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Showing 1 - 50 of 118 items for (author: qianhui & q)

EMDB-36995:
Cryo-EM structure of the GPI inositol-deacylase (PGAP1/Bst1) from Chaetomium thermophilum
Method: single particle / : Hong J, Li T, Qu Q, Li D

EMDB-36996:
Cryo EM structure of the products-bound PGAP1(Bst1)-H443N from Chaetomium thermophilum
Method: single particle / : Li T, Hong J, Qu Q, Li D

EMDB-36997:
Cryo-EM structure of the products-bound PGAP1(Bst1)-S327A from Chaetonium thermophilum
Method: single particle / : Li T, Hong J, Qu Q, Li D

PDB-8k9q:
Cryo-EM structure of the GPI inositol-deacylase (PGAP1/Bst1) from Chaetomium thermophilum
Method: single particle / : Hong J, Li T, Qu Q, Li D

PDB-8k9r:
Cryo EM structure of the products-bound PGAP1(Bst1)-H443N from Chaetomium thermophilum
Method: single particle / : Li T, Hong J, Qu Q, Li D

PDB-8k9t:
Cryo-EM structure of the products-bound PGAP1(Bst1)-S327A from Chaetonium thermophilum
Method: single particle / : Li T, Hong J, Qu Q, Li D

EMDB-35575:
Cryo-EM structure of GPI-T with a chimeric GPI-anchored protein
Method: single particle / : Xu Y, Li T, Qu Q, Li D

EMDB-35576:
Cryo-EM structure of GPI-T (inactive mutant) with GPI and proULBP2, a proprotein substrate
Method: single particle / : Li T, Xu Y, Qu Q, Li D

PDB-8imx:
Cryo-EM structure of GPI-T with a chimeric GPI-anchored protein
Method: single particle / : Xu Y, Li T, Qu Q, Li D

PDB-8imy:
Cryo-EM structure of GPI-T (inactive mutant) with GPI and proULBP2, a proprotein substrate
Method: single particle / : Li T, Xu Y, Qu Q, Li D

EMDB-33884:
Cryo-EM structure of Apo-alpha-syn fibril
Method: helical / : Xu QH, Xia WC, Tao YQ, Liu C

EMDB-33890:
Cryo-EM structure of dLAG3-alpha-syn fibril
Method: helical / : Xu QH, Xia WC, Tao YQ, Liu C

PDB-7yk2:
Cryo-EM structure of Apo-alpha-syn fibril
Method: helical / : Xu QH, Xia WC, Tao YQ, Liu C

PDB-7yk8:
Cryo-EM structure of dLAG3-alpha-syn fibril
Method: helical / : Xu QH, Xia WC, Tao YQ, Liu C

EMDB-33043:
CryoEM structure of dsDNA-RuvB-RuvA domain3 complex
Method: single particle / : Lin Z, Qu Q, Zhang X, Zhou Z

EMDB-33044:
CryoEM structure of RuvA-RuvB-Holliday junction complex
Method: single particle / : Lin Z, Qu Q, Zhang X, Zhou Z

PDB-7x7p:
CryoEM structure of dsDNA-RuvB-RuvA domain3 complex
Method: single particle / : Lin Z, Qu Q, Zhang X, Zhou Z

PDB-7x7q:
CryoEM structure of RuvA-RuvB-Holliday junction complex
Method: single particle / : Lin Z, Qu Q, Zhang X, Zhou Z

EMDB-33013:
CryoEM structure of RuvA-Holliday junction complex
Method: single particle / : Lin Z, Qu Q, Zhang X, Zhou Z

PDB-7x5a:
CryoEM structure of RuvA-Holliday junction complex
Method: single particle / : Lin Z, Qu Q, Zhang X, Zhou Z

EMDB-26313:
C6-guano bound Mu Opioid Receptor-Gi Protein Complex
Method: single particle / : Wang H, Kobilka B

PDB-7u2k:
C6-guano bound Mu Opioid Receptor-Gi Protein Complex
Method: single particle / : Wang H, Kobilka B

EMDB-25612:
CryoEM structure of mu-opioid receptor - Gi protein complex bound to mitragynine pseudoindoxyl (MP)
Method: single particle / : Seven AB, Qu Q, Robertson MJ, Wang H, Kobilka BK, Skiniotis G

EMDB-25613:
CryoEM structure of mu-opioid receptor - Gi protein complex bound to lofentanil (LFT)
Method: single particle / : Seven AB, Qu Q, Huang W, Robertson MJ, Kobilka BK, Skiniotis G

PDB-7t2g:
CryoEM structure of mu-opioid receptor - Gi protein complex bound to mitragynine pseudoindoxyl (MP)
Method: single particle / : Seven AB, Qu Q, Robertson MJ, Wang H, Kobilka BK, Skiniotis G

PDB-7t2h:
CryoEM structure of mu-opioid receptor - Gi protein complex bound to lofentanil (LFT)
Method: single particle / : Seven AB, Qu Q, Huang W, Robertson MJ, Kobilka BK, Skiniotis G

EMDB-34034:
SARS-CoV-2 BA.2.75 S Trimer (1 RBD Up)
Method: single particle / : Wang L

EMDB-34035:
SARS-CoV-2 BA.2.75 S Trimer (3 RBD Down)
Method: single particle / : Wang L

EMDB-34036:
pH 5.5 SARS-CoV-2 BA.2.75 S Trimer (1 RBD Up)
Method: single particle / : Wang L

EMDB-34037:
SARS-CoV-2 BA.2.75 S Trimer (3 RBD Down)
Method: single particle / : Wang L

EMDB-34038:
SARS-CoV-2 BA.2.75 S Trimer in complex with S309 (state1)
Method: single particle / : Wang L

EMDB-34039:
SARS-CoV-2 BA.2.75 S Trimer in complex with S309 (state2)
Method: single particle / : Wang L

EMDB-34040:
SARS-CoV-2 BA.2.75 S Trimer in complex with S309 (state3)
Method: single particle / : Wang L

EMDB-34041:
SARS-CoV-2 BA.2.75 S Trimer in complex with S309 (interface)
Method: single particle / : Wang L

EMDB-34042:
SARS-CoV-2 BA.2.75 S Trimer in complex with XG2v024
Method: single particle / : Wang L

EMDB-34043:
SARS-CoV-2 BA.2.75 S Trimer in complex with ACE2(state1)
Method: single particle / : Wang L

EMDB-34044:
SARS-CoV-2 BA.2.75 S Trimer in complex with ACE2(state2)
Method: single particle / : Wang L

PDB-7yqt:
SARS-CoV-2 BA.2.75 S Trimer (1 RBD Up)
Method: single particle / : Wang L

PDB-7yqu:
SARS-CoV-2 BA.2.75 S Trimer (3 RBD Down)
Method: single particle / : Wang L

PDB-7yqv:
pH 5.5 SARS-CoV-2 BA.2.75 S Trimer (1 RBD Up)
Method: single particle / : Wang L

PDB-7yqw:
SARS-CoV-2 BA.2.75 S Trimer (3 RBD Down)
Method: single particle / : Wang L

PDB-7yqx:
SARS-CoV-2 BA.2.75 S Trimer in complex with S309 (state1)
Method: single particle / : Wang L

PDB-7yqy:
SARS-CoV-2 BA.2.75 S Trimer in complex with S309 (state2)
Method: single particle / : Wang L

PDB-7yqz:
SARS-CoV-2 BA.2.75 S Trimer in complex with S309 (state3)
Method: single particle / : Wang L

PDB-7yr0:
SARS-CoV-2 BA.2.75 S Trimer in complex with S309 (interface)
Method: single particle / : Wang L

PDB-7yr1:
SARS-CoV-2 BA.2.75 S Trimer in complex with XG2v024
Method: single particle / : Wang L

PDB-7yr2:
SARS-CoV-2 BA.2.75 S Trimer in complex with ACE2(state1)
Method: single particle / : Wang L

PDB-7yr3:
SARS-CoV-2 BA.2.75 S Trimer in complex with ACE2(state2)
Method: single particle / : Wang L

EMDB-32479:
Acidic Omicron Spike Trimer
Method: single particle / : Cui Z

EMDB-32480:
Delta Spike Trimer(3 RBD Down)
Method: single particle / : Cui Z

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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

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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

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