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Showing 1 - 50 of 420 items for (author: chen & zy)

EMDB-65163:
herpes simplex virus type 1 helicase-primase structure in complex with ssDNA, ADP and magnesium ion
Method: single particle / : Wu YQ, Jiang ZY, Chen XL, Zheng ZY, Dong CJ

EMDB-66328:
herpes simplex virus type 1 helicase-primase structure in complex with ssDNA, ADP and magnesium ion
Method: single particle / : Wu YQ, Jiang ZY, Chen XL, Zheng ZY, Dong CJ

EMDB-66330:
focused map for HSV-1 helicase-primase in complex with ssDNA, ADP and magnesium
Method: single particle / : Wu YQ, Jiang ZY, Chen XL, Zheng ZY, Dong CJ

EMDB-65070:
cryoEM structure of retron-Eco7 complex (form II)
Method: single particle / : Dai ZK, Wang YJ, Guan ZY, Zou TT

EMDB-65064:
cryoEM structure of retron-Eco7 complex
Method: single particle / : Dai ZK, Wang YJ, Guan ZY, Zou TT

EMDB-65052:
cryoEM structure of ptuA-ptuB complex in Retron-Eco7 anti-phage system
Method: single particle / : Dai ZK, Wang YJ, Guan ZY, Zou TT

EMDB-62504:
Cryo-EM structure of CsKCS6-CsCER2 complex
Method: single particle / : Wang Y, Guan ZY, Zhu F, Chen YJ, Yin P

EMDB-63076:
Cryo-EM structure of CsKCS6-CsCER2 like1 complex
Method: single particle / : Wang Y, Guan ZY, Zhu F, Chen YJ, Yin P

EMDB-62584:
Cryo-EM structure of human G6PT in apo state
Method: single particle / : Jiang DH, Xia ZY

EMDB-62585:
Cryo-EM structure of human G6PT in complex with chlorogenic acid
Method: single particle / : Jiang DH, Xia ZY

EMDB-62602:
Cryo-EM structure of human G6PT in complex with G6P
Method: single particle / : Jiang DH, Xia ZY

EMDB-62441:
CryoEM structure of osPHT1-11 at pH 8.0
Method: single particle / : Du ZM, Guan ZY, Liu Z

EMDB-62480:
CryoEM structure of osPHT1-11 at pH 5.0
Method: single particle / : Du ZM, Guan ZY, Liu Z

EMDB-63214:
cryo-EM structure of retron Eco2
Method: single particle / : Wang YJ, Wang C, Guan ZY, Zou TT

EMDB-61289:
Herpes simplex virus type 1 polymerase machinery in complex with duplex DNA, acyclovir triphosphate and calcium ions
Method: single particle / : Wu YQ, Chen XL, Jiang ZY, Li DY, Zhang ZY, Dong CJ

EMDB-44008:
Cryo-EM reveals molecular mechanisms underlying the inhibitory effect of netrin-4 on laminin matrix formation
Method: single particle / : Kulczyk AW

PDB-9az3:
Cryo-EM reveals molecular mechanisms underlying the inhibitory effect of netrin-4 on laminin matrix formation
Method: single particle / : Kulczyk AW

EMDB-70838:
Rabbit 37496 base and V1/V3 epitope polyclonal Fabs in complex with BG505 MD39.3 SOSIP
Method: single particle / : Ozorowski G, Torres JL, Jackson AM, Ward AB

EMDB-70839:
Rabbit 37496 base and gp41-GH epitope polyclonal Fabs in complex with BG505 MD39.3 SOSIP
Method: single particle / : Ozorowski G, Torres JL, Jackson AM, Ward AB

EMDB-70840:
Rabbit 37496 base and gp120-GH epitope polyclonal Fabs in complex with BG505 MD39.3 SOSIP
Method: single particle / : Ozorowski G, Torres JL, Jackson AM, Ward AB

EMDB-70846:
Rabbit 37496 base and C3V5 epitope polyclonal Fabs in complex with BG505 MD39.3 SOSIP
Method: single particle / : Ozorowski G, Torres JL, Jackson AM, Ward AB

EMDB-70847:
Rabbit 37450 base, gp41-FP and gp120int epitope polyclonal Fabs in complex with BG505 MD39.3 SOSIP
Method: single particle / : Ozorowski G, Torres JL, Jackson AM, Ward AB

EMDB-70848:
Rabbit 37442 base and gp120int epitope polyclonal Fabs in complex with BG505 MD39.3 SOSIP
Method: single particle / : Ozorowski G, Torres JL, Jackson AM, Ward AB

EMDB-70852:
NHP RJh18 base epitope polyclonal Fabs in complex with BG505 MD39.3 SOSIP
Method: single particle / : Ozorowski G, Torres JL, Jackson AM, Ward AB

EMDB-70855:
NHP RUv18 base epitope polyclonal Fabs in complex with BG505 MD39.3 SOSIP
Method: single particle / : Ozorowski G, Torres JL, Jackson AM, Ward AB

EMDB-70858:
NHP RUv18 V1/V3 epitope polyclonal Fabs in complex with BG505 MD39.3 SOSIP
Method: single particle / : Ozorowski G, Torres JL, Jackson AM, Ward AB

EMDB-70860:
NHP REy18 base and V1/V3 epitope polyclonal Fabs in complex with BG505 MD39.3 SOSIP
Method: single particle / : Ozorowski G, Torres JL, Jackson AM, Ward AB

EMDB-48351:
Pre-fusion HERV-K Envelope Protein Trimer Ectodomain in complex with Kenv-6 Fab
Method: single particle / : Shek J, Sun C, Hastie K, Saphire EO

EMDB-48374:
Post-fusion HERV-K Envelope Protein in complex with Kenv-4 Fab
Method: single particle / : Sun C, Shek J, Hastie K, Saphire EO

EMDB-70098:
Pre-fusion Stabilized HERV-K Envelope Trimer Ectodomain
Method: single particle / : Shek J, Sun C, Hastie K, Saphire EO

PDB-9mla:
Pre-fusion HERV-K Envelope Protein Trimer Ectodomain in complex with Kenv-6 Fab
Method: single particle / : Shek J, Sun C, Hastie K, Saphire EO

PDB-9mlk:
Post-fusion HERV-K Envelope Protein in complex with Kenv-4 Fab
Method: single particle / : Sun C, Shek J, Hastie K, Saphire EO

PDB-9o4f:
Pre-fusion Stabilized HERV-K Envelope Trimer Ectodomain
Method: single particle / : Shek J, Sun C, Hastie K, Saphire EO

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-44915:
Single particle CryoEM structure of the Pf80S ribosome in non-rotated PRE state (nrt A-P-E)
Method: single particle / : Haile M, Anton L, Ho CM

EMDB-44916:
Single particle cryoEM structure of the Pf80S ribosome in the POST state (nrt with P- and E-site tRNA)
Method: single particle / : Anton L, Haile M, Ho CM

EMDB-44918:
Single particle CryoEM structure of the Pf80S ribosome in the unloaded state (nrt with E-site tRNA)
Method: single particle / : Haile M, Anton L, Ho CM

EMDB-44919:
Single particle CryoEM structure of the Pf80S ribosome in the rotated-2 PRE state (rt state with P and E-site tRNA)
Method: single particle / : Haile M, Anton L, Ho CM

EMDB-44920:
Single particle CryoEM structure of the Pf80S ribosome in rotated state with E-site tRNA
Method: single particle / : Haile M, Anton L, Ho CM

PDB-9bup:
Single particle CryoEM structure of the Pf80S ribosome in non-rotated PRE state (nrt A-P-E)
Method: single particle / : Anton L, Haile M, Ho CM

PDB-9buq:
Single particle cryoEM structure of the Pf80S ribosome in the POST state (nrt with P- and E-site tRNA)
Method: single particle / : Anton L, Haile M, Ho CM

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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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