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Showing 1 - 50 of 1,685 items for (author: kang & z)

EMDB-65364:
Cryo-EM structure of the human measles virus RNA-dependent RNA polymerase complex bound to viral protein C
Method: single particle / : Du T, Wang J, Wu S, Ru H

EMDB-65365:
Cryo-EM structure of the human measles virus RNA-dependent RNA polymerase
Method: single particle / : Du T, Wang J, Wu S, Ru H

EMDB-65366:
Cryo-EM structure of the human measles virus RNA-dependent RNA polymerase complex
Method: single particle / : Du T, Wang J, Wu S, Ru H

EMDB-65367:
Cryo-EM structure of the human measles virus RNA-dependent RNA polymerase bound to allosteric inhibitor ERDRP-0519
Method: single particle / : Du T, Wang J, Wu S, Ru H

EMDB-65368:
Cryo-EM structure of the Nipah virus RNA-dependent RNA polymerase complex bound to allosteric inhibitor ERDRP-0519
Method: single particle / : Du T, Wang J, Wu S, Ru H

PDB-9vui:
Cryo-EM structure of the human measles virus RNA-dependent RNA polymerase complex bound to viral protein C
Method: single particle / : Du T, Wang J, Wu S, Ru H

PDB-9vuj:
Cryo-EM structure of the human measles virus RNA-dependent RNA polymerase
Method: single particle / : Du T, Wang J, Wu S, Ru H

PDB-9vuk:
Cryo-EM structure of the human measles virus RNA-dependent RNA polymerase complex
Method: single particle / : Du T, Wang J, Wu S, Ru H

PDB-9vul:
Cryo-EM structure of the human measles virus RNA-dependent RNA polymerase bound to allosteric inhibitor ERDRP-0519
Method: single particle / : Du T, Wang J, Wu S, Ru H

PDB-9vum:
Cryo-EM structure of the Nipah virus RNA-dependent RNA polymerase complex bound to allosteric inhibitor ERDRP-0519
Method: single particle / : Du T, Wang J, Wu S, Ru H

EMDB-70605:
Two Component Protein Nano-Particle (T=3). De Novo Design, Computationally Relaxed into Low Resolution Single Particle CryoEM Map with Icosahedral Symmetry Applied
Method: single particle / : DiMaio F, Weidle C

EMDB-70685:
Two Component Protein Nano-Particle (T=3). De Novo Design, Computationally Relaxed into Low Resolution Subtomogram Averaged CryoEM Map with Icosahedral Symmetry Applied
Method: subtomogram averaging / : DiMaio F, Chmielewski D, Weidle C

PDB-9om3:
Two Component Protein Nano-Particle (T=3). De Novo Design, Computationally Relaxed into Low Resolution Single Particle CryoEM Map with Icosahedral Symmetry Applied
Method: single particle / : DiMaio F, Weidle C

PDB-9op9:
Two Component Protein Nano-Particle (T=3). De Novo Design, Computationally Relaxed into Low Resolution Subtomogram Averaged CryoEM Map with Icosahedral Symmetry Applied
Method: subtomogram averaging / : DiMaio F, Chmielewski D, Weidle C

EMDB-67623:
Cryo-EM structure of DddT in closed substrate-free conformation
Method: single particle / : Zhu WJ, Wang P

EMDB-67625:
Cryo-EM structure of DddT G101D in substrate-free outward open conformation
Method: single particle / : Zhu WJ, Wang P

EMDB-67626:
Cryo-EM structure of DddT in closed DMSP-bound conformation
Method: single particle / : Zhu WJ, Wang P

EMDB-67627:
Cryo-EM structure of DddT in closed substrate-free conformation in the presence of potassium ions and dimethylsulfoniopropionate
Method: single particle / : Zhu WJ, Wang P

EMDB-67628:
Cryo-EM structure of DddT G101D in substrate-free inward open conformation
Method: single particle / : Zhu WJ, Wang P

PDB-21ff:
Cryo-EM structure of DddT in closed substrate-free conformation
Method: single particle / : Zhu WJ, Wang P

PDB-21fh:
Cryo-EM structure of DddT G101D in substrate-free outward open conformation
Method: single particle / : Zhu WJ, Wang P

PDB-21fi:
Cryo-EM structure of DddT in closed DMSP-bound conformation
Method: single particle / : Zhu WJ, Wang P

PDB-21fj:
Cryo-EM structure of DddT in closed substrate-free conformation in the presence of potassium ions and dimethylsulfoniopropionate
Method: single particle / : Zhu WJ, Wang P

PDB-21fk:
Cryo-EM structure of DddT G101D in substrate-free inward open conformation
Method: single particle / : Zhu WJ, Wang P

EMDB-67586:
Cryo-EM reconstruction of the cyanophage Pam5 small terminase
Method: single particle / : Dong DQ, Jiang YL, Zhou CZ

PDB-21di:
Cryo-EM reconstruction of the cyanophage Pam5 small terminase
Method: single particle / : Dong DQ, Jiang YL, Zhou CZ

EMDB-63994:
PSI-LHCE-LHCII from Euglena gracilis
Method: single particle / : Feng Y

PDB-9uas:
PSI-LHCE-LHCII from Euglena gracilis
Method: single particle / : Feng Y

EMDB-55303:
Adenovirus dodecahedron
Method: single particle / : Kabasakal BV, Buzas D, Bufton J, Berger-Schaffitzel C, Berger I

EMDB-55340:
Engineering the ADDomer Nanoparticle Vaccine Scaffold for Improved Assembly and Enhanced Stability.
Method: single particle / : Balchin G, Berger-Schaffitzel C, Berger I

EMDB-55341:
I4 map of CHIMPSELS_S57C full ADDomer.
Method: single particle / : Balchin G, Berger-Schaffitzel C, Berger I

EMDB-55342:
C1 CHIMPSELS_S57C ADDomer map.
Method: single particle / : Balchin G, Berger-Schaffitzel C, Berger I

PDB-9swa:
Adenovirus dodecahedron
Method: single particle / : Kabasakal BV, Buzas D, Bufton J, Berger-Schaffitzel C, Berger I

PDB-9sy5:
Engineering the ADDomer Nanoparticle Vaccine Scaffold for Improved Assembly and Enhanced Stability.
Method: single particle / : Balchin G, Berger-Schaffitzel C, Berger I

EMDB-68805:
Structure of Arabidopsis SNX1 (Class l, 7-fold)
Method: helical / : Li YB, Tao R, Zhang H, Wen XK, Leung SKP, Lau WCY, Jiang LW, Cui Y

EMDB-68806:
Structure of Arabidopsis SNX1 (Class ll, 6-fold)
Method: helical / : Li YB, Tao R, Zhang H, Wen XK, Leung SKP, Lau WCY, Jiang LW, Cui Y

PDB-23as:
Structure of Arabidopsis SNX1 (Class l, 7-fold)
Method: helical / : Li YB, Tao R, Zhang H, Wen XK, Leung SKP, Lau WCY, Jiang LW, Cui Y

PDB-23at:
Structure of Arabidopsis SNX1 (Class ll, 6-fold)
Method: helical / : Li YB, Tao R, Zhang H, Wen XK, Leung SKP, Lau WCY, Jiang LW, Cui Y

EMDB-70619:
In situ mitoribosome focused on the mtLSU
Method: single particle / : Wang S, Xiong Y, Zhang Y

EMDB-65103:
Structure of a membrane-bound inositol phosphorylceramide synthase and ceramide complex
Method: single particle / : Chen JH, Ke Y, Zhang M, Yu HJ

EMDB-66750:
Structure of a membrane-bound inositol phosphorylceramide synthase and Aureobasidin A complex
Method: single particle / : Chen JH, Ke Y, Zhang M, Yu HJ

PDB-9vj4:
Structure of a membrane-bound inositol phosphorylceramide synthase and ceramide complex
Method: single particle / : Chen JH, Ke Y, Zhang M, Yu HJ

PDB-9xd0:
Structure of a membrane-bound inositol phosphorylceramide synthase and Aureobasidin A complex
Method: single particle / : Chen JH, Ke Y, Zhang M, Yu HJ

EMDB-70592:
Membrane-associated human mitoribosome in complex with TACO1
Method: single particle / : Wang S, Xiong Y, Zhang Y

EMDB-70620:
In situ mitoribosome focused on the mtSSU
Method: single particle / : Wang S, Xiong Y, Zhang Y

EMDB-70621:
Consensus map of the mitoribosome complexed with TACO1
Method: single particle / : Wang S, Xiong Y, Zhang Y

EMDB-71623:
In situ structure of the human mitoribosome in the P-E state
Method: single particle / : Wang S, Xiong Y, Zhang Y

EMDB-71630:
In situ structure of the human mitoribosome in the P state
Method: single particle / : Wang S, Xiong Y, Zhang Y

EMDB-71633:
In situ structure of the human mitoribosome in the A-P-E state with TACO1
Method: single particle / : Wang S, Xiong Y, Zhang Y

EMDB-71634:
In situ structure of the human mitoribosome in the A-P state with TACO1
Method: single particle / : Wang S, Xiong Y, Zhang Y

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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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