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Showing 1 - 50 of 6,159 items for (author: michael & b)

EMDB-73220:
Cryo-EM structure of Escherichia coli transcription initiation complex with GpA and pseudouridimycin (PUM)
Method: single particle / : You LL, Ebright RH

EMDB-73221:
Cryo-EM structure of Escherichia coli transcription initiation complex with GpA and des-hydroxy pseudouridimycin (des-hydroxy PUM)
Method: single particle / : You LL, Ebright RH

PDB-9ynp:
Cryo-EM structure of Escherichia coli transcription initiation complex with GpA and pseudouridimycin (PUM)
Method: single particle / : You LL, Ebright RH

PDB-9ynq:
Cryo-EM structure of Escherichia coli transcription initiation complex with GpA and des-hydroxy pseudouridimycin (des-hydroxy PUM)
Method: single particle / : You LL, Ebright RH

EMDB-70069:
CryoEM structure of mu-opioid receptor - Gi protein complex bound to FNZ, Global Map
Method: single particle / : Robertson MJ, Skiniotis G

EMDB-70070:
CryoEM structure of mu-opioid receptor - Gi protein complex bound to FNZ- local map
Method: single particle / : Robertson MJ, Skiniotis G

EMDB-47959:
Cryo-EM model of E. coli aspartate transcarbamoylase in the T-state complexed with CP, CTP, and Mg2+
Method: single particle / : Miller RC, Ando N

PDB-9een:
Cryo-EM model of E. coli aspartate transcarbamoylase in the T-state complexed with CP, CTP, and Mg2+
Method: single particle / : Miller RC, Ando N

EMDB-70771:
Cryo-EM structure of rat TRPM1 in the apo state
Method: single particle / : Fabrizio M, Zhao C

PDB-9or5:
Cryo-EM structure of rat TRPM1 in the apo state
Method: single particle / : Fabrizio M, Zhao C

EMDB-68666:
Human 80S ribosome in complex with DHX29
Method: single particle / : Goto-Ito S, Iwasaki W, Ito T

PDB-22tu:
Human 80S ribosome in complex with DHX29
Method: single particle / : Goto-Ito S, Iwasaki W, Ito T

EMDB-70071:
CryoEM structure of mu-opioid receptor - Gi protein complex bound to fluornitrazene (FNZ)
Method: single particle / : Robertson MJ, Skiniotis G

EMDB-73615:
Sub-tomogram averaged structure of the non-piliated Tad machine in Caulobacter crescentus
Method: subtomogram averaging / : Iarocci J, Williston RF, Guo S

EMDB-73632:
Sub-tomogram averaged structure of the piliated Tad machine in Caulobacter crescentus
Method: subtomogram averaging / : Iarocci J, Williston RF, Guo S

EMDB-73646:
Sub-tomogram averaged structure of the Tad pilus secretin in Caulobacter crescentus
Method: subtomogram averaging / : Iarocci J, Williston RF, Guo S

EMDB-72906:
Structure of GPR61 bound to inverse agonist compound 15
Method: single particle / : Lees JA, Dias JM, Han S

PDB-9yfu:
Structure of GPR61 bound to inverse agonist compound 15
Method: single particle / : Lees JA, Dias JM, Han S

EMDB-71358:
NTSR1-Gi-NTS(8-13) Complex in the Canonical, AHD Open State (C-Open-Apo)
Method: single particle / : Robertson MJ

EMDB-71359:
NTSR1-Gi-NTS(8-13) Complex in the Non-Canonical, AHD Open State (NC-Open-Apo)
Method: single particle / : Robertson MJ

EMDB-71360:
NTSR1-Gi-NTS(8-13) Complex in the Canonical, AHD Closed State (C-Closed-Apo)
Method: single particle / : Robertson MJ

EMDB-71361:
NTSR1-Gi-NTS(8-13), GTP-bound Complex in the Canonical, AHD Open State (C-Open-GTP)
Method: single particle / : Robertson MJ

EMDB-71362:
NTSR1-Gi-NTS(8-13) GTP-Bound Complex in the Canonical, AHD Closed State (C-Closed-GTP)
Method: single particle / : Robertson MJ

EMDB-71363:
NTSR1-Gi-NTS(8-13) GTP-Bound Complex in the Non-Canonical, AHD Open State (NC-Open-GTP)
Method: single particle / : Robertson MJ

EMDB-71364:
NTSR1-Gi-NTS(8-13) GTP-Bound Complex in the Non-Canonical, AHD Closed State (NC-Closed-GTP)
Method: single particle / : Robertson MJ

EMDB-71365:
NTSR1-Gi-NTS(8-13) GTP-Bound Complex in the Canonical, AHD Closed State, 3DVA Sorted (C-Closed*-GTP)
Method: single particle / : Robertson MJ

EMDB-71366:
NTSR1-G11-NTS(8-13) Complex in the Canonical, AHD Open State (C-Open-Apo)
Method: single particle / : Robertson MJ

EMDB-71367:
NTSR1-G11-NTS(8-13) Complex in the Canonical, AHD Partially Closed State (C-P-Closed-Apo)
Method: single particle / : Robertson MJ

EMDB-71368:
NTSR1-G11-NTS(8-13) Complex in the Non-Canonical, AHD Open State (NC-Open-Apo)
Method: single particle / : Robertson MJ

EMDB-71369:
NTSR1-G11-NTS(8-13) GTP-Bound Complex in the Canonical, AHD Closed State 3DVA Separated 1 (C-Closed-GTP)
Method: single particle / : Robertson MJ

EMDB-71370:
NTSR1-G11-NTS(8-13) GTP-Bound Complex in the Canonical, AHD Closed State 3DVA Separated 2 (C-Closed*-GTP)
Method: single particle / : Robertson MJ

EMDB-74080:
NTSR1-Gi-NTS(8-13) GTP-Bound Complex in the Canonical, AHD Closed State (C-Closed-GTP), MSP1D1 Nanodisc
Method: single particle / : Robertson MJ

EMDB-74081:
NTSR1-Gi-NTS(8-13), GTP-bound Complex in the Canonical, AHD Open State (C-Open-GTP), MSP1D1
Method: single particle / : Robertson MJ

PDB-9p7z:
NTSR1-Gi-NTS(8-13) Complex in the Canonical, AHD Open State (C-Open-Apo)
Method: single particle / : Robertson MJ

PDB-9p80:
NTSR1-Gi-NTS(8-13) Complex in the Non-Canonical, AHD Open State (NC-Open-Apo)
Method: single particle / : Robertson MJ

PDB-9p81:
NTSR1-Gi-NTS(8-13), GTP-bound Complex in the Canonical, AHD Open State (C-Open-GTP)
Method: single particle / : Robertson MJ

PDB-9p82:
NTSR1-Gi-NTS(8-13) GTP-Bound Complex in the Canonical, AHD Closed State (C-Closed-GTP)
Method: single particle / : Robertson MJ

PDB-9p83:
NTSR1-Gi-NTS(8-13) GTP-Bound Complex in the Non-Canonical, AHD Open State (NC-Open-GTP)
Method: single particle / : Robertson MJ

PDB-9p84:
NTSR1-Gi-NTS(8-13) GTP-Bound Complex in the Non-Canonical, AHD Closed State (NC-Closed-GTP)
Method: single particle / : Robertson MJ

PDB-9p85:
NTSR1-Gi-NTS(8-13) GTP-Bound Complex in the Canonical, AHD Closed State, 3DVA Sorted (C-Closed*-GTP)
Method: single particle / : Robertson MJ

PDB-9p86:
NTSR1-G11-NTS(8-13) Complex in the Canonical, AHD Open State (C-Open-Apo)
Method: single particle / : Robertson MJ

PDB-9p87:
NTSR1-G11-NTS(8-13) Complex in the Canonical, AHD Partially Closed State (C-P-Closed-Apo)
Method: single particle / : Robertson MJ

PDB-9p88:
NTSR1-G11-NTS(8-13) Complex in the Non-Canonical, AHD Open State (NC-Open-Apo)
Method: single particle / : Robertson MJ

PDB-9p89:
NTSR1-G11-NTS(8-13) GTP-Bound Complex in the Canonical, AHD Closed State 3DVA Separated 1 (C-Closed-GTP)
Method: single particle / : Robertson MJ

PDB-9p8a:
NTSR1-G11-NTS(8-13) GTP-Bound Complex in the Canonical, AHD Closed State 3DVA Separated 2 (C-Closed*-GTP)
Method: single particle / : Robertson MJ

EMDB-73228:
Local refinement of Fab-14/SARS-CoV-2 D614G spike complex, Mode I
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73231:
Cryo-EM map of D614G spike, 1-up-RBD
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73244:
SARS-CoV-2 D614G spike, 3-RBD-downn
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73245:
Local refinement of Fab-14/SARS-CoV-2 D614G spike complex, Mode IV, Subgroup I conformation
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie X

EMDB-73247:
Fab-14/SARS-CoV-2 D614G spike complex, Mode V conformation
Method: single particle / : Wang Y, Hu Y, Leiman P, Xie 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

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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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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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