin complex with agonist 28.1
Method: single particle / : Hu XL, Wu LJ, Hua T, Liu ZJ

PDB-8teg:
Cryo-EM structure of Arabidopsis thaliana Bor1 in lipid nanodiscs (protomer-focused refinement)
Method: single particle / : Jiang Y, Jiang J

PDB-8teh:
Cryo-EM structure of Arabidopsis thaliana Bor1 in lipid nanodiscs
Method: single particle / : Jiang Y, Jiang J

PDB-8tei:
Cryo-EM structure of Arabidopsis thaliana Bor1 in lauryl maltose neopentyl glycol (LMNG)
Method: single particle / : Jiang Y, Jiang J

PDB-8tej:
Cryo-EM structure of Arabidopsis thaliana Bor1 mutant (R637E/E641R/R643E) in the occluded conformation in lauryl maltose neopentyl glycol (LMNG) (protomer-focused refinement)
Method: single particle / : Jiang Y, Jiang J

PDB-8tel:
Cryo-EM structure of Arabidopsis thaliana Bor1 mutant (R637E/E641R/R643E) in the occluded conformation in lauryl maltose neopentyl glycol (LMNG)
Method: single particle / : Jiang Y, Jiang J

PDB-8tem:
Cryo-EM structure of Arabidopsis thaliana Bor1 mutant (R637E/E641R/R643E) in the inward-facing conformation in lauryl maltose neopentyl glycol (LMNG)
Method: single particle / : Jiang Y, Jiang J

PDB-8ten:
Cryo-EM structure of Arabidopsis thaliana Bor1 mutant (R637E/E641R/R643E) in mixed occluded/inward-facing conformations in lauryl maltose neopentyl glycol (LMNG)
Method: single particle / : Jiang Y, Jiang J

PDB-8rnu:
CryoEM structure of recombinant human Bri2 BRICHOS oligomers
Method: single particle / : Chen G, Johansson J, Hebert H

PDB-8yut:
Cryo-EM structure of the amthamine-bound H2R-Gs complex
Method: single particle / : Shen Q, Tang X, Wen X, Cheng S, Xiao P, Zang S, Shen D, Jiang L, Zheng Y, Zhang H, Xu H, Mao C, Zhang M, Hu W, Sun J, Chen Z, Zhang Y

PDB-8yuu:
Cryo-EM structure of the histamine-bound H3R-Gi complex
Method: single particle / : Shen Q, Tang X, Wen X, Cheng S, Xiao P, Zang S, Shen D, Jiang L, Zheng Y, Zhang H, Xu H, Mao C, Zhang M, Hu W, Sun J, Chen Z, Zhang Y

PDB-8yuv:
Cryo-EM structure of the immepip-bound H3R-Gi complex
Method: single particle / : Shen Q, Tang X, Wen X, Cheng S, Xiao P, Zang S, Shen D, Jiang L, Zheng Y, Zhang H, Xu H, Mao C, Zhang M, Hu W, Sun J, Chen Z, Zhang Y

PDB-8jpn:
Cryo-EM structure of succinate receptor bound to cis-epoxysuccinic acid coupling to Gi
Method: single particle / : Wang TX, Tang WQ, Li FH, Wang JY

PDB-8jpp:
Cryo-EM structure of succinate receptor bound to succinate acid coupling MiniGsq
Method: single particle / : Wang TX, Tang WQ, Li FH, Wang JY

PDB-8k5o:
Cryo-EM structure of the RC-LH core comples from Halorhodospira halochloris
Method: single particle / : Wang GL, Qi CH, Yu LJ

PDB-8xj6:
The Cryo-EM structure of MPXV E5 apo conformation
Method: single particle / : Zhang W, Liu Y, Gao H, Gan J

PDB-8xj7:
The Cryo-EM structure of MPXV E5 in complex with DNA
Method: single particle / : Zhang W, Liu Y, Gao H, Gan J

PDB-8xj8:
The Cryo-EM structure of MPXV E5 C-terminal in complex with DNA
Method: single particle / : Zhang W, Liu Y, Gao H, Gan J

PDB-8j6m:
SIDT1 protein
Method: single particle / : Zhang JT, Jiang DH

PDB-8j6o:
transport T2
Method: single particle / : Jiang DH, Zhang JT

PDB-8u85:
Structural Basis of Human NOX5 Activation
Method: single particle / : Cui C, Jiang M, Sun J

PDB-8u86:
Structural Basis of Human NOX5 Activation
Method: single particle / : Cui C, Jiang M, Sun J

PDB-8u87:
Structural Basis of Human NOX5 Activation
Method: single particle / : Cui C, Jiang M, Sun J

PDB-8u7y:
Structural Basis of Human NOX5 Activation
Method: single particle / : Cui C, Jiang M, Sun J

PDB-8sgi:
Cryo-EM structure of human NCX1 in complex with SEA0400
Method: single particle / : Xue J, Jiang Y

PDB-8inz:
Cryo-EM structure of human HCN3 channel in apo state
Method: single particle / : Yu B, Lu QY, Li J, Zhang J

PDB-8x79:
MRE-269 bound Prostacyclin Receptor G protein complex
Method: single particle / : Wang JJ, Jin S, Zhang H, Xu Y, Hu W, Jiang Y, Chen C, Wang DW, Xu HE, Wu C

PDB-8x7a:
Treprostinil bound Prostacyclin Receptor G protein complex
Method: single particle / : Wang JJ, Jin S, Zhang H, Xu Y, Hu W, Jiang Y, Chen C, Wang DW, Xu HE, Wu C

PDB-8wrz:
Cry-EM structure of cannabinoid receptor-arrestin 2 complex
Method: single particle / : Wang YX, Wang T, Wu LJ, Hua T, Liu ZJ

PDB-8wdu:
Photosynthetic LH1-RC complex from the purple sulfur bacterium Allochromatium vinosum purified by sucrose density
Method: single particle / : Tani K, Kanno R, Harada A, Kobayashi A, Minamino A, Nakamura N, Ji XC, Purba ER, Hall M, Yu LJ, Madigan MT, Mizoguchi A, Iwasaki K, Humbel BM, Kimura Y, Wang-Otomo ZY

PDB-8wdv:
Photosynthetic LH1-RC complex from the purple sulfur bacterium Allochromatium vinosum purified by Ca2+-DEAE
Method: single particle / : Tani K, Kanno R, Harada A, Kobayashi A, Minamino A, Nakamura N, Ji XC, Purba ER, Hall M, Yu LJ, Madigan MT, Mizoguchi A, Iwasaki K, Humbel BM, Kimura Y, Wang-Otomo ZY

PDB-8w9n:
Structure of AtHKT1;1 in NaCl at 2.7 Angstroms resolution
Method: single particle / : Wang J, Su N, Guo J

PDB-8w9o:
structure of AtHKT1;1 in KCl at 2.8 Angstroms resolution
Method: single particle / : Wang J, Su N, Guo J

PDB-8w9t:
Structure of TaHKT2;1 in NaCl at 2.6 Angstroms resolution
Method: single particle / : Wang J, Su N, Guo J

PDB-8w9v:
structure of TaHKT2;1 in KCl at 2.9 Angstroms resolution
Method: single particle / : Wang J, Su N, Guo J

PDB-8k8j:
Cannabinoid Receptor 1 bound to Fenofibrate coupling MiniGsq and Nb35 Complex
Method: single particle / : Tang WQ, Wang TX, Li FH, Wang JY

PDB-8kfx:
Gi bound CCR8 complex with nonpeptide agonist LMD-009
Method: single particle / : Jiang S, Lin X, Wu LJ, Xu F

PDB-8kfy:
Gi bound CCR8 complex with nonpeptide agonist ZK 756326
Method: single particle / : Jiang S, Lin X, Wu LJ, Xu F

PDB-8kfz:
Gi bound CCR8 in ligand free state
Method: single particle / : Jiang S, Lin X, Wu LJ, Xu F

PDB-8jm9:
The cryo-EM structure of insect gustatory receptor Gr43a from Drosophila melanogaster
Method: single particle / : Ma D, Guo J

PDB-8jma:
The cryo-EM structure of insect gustatory receptor Gr43a from Drosophila melanogaster in complex with fructose
Method: single particle / : Ma D, Guo J

PDB-8jme:
The cryo-EM structure of insect gustatory receptor Gr64a from Drosophila melanogaster
Method: single particle / : Ma D, Guo J

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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.
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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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