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Showing 1 - 50 of 175 items for (author: lee & cw)

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

EMDB-48672:
Consensus map of the endogenous Pfs230-Pfs48/45 complex
Method: single particle / : Dietrich MH, Glukhova A, Shakeel S, Tham WH

EMDB-48669:
Focused map of Pfs230 domains 1-8 of the endogenous Pfs230-Pfs48/45 complex
Method: single particle / : Dietrich MH, Glukhova A, Shakeel S, Tham WH

EMDB-48670:
Focused map of Pfs230 (domains 9-14) and Pfs48/45 of the endogenous Pfs230-Pfs48/45 complex
Method: single particle / : Dietrich MH, Glukhova A, Shakeel S, Tham WH

EMDB-48673:
Composite map of the endogenous complex of Pfs230-Pfs48/45
Method: single particle / : Dietrich MH, Glukhova A, Shakeel S, Tham WH

EMDB-49591:
Cryo-ET map of the VZV capsid vertex (5-fold axis).
Method: subtomogram averaging / : Oliver SL, Chen M

EMDB-38220:
Consensus map of Cx43/GJA1 gap junction channel in the presence of diC8-PIP2 (8-fold molar excess)
Method: single particle / : Lee HJ, Oh JS, Cha HJ, Lee CW, Jang HS, Woo JS

EMDB-38221:
Consensus map of Cx43/GJA1 gap junction channel in the presence of diC8-PIP2 (16-fold molar excess)
Method: single particle / : Lee HJ, Oh JS, Cha HJ, Lee CW, Jang HS, Woo JS

EMDB-38223:
Structure of Cx43/GJA1 gap junction intercellular channel in complex with diC8-PIP2
Method: single particle / : Lee HJ, Oh JS, Cha HJ, Lee CW, Jang HS, Woo JS

EMDB-60841:
Consensus map of acetyltransferase
Method: single particle / : Park JB, Roh SH

EMDB-60842:
AGD-Focused map
Method: single particle / : Park JB, Roh SH

EMDB-60843:
GNATD focused acetyltransferase
Method: single particle / : Park JB, Rho SH

EMDB-60844:
RD of acetyltransferase
Method: single particle / : Park JB, Roh SH

EMDB-60845:
Consensus map of ligand bound acetyltransferase
Method: single particle / : Park JB, Roh SH

EMDB-60846:
AGD of acetyltransferase
Method: single particle / : Park JB, Roh SH

EMDB-60847:
GNATD of acetyltransferase
Method: single particle / : Park JB, Roh SH

EMDB-60848:
RD of acetyltransferase
Method: single particle / : Park JB, Roh SH

EMDB-60849:
Apo-state E.coli PatZ
Method: single particle / : Park JB, Roh SH

EMDB-60853:
Liganded-state E.coli PatZ
Method: single particle / : Park JB, Roh SH

EMDB-39869:
Amyloid beta and TTR
Method: single particle / : Lee HN, Han CW, Jang SB, Jeong MS

EMDB-47265:
CoREST complex bound to U2AF2
Method: single particle / : Hicks CW, Alani RM

EMDB-17380:
Structure of human SIT1 bound to L-pipecolate (focussed map / refinement)
Method: single particle / : Li HZ, Pike ACW, Chi G, Hansen JS, Lee SG, Rodstrom KEJ, Bushell SR, Speedman D, Evans A, Wang D, He D, Shrestha L, Nasrallah C, Chalk R, Moreira T, MacLean EM, Marsden B, Bountra C, Burgess-Brown NA, Dafforn TR, Carpenter EP, Sauer DB

EMDB-17381:
Structure of human SIT1:ACE2 complex (open PD conformation) bound to L-pipecolate
Method: single particle / : Li HZ, Pike ACW, Chi G, Hansen JS, Lee SG, Rodstrom KEJ, Bushell SR, Speedman D, Evans A, Wang D, He D, Shrestha L, Nasrallah C, Chalk R, Moreira T, MacLean EM, Marsden B, Bountra C, Burgess-Brown NA, Dafforn TR, Carpenter EP, Sauer DB

EMDB-17382:
Structure of human SIT1:ACE2 complex (closed PD conformation) bound to L-pipecolate
Method: single particle / : Li HZ, Pike ACW, Chi G, Hansen JS, Lee SG, Rodstrom KEJ, Bushell SR, Speedman D, Evans A, Wang D, He D, Shrestha L, Nasrallah C, Chalk R, Moreira T, MacLean EM, Marsden B, Bountra C, Burgess-Brown NA, Dafforn TR, Carpenter EP, Sauer DB

EMDB-35010:
Human Consensus Olfactory Receptor OR52c in Complex with Octanoic Acid (OCA) and G Protein
Method: single particle / : Choi CW, Bae J, Choi HJ, Kim J

EMDB-35770:
Human Consensus Olfactory Receptor OR52c in Complex with Octanoic Acid (OCA) and G Protein (Consensus map)
Method: single particle / : Choi CW, Bae J, Choi HJ

EMDB-35772:
Human Consensus Olfactory Receptor OR52c in Complex with Octanoic Acid (OCA) and G Protein (Receptor-focused map)
Method: single particle / : Choi CW, Bae J, Choi HJ

EMDB-35773:
Human Consensus Olfactory Receptor OR52c in Complex with Octanoic Acid (OCA) and G Protein (G protein-focused map)
Method: single particle / : Choi CW, Bae J, Choi HJ

EMDB-35971:
Human Consensus Olfactory Receptor OR52c in apo state, OR52c-bRIL
Method: single particle / : Choi CW, Bae J, Choi HJ, Kim J

EMDB-37336:
Human Consensus Olfactory Receptor OR52c in apo state, OR52c only
Method: single particle / : Choi CW, Bae J, Choi HJ, Kim J

EMDB-28552:
Human Membrane-bound O-acyltransferase 7
Method: single particle / : Wang K, Liao M, Farese RV, Walther TC

EMDB-33650:
SARS-CoV-2 spike glycoprotein trimer complexed with Fab fragment of anti-RBD antibody E7
Method: single particle / : Chia WN, Tan CW, Tan AWK, Young B, Starr TN, Lopez E, Fibriansah G, Barr J, Cheng S, Yeoh AYY, Yap WC, Lim BL, Ng TS, Sia WR, Zhu F, Chen S, Zhang J, Greaney AJ, Chen M, Au GG, Paradkar P, Peiris M, Chung AW, Bloom JD, Lye D, Lok SM, Wang LF

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