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Showing 1 - 50 of 12,136 items for (author: liu & j)

EMDB-63580:
Cryo-EM structure of AKG bound OXGR1-Gq complex
Method: single particle / : Liu H, Zhang X, Xu HE

EMDB-63581:
Cryo-EM structure of Itaconic acid bound OXGR1-Gq complex
Method: single particle / : Liu H, Zhang X, Xu HE

EMDB-63583:
Cryo-EM structure of Succinic Acid bound OXGR1-Gq complex
Method: single particle / : Liu H, Zhang X, Xu HE

EMDB-80947:
Cryo-EM structure of Maleic Acid bound OXGR1-Gq complex
Method: single particle / : Zhang X, Liu H

PDB-26xh:
Cryo-EM structure of Maleic Acid bound OXGR1-Gq complex
Method: single particle / : Zhang X, Liu H

PDB-9m1r:
Cryo-EM structure of AKG bound OXGR1-Gq complex
Method: single particle / : Liu H, Zhang X, Xu HE

PDB-9m1s:
Cryo-EM structure of Itaconic acid bound OXGR1-Gq complex
Method: single particle / : Liu H, Zhang X, Xu HE

PDB-9m1u:
Cryo-EM structure of Succinic Acid bound OXGR1-Gq complex
Method: single particle / : Liu H, Zhang X, Xu HE

EMDB-68717:
Cryo-EM structure of Chlamydomonas reinhardtii chloroplast F1Fo-ATP synthase
Method: single particle / : Liu J, Li DY, Guan ZY, Yin P, Yan JJ

PDB-22vl:
Cryo-EM structure of Chlamydomonas reinhardtii chloroplast F1Fo-ATP synthase
Method: single particle / : Liu J, Li DY, Guan ZY, Yin P, Yan JJ

EMDB-72011:
Engaged-state naloxone-mu opioid receptor-Gi GDPbS complex (rebound) - Consensus map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-72016:
Latent-state naloxone-mu opioid receptor-Gi GDP complex (constant GDP) - Consensus map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-72018:
Engaged-state naloxone-mu opioid receptor-Gi GDP complex (constant GDP) - Consensus map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-72020:
Open-AHD naloxone-mu opioid receptor-Gi GDP complex (constant GDP) - Consensus map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-72028:
Open-AHD loperamide-mu opioid receptor-Gi GDP complex (constant GDP) - Locally refined Gi map
Method: single particle / : Gati C, Khan S, Han GW

EMDB-65360:
Structure of human proteasome ATPase-CP intermediate assembles with 15min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

EMDB-65361:
Structure of human proteasome ATPase-CP intermediate assembles with 90min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

EMDB-65362:
Structure of human proteasome ATPase-CP intermediate assembles with 90min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

PDB-9vue:
Structure of human proteasome ATPase-CP intermediate assembles with 15min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

PDB-9vuf:
Structure of human proteasome ATPase-CP intermediate assembles with 90min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

PDB-9vug:
Structure of human proteasome ATPase-CP intermediate assembles with 90min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

EMDB-72111:
Human telomerase catalytic core with shelterin protein TPP1, BIBR1532 and DNA primer ending in AGGG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

EMDB-72112:
Human telomerase catalytic core with shelterin protein TPP1, dTpNHpp and DNA primer ending in AGGG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

EMDB-72113:
Human telomerase catalytic core with shelterin protein TPP1, BIBR1532, dTpNHpp and DNA primer ending in AGGG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

EMDB-72114:
Human telomerase catalytic core with shelterin protein TPP1 and DNA primer ending in TTAG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

EMDB-72115:
Human telomerase catalytic core with shelterin protein TPP1, BIBR1532 and DNA primer ending in TTAG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

EMDB-72117:
Human telomerase catalytic core with shelterin protein TPP1, dGpNHpp and DNA primer ending in TTAG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

EMDB-72118:
Class I (T1D0+) of Human telomerase catalytic core with shelterin protein TPP1, BIBR1532, dGpNHpp and DNA primer ending in TTAG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

EMDB-72119:
Class II ("T0D0") of Human telomerase catalytic core with shelterin protein TPP1, BIBR1532, dGpNHpp and DNA primer ending in TTAG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

EMDB-72120:
Class III (T1D0) of Human telomerase catalytic core with shelterin protein TPP1, BIBR1532, dGpNHpp and DNA primer ending in TTAG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

PDB-9q0z:
Human telomerase catalytic core with shelterin protein TPP1, BIBR1532 and DNA primer ending in AGGG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

PDB-9q10:
Human telomerase catalytic core with shelterin protein TPP1, dTpNHpp and DNA primer ending in AGGG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

PDB-9q11:
Human telomerase catalytic core with shelterin protein TPP1, BIBR1532, dTpNHpp and DNA primer ending in AGGG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

PDB-9q12:
Human telomerase catalytic core with shelterin protein TPP1 and DNA primer ending in TTAG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

PDB-9q14:
Human telomerase catalytic core with shelterin protein TPP1, BIBR1532 and DNA primer ending in TTAG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

PDB-9q16:
Human telomerase catalytic core with shelterin protein TPP1, dGpNHpp and DNA primer ending in TTAG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

PDB-9q17:
Class I (T1D0+) of Human telomerase catalytic core with shelterin protein TPP1, BIBR1532, dGpNHpp and DNA primer ending in TTAG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

PDB-9q18:
Class II ("T0D0") of Human telomerase catalytic core with shelterin protein TPP1, BIBR1532, dGpNHpp and DNA primer ending in TTAG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

PDB-9q19:
Class III (T1D0) of Human telomerase catalytic core with shelterin protein TPP1, BIBR1532, dGpNHpp and DNA primer ending in TTAG
Method: single particle / : Wang Y, Liu B, He Y, Feigon J

EMDB-65483:
In situ Tspan-7 spiral structure in retraction fiber
Method: helical / : Jia X, Wang DJ, Li XP, Liu N, Yu L, Wang HW

EMDB-73963:
cryoEM structure of COMMD-like protein S4Y171 octamer
Method: single particle / : Healy MD, Collins BM, Liu M, Cater RJ, Blades F

EMDB-73964:
cryoEM structure of COMMD-like protein S4Y171 octamer
Method: single particle / : Healy MD, Collins BM, Liu M, Cater RJ, Blades F

PDB-9za1:
cryoEM structure of COMMD-like protein S4Y171 octamer
Method: single particle / : Healy MD, Collins BM, Liu M, Cater RJ, Blades F

PDB-9za2:
cryoEM structure of COMMD-like protein S4Y171 octamer
Method: single particle / : Healy MD, Collins BM, Liu M, Cater RJ, Blades F

EMDB-66192:
Cyro-EM structure of the ACT-451840-bound PfMDR1
Method: single particle / : Zhao Z, Li J, Wang X, Liu X, Wang N, Xu H, Quan C, Kato N, Deng D, Jing X

PDB-9ws4:
Cyro-EM structure of the ACT-451840-bound PfMDR1
Method: single particle / : Zhao Z, Li J, Wang X, Liu X, Wang N, Xu H, Quan C, Wang X, Kato N, Deng D, Jing X

EMDB-70905:
Cryo-EM structure of HCoV-OC43-C2 Spike glycoprotein in complex with 9O-acetyl GD3 sialoglycan
Method: single particle / : Jin M, Rini JM

PDB-9ovp:
Cryo-EM structure of HCoV-OC43-C2 Spike glycoprotein in complex with 9O-acetyl GD3 sialoglycan
Method: single particle / : Jin M, Rini JM

EMDB-65599:
Cryo-EM structure of the human beta2-adrenergic receptor in complex with a novel antagonist
Method: single particle / : Xu T, Liu X

PDB-9w3f:
Cryo-EM structure of the human beta2-adrenergic receptor in complex with a novel antagonist
Method: single particle / : Xu T, Liu X

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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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