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Showing 1 - 50 of 1,979 items for (author: kim & i)

EMDB-42676:
5-HT2AR bound to Lisuride in complex with a mini-Gq protein and an active-state stabilizing single-chain variable fragment (scFv16) obtained by cryo-electron microscopy (cryoEM)
Method: single particle / : Barros-Alvarez X, Kim K, Panova O, Roth BL, Skiniotis G

EMDB-42999:
5HT2AR-miniGq heterotrimer in complex with a novel agonist obtained from large scale docking
Method: single particle / : Gumpper RH, Wang L, Kapolka N, Skiniotis G, Roth BL

PDB-8uwl:
5-HT2AR bound to Lisuride in complex with a mini-Gq protein and an active-state stabilizing single-chain variable fragment (scFv16) obtained by cryo-electron microscopy (cryoEM)
Method: single particle / : Barros-Alvarez X, Kim K, Panova O, Roth BL, Skiniotis G

PDB-8v6u:
5HT2AR-miniGq heterotrimer in complex with a novel agonist obtained from large scale docking
Method: single particle / : Gumpper RH, Wang L, Kapolka N, Skiniotis G, Roth BL

EMDB-36271:
Cryo-EM structure of the DOCK5/ELMO1 complex, focused on one protomer
Method: single particle / : Kukimoto-Niino M, Katsura K, Ishizuka-Katsura Y, Mishima-Tsumagari C, Yonemochi M, Inoue M, Nakagawa R, Kaushik R, Zhang KYJ, Shirouzu M

PDB-8jhk:
Cryo-EM structure of the DOCK5/ELMO1 complex, focused on one protomer
Method: single particle / : Kukimoto-Niino M, Katsura K, Ishizuka-Katsura Y, Mishima-Tsumagari C, Yonemochi M, Inoue M, Nakagawa R, Kaushik R, Zhang KYJ, Shirouzu M

EMDB-41248:
Structure of AT118-H Nanobody Antagonist in Complex with the Angiotensin II Type I Receptor
Method: single particle / : Skiba MA, Kruse AC

EMDB-41249:
Structure of AT118-L Nanobody Antagonist in Complex with the Angiotensin II Type I Receptor and Losartan
Method: single particle / : Skiba MA, Kruse AC

PDB-8th3:
Structure of AT118-H Nanobody Antagonist in Complex with the Angiotensin II Type I Receptor
Method: single particle / : Skiba MA, Kruse AC

PDB-8th4:
Structure of AT118-L Nanobody Antagonist in Complex with the Angiotensin II Type I Receptor and Losartan
Method: single particle / : Skiba MA, Kruse AC

EMDB-36907:
Cryo-EM structure of the RC-LH core comples from Halorhodospira halochloris
Method: single particle / : Wang GL, Qi CH, Yu LJ

PDB-8k5o:
Cryo-EM structure of the RC-LH core comples from Halorhodospira halochloris
Method: single particle / : Wang GL, Qi CH, Yu LJ

EMDB-18658:
Structure of the NCOA4 (Nuclear Receptor Coactivator 4)-FTH1 (H-Ferritin) complex
Method: single particle / : Hoelzgen F, Klukin E, Zalk R, Shahar A, Cohen-Schwartz S, Frank GA

PDB-8qu9:
Structure of the NCOA4 (Nuclear Receptor Coactivator 4)-FTH1 (H-Ferritin) complex
Method: single particle / : Hoelzgen F, Klukin E, Zalk R, Shahar A, Cohen-Schwartz S, Frank GA

EMDB-36223:
Cryo-EM structure of the GI.4 Chiba VLP complexed with the CV-1A1 Fv-clasp
Method: single particle / : Hosaka T, Katsura K, Kimura-Someya T, Someya Y, Shirouzu M

PDB-8jg5:
Cryo-EM structure of the GI.4 Chiba VLP complexed with the CV-1A1 Fv-clasp
Method: single particle / : Hosaka T, Katsura K, Kimura-Someya T, Someya Y, Shirouzu M

EMDB-35866:
PKR and NS1 complex
Method: single particle / : Han CW, Kim HJ

PDB-8izn:
Structural study of Interferon-induced, double-stranded RNA-activated protein kinase (PKR) and Non-structural protein 1 (NS1) complex
Method: single particle / : Han CW, Kim HJ

EMDB-43647:
CryoEM structure of Gi-coupled TAS2R14 with cholesterol and an intracellular tastant
Method: single particle / : Kim Y, Gumpper RH, Roth BL

EMDB-43650:
CryoEM structure of Ggust-coupled TAS2R14 with cholesterol and an intracellular tastant
Method: single particle / : Kim Y, Gumpper RH, Roth BL

EMDB-43656:
CryoEM structure of Gi-coupled TAS2R14 with cholesterol and an intracellular tastant (Locally refined map)
Method: single particle / : Kim Y, Gumpper RH, Roth BL

EMDB-43657:
CryoEM structure of Ggust-coupled TAS2R14 with cholesterol and an intracellular tastant (Locally refined map)
Method: single particle / : Kim Y, Gumpper RH, Roth BL

PDB-8vy7:
CryoEM structure of Gi-coupled TAS2R14 with cholesterol and an intracellular tastant
Method: single particle / : Kim Y, Gumpper RH, Roth BL

PDB-8vy9:
CryoEM structure of Ggust-coupled TAS2R14 with cholesterol and an intracellular tastant
Method: single particle / : Kim Y, Gumpper RH, Roth BL

EMDB-43091:
hGBP1 conformer on the bacterial outer membrane
Method: subtomogram averaging / : Zhu S, MacMicking J

EMDB-43153:
hGBP1 conformer on the bacterial outer membrane
Method: subtomogram averaging / : Zhu S, MacMicking J

EMDB-37386:
The cryo-EM structure of the Nicotiana tabacum PEP-PAP
Method: single particle / : Wu XX, Zhang Y

EMDB-37387:
The cryo-EM structure of the Nicotiana tabacum PEP-PAP-TEC1
Method: single particle / : Wu XX, Zhang Y

EMDB-37388:
The cryo-EM structure of the Nicotiana tabacum PEP-PAP-TEC2
Method: single particle / : Wu XX, Zhang Y

PDB-8w9z:
The cryo-EM structure of the Nicotiana tabacum PEP-PAP
Method: single particle / : Wu XX, Zhang Y

PDB-8wa0:
The cryo-EM structure of the Nicotiana tabacum PEP-PAP-TEC1
Method: single particle / : Wu XX, Zhang Y

PDB-8wa1:
The cryo-EM structure of the Nicotiana tabacum PEP-PAP-TEC2
Method: single particle / : Wu XX, Zhang Y

EMDB-41888:
Structure of Apo CXCR4/Gi complex
Method: single particle / : Saotome K, McGoldrick LL, Franklin MC

EMDB-41889:
Structure of CXCL12-bound CXCR4/Gi complex
Method: single particle / : Saotome K, McGoldrick LL, Franklin MC

EMDB-41890:
Structure of AMD3100-bound CXCR4/Gi complex
Method: single particle / : Saotome K, McGoldrick LL, Franklin MC

EMDB-41891:
Structure of REGN7663 Fab-bound CXCR4/Gi complex
Method: single particle / : Saotome K, McGoldrick LL, Franklin MC

EMDB-41892:
Structure of REGN7663-Fab bound CXCR4
Method: single particle / : Saotome K, McGoldrick LL, Franklin MC

EMDB-41893:
Structure of trimeric CXCR4 in complex with REGN7663 Fab
Method: single particle / : Saotome K, McGoldrick LL, Franklin MC

EMDB-41894:
Structure of tetrameric CXCR4 in complex with REGN7663 Fab
Method: single particle / : Saotome K, McGoldrick LL, Franklin MC

EMDB-19789:
Flexible reconstruction of the yeast U4/U6.U5 tri-snRNP (EMPIAR-10073) using DynaMight
Method: single particle / : Schwab J, Scheres SHW

EMDB-19791:
Flexible reconstruction of a pre-catalytic spliceosome (EMPIAR-10180) using DynaMight
Method: single particle / : Schwab J, Scheres SHW

EMDB-19794:
Flexible reconstruction of the yeast inner kinetochore bound to a CENP-A nucleosome (EMPIAR-11890)
Method: single particle / : Schwab J, Kimanius D, Burt A, Dendooven T, Scheres SHW

EMDB-19799:
Flexible reconstruction of CBF1-CCAN bound to a centromeric CENP-A nucleosome (EMPIAR-11910)
Method: single particle / : Schwab J, Kimanius D, Burt A, Dendooven T, Scheres SHW

EMDB-39117:
Cryo-EM structure of Maltose Binding Protein
Method: single particle / : Yoo Y, Park K, Kim H

PDB-8ybe:
Cryo-EM structure of Maltose Binding Protein
Method: single particle / : Yoo Y, Park K, Kim H

EMDB-28138:
3D reconstruction of the apical complex of Plasmodium falciparum (3D7) free merozoite
Method: electron tomography / : Segev-Zarko L, Sun SY, Kim CY

EMDB-28141:
3D reconstruction of the apical complex of Plasmodium falciparum (3D7) free merozoite
Method: electron tomography / : Segev-Zarko L, Sun SY, Kim CY

EMDB-28142:
3D Reconstruction of Plasmodium falciparum (3D7) free merozoite
Method: electron tomography / : Segev-Zarko L, Sun SY, Kim CY

EMDB-37465:
Photosynthetic LH1-RC complex from the purple sulfur bacterium Allochromatium vinosum purified by sucrose density
Method: single particle / : Tani K, Kanno R, Harada A, Kobayashi A, Minamino A, Nakamura N, Ji XC, Purba ER, Hall M, Yu LJ, Madigan MT, Mizoguchi A, Iwasaki K, Humbel BM, Kimura Y, Wang-Otomo ZY

EMDB-37466:
Photosynthetic LH1-RC complex from the purple sulfur bacterium Allochromatium vinosum purified by Ca2+-DEAE
Method: single particle / : Tani K, Kanno R, Harada A, Kobayashi A, Minamino A, Nakamura N, Ji XC, Purba ER, Hall M, Yu LJ, Madigan MT, Mizoguchi A, Iwasaki K, Humbel BM, Kimura Y, Wang-Otomo ZY

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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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