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Showing 1 - 50 of 181 items for (author: furukawa & h)

EMDB-70644:
Consensus map of open state Gly/Glu/24S-HC bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70645:
ECD focused map of open state Gly/Glu/24S-HC bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70646:
TMD focused refined open state Gly/Glu/24S-HC bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70647:
Consensus map of Closed state Gly/Glu/24S-HC bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70648:
TMD focus refined Closed state Gly/Glu/24S-HC bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70649:
ECD focus refined map of Closed state Gly/Glu/24S-HC bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70650:
Consensus map of Non-active state Gly/Glu/PS bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70651:
ECD focus refined map of Non-active state Gly/Glu/PS bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70652:
TMD focus refined map of Non-active state Gly/Glu/PS bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70653:
Consensus map of pre-active state Gly/Glu/PS bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70654:
ECD focus refined map of preactive state Gly/Glu/PS bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70655:
TMD focus refined map of preactive state Gly/Glu/PS bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-49839:
ATPase Hybrid F1 with the ancestral core domains Binding Dwell
Method: single particle / : Stewart AG, Noji H, Sobti M, Suzuki AK

EMDB-49840:
ATPase Hybrid F1 with the ancestral core domains Catalytic Dwell
Method: single particle / : Stewart AG, Noji H, Sobti M, Suzuki AK

EMDB-49841:
ATPase hybrid F1 with the ancestral core domains Hexamer without stalk Binding dwell
Method: single particle / : Stewart AG, Noji H, Sobti M, Suzuki AK

EMDB-49842:
ATPase hybrid F1 with the ancestral core domains Tetramer with stalk Binding Dwell
Method: single particle / : Stewart AG, Noji H, Sobti M, Suzuki AK

EMDB-49843:
ATPase hybrid F1 with the ancestral core domains Tetramer no stalk Binding Dwell
Method: single particle / : Stewart AG, Noji H, Sobti M, Suzuki AK

PDB-9nvl:
ATPase Hybrid F1 with the ancestral core domains Binding Dwell
Method: single particle / : Stewart AG, Noji H, Sobti M, Suzuki AK

PDB-9nvm:
ATPase Hybrid F1 with the ancestral core domains Catalytic Dwell
Method: single particle / : Stewart AG, Noji H, Sobti M, Suzuki AK

EMDB-70669:
Closed state of Gly/Glu/24S-HC bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70670:
Open state Gly/Glu/24S-HC bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70671:
Non-active state of Gly/Glu/Pregnenolone Sulfate bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70672:
Pre-active state of Gly/Glu/Pregnenolone Sulfate bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-70673:
Glycine/Glutamate/EU 1622-240 rGluN1a-2B NMDAR
Method: single particle / : Steigerwald R, Furukawa H

PDB-9ooq:
Closed state of Gly/Glu/24S-HC bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

PDB-9oor:
Open state Gly/Glu/24S-HC bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

PDB-9oos:
Non-active state of Gly/Glu/Pregnenolone Sulfate bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

PDB-9oot:
Pre-active state of Gly/Glu/Pregnenolone Sulfate bound hGluN1a-2B NMDAR
Method: single particle / : Hyunook K, Hiro F

PDB-9oou:
Glycine/Glutamate/EU 1622-240 rGluN1a-2B NMDAR
Method: single particle / : Steigerwald R, Furukawa H

EMDB-46526:
Nonactive state of Gly-,Glu- bound GluN1a-2B-2D NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-46527:
Open state of Gly-,Glu-,EU1622-240 bound GluN1a-2B-2D NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-46528:
Gly-,PPDA- bound GluN1a-2B-2D NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-46529:
Nonactive state of Gly-,Glu- bound GluN1a-2B-2D NMDAR (Low-res)
Method: single particle / : Hyunook K, Hiro F

EMDB-46530:
Gly-,Glu-,(S)-DQP-997-74 bound GluN1a-2B-2D NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-46531:
Gly-,Glu-,(S)-(+)-ketamine bound GluN1a-2B-2D NMDAR
Method: single particle / : Hyunook K, Hiro F

PDB-9d37:
Nonactive state of Gly-,Glu- bound GluN1a-2B-2D NMDAR
Method: single particle / : Hyunook K, Hiro F

PDB-9d38:
Open state of Gly-,Glu-,EU1622-240 bound GluN1a-2B-2D NMDAR
Method: single particle / : Hyunook K, Hiro F

PDB-9d39:
Gly-,PPDA- bound GluN1a-2B-2D NMDAR
Method: single particle / : Hyunook K, Hiro F

PDB-9d3a:
Nonactive state of Gly-,Glu- bound GluN1a-2B-2D NMDAR (Low-res)
Method: single particle / : Hyunook K, Hiro F

PDB-9d3b:
Gly-,Glu-,(S)-DQP-997-74 bound GluN1a-2B-2D NMDAR
Method: single particle / : Hyunook K, Hiro F

PDB-9d3c:
Gly-,Glu-,(S)-(+)-ketamine bound GluN1a-2B-2D NMDAR
Method: single particle / : Hyunook K, Hiro F

EMDB-43530:
Human GluN1-2A IgG 003-102 splayed conformation
Method: single particle / : Michalski K, Furukawa H

EMDB-43531:
Human GluN1-2A with Fab 003-102
Method: single particle / : Michalski K, Furukawa H

EMDB-43532:
Human GluN1-2A with Fab 003-102 Local refinement of ATD
Method: single particle / : Michalski K, Furukawa H

EMDB-43534:
Human GluN1-2A With Fab 008-218
Method: single particle / : Michalski K, Furukawa H

EMDB-43536:
Human GluN1-2A with Fab 008-218 Local refinement of ATD
Method: single particle / : Michalski K, Furukawa H

EMDB-43537:
Human GluN1-2A with IgG 003-102 WT conformation
Method: single particle / : Michalski K, Furukawa H

EMDB-43538:
Human GluN1-2A with IgG 007-168
Method: single particle / : Michalski K, Furukawa H

EMDB-43539:
Human GluN1-2A with IgG 008-218
Method: single particle / : Michalski K, Furukawa H

EMDB-43540:
Human GluN1-2B with Fab 007-168
Method: single particle / : Michalski K, Furukawa H

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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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Nobel Prize for mechanically activated and temperature-gated ion channels

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