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Showing 1 - 50 of 7,905 items for (author: zhang & p)

EMDB-50430:
Cryo-EM structure of MBP homo-dimer assembled by homo Di-Gluebody
Method: single particle / : Yi G, Ye M, Mamalis D, Carrique L, Fairhead M, Li H, Duerr K, Zhang P, Sauer DB, von Delft F, Davis BG, Gilbert RJC

EMDB-50432:
Cryo-EM structure of Lysozyme homo-dimer assembled by homo Di-Gluebody
Method: single particle / : Yi G, Ye M, Mamalis D, Carrique L, Fairhead M, Li H, Duerr K, Zhang P, Sauer DB, von Delft F, Davis BG, Gilbert RJC

EMDB-50433:
Cryo-EM structure of Lysozyme homo-dimer assembled by homo Di-Gluebody - Local refinement
Method: single particle / : Yi G, Ye M, Mamalis D, Carrique L, Fairhead M, Li H, Duerr K, Zhang P, Sauer DB, von Delft F, Davis BG, Gilbert RJC

PDB-9fgv:
Cryo-EM structure of MBP homo-dimer assembled by homo Di-Gluebody
Method: single particle / : Yi G, Ye M, Mamalis D, Carrique L, Fairhead M, Li H, Duerr K, Zhang P, Sauer DB, von Delft F, Davis BG, Gilbert RJC

PDB-9fgx:
Cryo-EM structure of Lysozyme homo-dimer assembled by homo Di-Gluebody
Method: single particle / : Yi G, Ye M, Mamalis D, Carrique L, Fairhead M, Li H, Duerr K, Zhang P, Sauer DB, von Delft F, Davis BG, Gilbert RJC

PDB-9fgy:
Cryo-EM structure of Lysozyme homo-dimer assembled by homo Di-Gluebody - Local refinement
Method: single particle / : Yi G, Ye M, Mamalis D, Carrique L, Fairhead M, Li H, Duerr K, Zhang P, Sauer DB, von Delft F, Davis BG, Gilbert RJC

EMDB-45087:
Cryo-EM structure of glucagon-like peptide-1 receptor (GLP-1R)-Gs complex with Exendin-phe1
Method: single particle / : Zhang X, Johnson R, Belousoff MJ, Danev R, Sexton PM, Wootten D

PDB-9c0k:
Cryo-EM structure of glucagon-like peptide-1 receptor (GLP-1R)-Gs complex with Exendin-phe1
Method: single particle / : Zhang X, Johnson R, Belousoff MJ, Danev R, Sexton PM, Wootten D

EMDB-45040:
Cryo-EM structure of glucagon-like peptide-1 receptor (GLP-1R)-Gs complex with Exendin-asp3
Method: single particle / : Zhang X, Johnson R, Belousoff MJ, Danev R, Sexton PM, Wootten D

PDB-9byo:
Cryo-EM structure of glucagon-like peptide-1 receptor (GLP-1R)-Gs complex with Exendin-asp3
Method: single particle / : Zhang X, Johnson R, Belousoff MJ, Danev R, Sexton PM, Wootten D

EMDB-38801:
Cryo-EM structure of Short-wave-sensitive opsin 1
Method: single particle / : Peng Q, Jiang HH, Cheng XY, Li J, Zhang J

PDB-8y02:
Cryo-EM structure of Short-wave-sensitive opsin 1
Method: single particle / : Peng Q, Jiang HH, Cheng XY, Li J, Zhang J

EMDB-70416:
Cryo-EM Structure of Human HIF-2a-ARNT Complexed on 20-bp HRE
Method: single particle / : Xu X, Closson JD, Zhang M, Gardner KH

EMDB-70418:
Dimer of HIF-2a-ARNT Heterodimers Complexed on 51-bp HRE/HAS
Method: single particle / : Closson JD, Xu X, Gardner KH

EMDB-70443:
Dimer of HIF-1a-ARNT Heterodimers Complexed on 52-bp HRE/HAS
Method: single particle / : Closson JD, Tiyani TT, Xu X, Gardner KH

EMDB-46604:
BG505 DS-SOSIP.664 apo structure from the CH103 KN cryo-EM dataset
Method: single particle / : Parsons RJ, Acharya P

EMDB-46605:
Cryo-EM structure of BG505 DS-SOSIP.664 with 1 CH103 KN Fab bound
Method: single particle / : Parsons RJ, Acharya P

EMDB-46606:
Cryo-EM structure of BG505 DS-SOSIP.664 with 2 CH103 KN Fabs bound
Method: single particle / : Parsons RJ, Acharya P

EMDB-46613:
Cryo-EM structure of BG505 DS-SOSIP.664 with 1 CH103 Fab bound
Method: single particle / : Parsons RJ, Acharya P

EMDB-46614:
Cryo-EM structure of BG505 DS-SOSIP.664 with 2 CH103 Fabs bound
Method: single particle / : Parsons RJ, Acharya P

PDB-9d7g:
BG505 DS-SOSIP.664 apo structure from the CH103 KN cryo-EM dataset
Method: single particle / : Parsons RJ, Acharya P

PDB-9d7h:
Cryo-EM structure of BG505 DS-SOSIP.664 with 1 CH103 KN Fab bound
Method: single particle / : Parsons RJ, Acharya P

PDB-9d7i:
Cryo-EM structure of BG505 DS-SOSIP.664 with 2 CH103 KN Fabs bound
Method: single particle / : Parsons RJ, Acharya P

PDB-9d7o:
Cryo-EM structure of BG505 DS-SOSIP.664 with 1 CH103 Fab bound
Method: single particle / : Parsons RJ, Acharya P

PDB-9d7p:
Cryo-EM structure of BG505 DS-SOSIP.664 with 2 CH103 Fabs bound
Method: single particle / : Parsons RJ, Acharya P

EMDB-60816:
Cryo-EM structure of PhyB(Y276H,1-908)-PIF6beta complex
Method: single particle / : Jia HL, Guan ZY, Ding JY, Wang XY, Ma L, Yin P

EMDB-60860:
Cryo-EM structure of full-length phyB(Y276H)-PIF6beta complex
Method: single particle / : Jia HL, Guan ZY, Ding JY, Wang XY, Ma L, Yin P

EMDB-61582:
Cryo-EM structure of phyB-PIF6beta complex
Method: single particle / : Jia HL, Guan ZY, Ding JY, Wang XY, Ma L, Yin P

PDB-9irk:
Cryo-EM structure of PhyB(Y276H,1-908)-PIF6beta complex
Method: single particle / : Jia HL, Guan ZY, Ding JY, Wang XY, Ma L, Yin P

PDB-9itf:
Cryo-EM structure of full-length phyB(Y276H)-PIF6beta complex
Method: single particle / : Jia HL, Guan ZY, Ding JY, Wang XY, Ma L, Yin P

PDB-9jlb:
Cryo-EM structure of phyB-PIF6beta complex
Method: single particle / : Jia HL, Guan ZY, Ding JY, Wang XY, Ma L, Yin P

EMDB-46047:
HIV Env JRFL NFL TD CC3+ trimer in complex with NHP #1 polyclonal Fab (gp120 interface, gp41-FP, gp41-base epitopes)
Method: single particle / : Sewall LM, Ozorowski G, Ward AB

EMDB-46048:
HIV Env ZM233 NFL TD CC3+ trimer in complex with NHP #1,2,3,4 polyclonal Fab (gp41-FP, gp41-base epitopes)
Method: single particle / : Sewall LM, Ozorowski G, Ward AB

EMDB-60253:
Cryo-EM structure of the spike glycoprotein from Bat SARS-like coronavirus (Bat SL-CoV) WIV1 in locked state
Method: single particle / : Liu C, Beck F, Nagy I, Bohn S, Plitzko J, Baumeister W, Zhang X, Zinzula L

PDB-8zmp:
Cryo-EM structure of the spike glycoprotein from Bat SARS-like coronavirus (Bat SL-CoV) WIV1 in locked state
Method: single particle / : Liu C, Beck F, Nagy I, Bohn S, Plitzko J, Baumeister W, Zhang X, Zinzula L

EMDB-45101:
XMAP215-decorated GMPCPP microtubule
Method: single particle / : McManus CT, Travis SM, Zhang R, Petry S

EMDB-53399:
Cryo-EM reconstruction of the NEDD1 anchor protein and CDK5RAP2 bound to the gamma-tubulin ring complex
Method: single particle / : Munoz-Hernandez H, Xu Y, Wieczorek M

EMDB-53400:
Cryo-EM reconstruction of the NEDD1 anchor protein bound to the gamma-tubulin ring complex
Method: single particle / : Munoz-Hernandez H, Xu Y, Wieczorek M

PDB-9qvm:
Cryo-EM reconstruction of the NEDD1 anchor protein and CDK5RAP2 bound to the gamma-tubulin ring complex
Method: single particle / : Munoz-Hernandez H, Xu Y, Wieczorek M

PDB-9qvn:
Cryo-EM reconstruction of the NEDD1 anchor protein bound to the gamma-tubulin ring complex
Method: single particle / : Munoz-Hernandez H, Xu Y, Wieczorek M

EMDB-62801:
kinase of ATR bound VE-822 state
Method: single particle / : Wang G

EMDB-62804:
ATR Spiral -ATRIP bound with VE-822
Method: single particle / : Wang G

EMDB-62806:
ATR-ATRIP bound with VE-822
Method: single particle / : Wang G

EMDB-62807:
ATR-ATRIP-bound with AMP-PNP
Method: single particle / : Wang G

EMDB-62808:
Kinase domain of ATR bound with RP-3500
Method: single particle / : Wang G

EMDB-62809:
ATR Spiral -ATRIP bound with RP-3500
Method: single particle / : Wang G

EMDB-62811:
ATR-ATRIP bound with RP-3500
Method: single particle / : Wang G

EMDB-62812:
ATR-ATRIP bound with ATPgammaS
Method: single particle / : Wang G

PDB-9l40:
kinase of ATR bound VE-822 state
Method: single particle / : Wang G

PDB-9l43:
ATR Spiral -ATRIP bound with VE-822
Method: single particle / : Wang G

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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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