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Showing 1 - 50 of 4,223 items for (author: lee & w)

EMDB-45969: 
Local refinement of the SARS-CoV-2 BA.2.86 RBD in complex with TRI2-2 minibinder
Method: single particle / : Lee J, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

EMDB-45971: 
Local refinement of the SARS-CoV-2 BA.2.86 NTD
Method: single particle / : Lee J, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

EMDB-45972: 
SARS-CoV-2 BA.2.86 Spike trimer in complex with TRI2-2 minibinder
Method: single particle / : Lee J, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)

PDB-9cwp: 
Local refinement of the SARS-CoV-2 BA.2.86 RBD in complex with TRI2-2 minibinder
Method: single particle / : Lee J, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)

PDB-9cwq: 
Local refinement of the SARS-CoV-2 BA.2.86 NTD
Method: single particle / : Lee J, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)

PDB-9cwr: 
SARS-CoV-2 BA.2.86 Spike trimer in complex with TRI2-2 minibinder
Method: single particle / : Lee J, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)

EMDB-63533: 
Cryo-EM structure of homomeric TRPC channel with agonists, class 1
Method: single particle / : Park H, Kim SH, Lee HH

EMDB-63534: 
Cryo-EM structure of homomeric TRPC channel with agonists, class 2
Method: single particle / : Park H, Kim SH, Lee HH

PDB-9lzy: 
Cryo-EM structure of homomeric TRPC channel with agonists, class 1
Method: single particle / : Park H, Kim SH, Lee HH

PDB-9lzz: 
Cryo-EM structure of homomeric TRPC channel with agonists, class 2
Method: single particle / : Park H, Kim SH, Lee HH

EMDB-60775: 
Consensus map of Cx36/GJD2 gap junction intercellular channel in soybean polar lipid nanodiscs, treated with a 20-fold molar excess of carbenoxolone (including D6 and D1 symmetry maps)
Method: single particle / : Jang HS

EMDB-60713: 
Hemichannel sub-structure of Cx43/GJA1 gap junction intercellular channel, treated with a 5-molar excess of carbenoxolone
Method: single particle / : Lee CW

EMDB-60717: 
Consensus map of Cx43/GJA1 gap junction intercellular channel in POPE nanodiscs, treated with a 5-fold molar excess of carbenoxolone (including D6 and D1 symmetry maps)
Method: single particle / : Lee CW

EMDB-60741: 
Consensus map of Cx43/GJA1 gap junction intercellular channel in POPE nanodiscs, treated with a 20-fold molar excess of carbenoxolone (including D6 and D1 symmetry maps)
Method: single particle / : Lee CW

EMDB-60743: 
Hemichannel sub-structure of Cx43/GJA1 gap junction intercellular channel in POPE nanodiscs, treated with a 20-fold molar excess of carbenoxolone
Method: single particle / : Lee CW

EMDB-60753: 
Consensus map of Cx36/GJD2 gap junction intercellular channel in brain polar lipid nanodiscs (including D6 and D1 symmetry maps)
Method: single particle / : Jang HS

EMDB-60754: 
Hemichannel sub-structure of Cx36/GJD2 gap junction intercellular channel (FN conformation) in brain polar lipid nanodiscs
Method: single particle / : Jang HS

EMDB-60758: 
Consensus map of Cx36/GJD2 gap junction intercellular channel in brain polar lipid nanodiscs, treated with a 14-fold molar excess of carbenoxolone (including D6 and D1 symmetry maps)
Method: single particle / : Jang HS

EMDB-60759: 
Hemichannel sub-structure of Cx36/GJD2 gap junction intercellular channel (FN conformation) in brain polar lipid nanodiscs, treated with a 14-fold molar excess of carbenoxolone
Method: single particle / : Jang HS

EMDB-60761: 
Consensus map of Cx36/GJD2 gap junction intercellular channel in soybean polar lipid nanodiscs (including D6 and D1 symmetry maps)
Method: single particle / : Jang HS

EMDB-60762: 
Hemichannel sub-structure of Cx36/GJD2 gap junction intercellular channel (FN conformation) in soybean polar lipid nanodiscs
Method: single particle / : Jang HS

EMDB-60763: 
Consensus map of Cx36/GJD2 gap junction intercellular channel in soybean polar lipid nanodiscs, treated with a 10-fold molar excess of carbenoxolone and incubated shortly (including D6 and D1 symmetry maps)
Method: single particle / : Jang HS

EMDB-60774: 
Consensus map of Cx36/GJD2 gap junction intercellular channel in soybean polar lipid nanodiscs, treated with a 10-fold molar excess of carbenoxolone (including D6 and D1 symmetry maps)
Method: single particle / : Jang HS

EMDB-60777: 
Hemichannel sub-structure of Cx36/GJD2 gap junction intercellular channel (FN conformation) in soybean polar lipid nanodiscs, treated with a 20-fold molar excess of carbenoxolone
Method: single particle / : Jang HS

EMDB-60778: 
Hemichannel sub-structure of Cx36/GJD2 gap junction intercellular channel (FN conformation) in soybean polar lipid nanodiscs, treated with a 10-fold molar excess of carbenoxolone and incubated shortly
Method: single particle / : Jang HS

EMDB-60779: 
Hemichannel sub-structure of Cx36/GJD2 gap junction intercellular channel (FN conformation) in soybean polar lipid nanodiscs, treated with a 10-fold molar excess of carbenoxolone
Method: single particle / : Jang HS

PDB-9inz: 
Hemichannel sub-structure of Cx43/GJA1 gap junction intercellular channel, treated with a 5-molar excess of carbenoxolone
Method: single particle / : Lee CW

EMDB-45640: 
L9 epitope scaffold complexed with L9 Fabs
Method: single particle / : Raghavan SSR, Lee WH, Ward AB

PDB-9ck4: 
L9 epitope scaffold complexed with L9 Fabs
Method: single particle / : Raghavan SSR, Lee WH, Ward AB

EMDB-46785: 
Trypanosoma brucei mitochondrial RNA-editing catalytic complex 1, U-deletion (RECC1), consensus map
Method: single particle / : Liu YT, Jih J, Zhou ZH, Aphasizhev R

EMDB-46786: 
Trypanosoma brucei mitochondrial RNA-editing catalytic complex 1, U-deletion (RECC1), left wing focused refinement map
Method: single particle / : Liu YT, Jih J, Zhou ZH, Aphasizhev R

EMDB-46787: 
Trypanosoma brucei mitochondrial RNA-editing catalytic complex 1, U-deletion (RECC1), right wing focused refinement map
Method: single particle / : Liu YT, Jih J, Zhou ZH, Aphasizhev R

EMDB-46789: 
Trypanosoma brucei mitochondrial RNA-editing catalytic complex 1, U-deletion (RECC1), tail focused refinement map
Method: single particle / : Liu YT, Jih J, Zhou ZH, Aphasizhev R

EMDB-46791: 
Trypanosoma brucei mitochondrial RNA-editing catalytic complex 1, U-deletion (RECC1), composite map
Method: single particle / : Liu YT, Jih J, Zhou ZH, Aphasizhev R

EMDB-71244: 
The consensus map of zebrafish TRPM5 with 1mM EDTA and 0.5mM CBTA
Method: single particle / : Ruan Z, Du J, Lu W

EMDB-71245: 
The open state of zebrafish TRPM5 with 1mM EDTA and 0.5mM CBTA
Method: single particle / : Ruan Z, Du J, Lu W

EMDB-71246: 
Zebrafish TRPM5 with 5mM calcium and 0.5mM CBTA
Method: single particle / : Ruan Z, Du J, Lu W

EMDB-71247: 
Zebrafish TRPM5 with 0.2mM calcium
Method: single particle / : Ruan Z, Du J, Lu W, Li Y

EMDB-71248: 
Zebrafish TRPM5 with 1uM calcium
Method: single particle / : Ruan Z, Du J, Lu W

EMDB-71249: 
Zebrafish TRPM5 with 2uM Ca in GDN detergent
Method: single particle / : Ruan Z, Du J, Lu W

EMDB-71250: 
Zebrafish TRPM5 with 5mM EGTA and 0.5mM CBTA
Method: single particle / : Ruan Z, Du J, Lu W

EMDB-71251: 
Zebrafish TRPM5 D797A mutant with 5mM calcium
Method: single particle / : Ruan Z, Du J, Lu W

EMDB-71252: 
Zebrafish TRPM5 D797A mutant with 5mM calcium and 0.5mM CBTA
Method: single particle / : Ruan Z, Du J, Lu W

EMDB-71253: 
Zebrafish TRPM5 D797N mutant with 5mM calcium and 0.5mM CBTA
Method: single particle / : Ruan Z, Du J, Lu W

EMDB-71254: 
Zebrafish TRPM5 with 5mM calcium and 0.5mM TPPO
Method: single particle / : Ruan Z, Du J, Lu W

EMDB-71255: 
Zebrafish TRPM5 E337A mutant with 5mM calcium and 0.5mM CBTA
Method: single particle / : Ruan Z, Du J, Lu W

EMDB-71256: 
Zebrafish TRPM5 Q771A mutant with 5mM calcium and 0.5mM CBTA
Method: single particle / : Ruan Z, Du J, Lu W

EMDB-71257: 
Zebrafish TRPM5 Q771A mutant with 5mM calcium
Method: single particle / : Ruan Z, Du J, Lu W

PDB-9p3n: 
The open state of zebrafish TRPM5 with 1mM EDTA and 0.5mM CBTA
Method: single particle / : Ruan Z, Du J, Lu W

PDB-9p3o: 
Zebrafish TRPM5 with 5mM calcium and 0.5mM CBTA
Method: single particle / : Ruan Z, Du J, Lu W
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