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Showing 1 - 50 of 1,859 items for (author: chang & w)
EMDB-35323:
Cryo-EM structure of the ISFba1 TnpB-reRNA-dsDNA complex
Method: single particle / : Yin M, Zhou F, Zhu Y, Huang Z
PDB-8iaz:
Cryo-EM structure of the ISFba1 TnpB-reRNA-dsDNA complex
Method: single particle / : Yin M, Zhou F, Zhu Y, Huang Z
EMDB-37529:
Structure of DDM1-nucleosome complex in the apo state
Method: single particle / : Liu Y, Zhang Z, Du J
EMDB-37533:
Structure of DDM1-nucleosome complex in ADP state
Method: single particle / : Liu Y, Zhang Z, Du J
EMDB-37535:
Structure of DDM1-nucleosome complex in ADP-BeFx state
Method: single particle / : Liu Y, Zhang Z, Du J
EMDB-37537:
Structure of DDM1-nucleosome complex in the ADP-BeFx state with DDM1 bound to SHL2 and SHL-2
Method: single particle / : Liu Y, Zhang Z, Du J
EMDB-37538:
Structure of nucleosome core particle of Arabidopsis thaliana
Method: single particle / : Liu Y, Zhang Z, Du J
PDB-8wh5:
Structure of DDM1-nucleosome complex in the apo state
Method: single particle / : Liu Y, Zhang Z, Du J
PDB-8wh8:
Structure of DDM1-nucleosome complex in ADP state
Method: single particle / : Liu Y, Zhang Z, Du J
PDB-8wh9:
Structure of DDM1-nucleosome complex in ADP-BeFx state
Method: single particle / : Liu Y, Zhang Z, Du J
PDB-8wha:
Structure of DDM1-nucleosome complex in the ADP-BeFx state with DDM1 bound to SHL2 and SHL-2
Method: single particle / : Liu Y, Zhang Z, Du J
PDB-8whb:
Structure of nucleosome core particle of Arabidopsis thaliana
Method: single particle / : Liu Y, Zhang Z, Du J
EMDB-43330:
Tomogram of human Alzheimer's disease brain tissue showing variety of membrane vesicles and axonal cross-sections
Method: electron tomography / : Creekmore BC, Lee EB, Chang YW
EMDB-43331:
Tomogram of human Alzheimer's disease brain tissue showing longitudinal axonal cross-section
Method: electron tomography / : Creekmore BC, Lee EB, Chang YW
EMDB-43334:
Tomogram of human Alzheimer's disease brain tissue showing variety of membrane vesicles
Method: electron tomography / : Creekmore BC, Lee EB, Chang YW
EMDB-36803:
Potassium transporter KtrAB from Bacillus subtilis in ATP-bound state with addition of MgCl2
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD
PDB-8k1t:
Potassium transporter KtrAB from Bacillus subtilis in ATP-bound state with addition of MgCl2
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD
EMDB-36804:
Potassium transporter KtrAB from Bacillus subtilis in ATP-bound state with addition of EDTA and EGTA
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD
PDB-8k1u:
Potassium transporter KtrAB from Bacillus subtilis in ATP-bound state with addition of EDTA and EGTA
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD
EMDB-36801:
Potassium transporter KtrAB from Bacillus subtilis in ADP-bound state, focused refined on KtrA octamer
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD
EMDB-36800:
Potassium transporter KtrAB from Bacillus subtilis in ADP-bound state
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD
PDB-8k1s:
Potassium transporter KtrAB from Bacillus subtilis in ADP-bound state
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD
EMDB-38478:
Potassium transporter KtrAB from Bacillus subtilis in ATP-bound state with addition of EDTA and EGTA, C1 symmetry
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD
PDB-8xmi:
Potassium transporter KtrAB from Bacillus subtilis in ATP-bound state with addition of EDTA and EGTA, C1 symmetry
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD
EMDB-38477:
Potassium transporter KtrAB from Bacillus subtilis in ATP-bound state with addition of EDTA and EGTA, vertical C2 symmetry axis
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD
PDB-8xmh:
Potassium transporter KtrAB from Bacillus subtilis in ATP-bound state with addition of EDTA and EGTA, vertical C2 symmetry axis
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD
EMDB-36802:
Potassium transporter KtrAB from Bacillus subtilis in ADP-bound state, focused refined on KtrB dimer
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD
EMDB-36712:
Histamine-bound H4R/Gi complex
Method: single particle / : He Y, Xia R
EMDB-36714:
Clozapine-bound H4R/Gi complex
Method: single particle / : He Y, Xia R
EMDB-36715:
VUF6884-bound H4R/Gi complex
Method: single particle / : He Y, Xia R
EMDB-36716:
Clobenpropit-bound H4R/Gi complex
Method: single particle / : He Y, Xia R
EMDB-35832:
Cryo-EM structure of the GPR34 receptor in complex with the antagonist YL-365
Method: single particle / : Jia GW, Wang X, Zhang CB, Dong HH, Su ZM
PDB-8iyx:
Cryo-EM structure of the GPR34 receptor in complex with the antagonist YL-365
Method: single particle / : Jia GW, Wang X, Zhang CB, Dong HH, Su ZM
EMDB-18807:
SD1-2 fab in complex with SARS-COV-2 BA.12.1 Spike Glycoprotein.
Method: single particle / : Duyvesteyn HME, Ren J, Stuart DI
EMDB-18808:
SD1-3 Fab in complex with SARS-CoV-2 BA.2.12.1 Spike Glycoprotein
Method: single particle / : Duyvesteyn HME, Ren J, Stuart DI
PDB-8r1c:
SD1-2 Fab in complex with SARS-CoV-2 BA.2.12.1 Spike Glycoprotein
Method: single particle / : Duyvesteyn HME, Ren J, Stuart DI
PDB-8r1d:
SD1-3 Fab in complex with SARS-CoV-2 BA.2.12.1 Spike Glycoprotein
Method: single particle / : Duyvesteyn HME, Ren J, Stuart DI
EMDB-41442:
Acinetobacter GP16 Type IV pilus
Method: helical / : Meng R, Xing Z, Zhang J
EMDB-41443:
Acinetobacter phage AP205
Method: single particle / : Meng R, Xing Z, Chang J, Zhang J
EMDB-41447:
AP205 binding to one Acinetobacter GP16 type iv pilus
Method: single particle / : Xing Z, Meng R, Zhang J
EMDB-41634:
Inner Mat-T4P complex
Method: single particle / : Meng R, Xing Z, Thongchol J, Zhang J
EMDB-41635:
Outer Mat-T4P complex
Method: single particle / : Meng R, Xing Z, Thongchol J, Zhang J
EMDB-41646:
AP205 phage Acinetobacter gp16 T4P complex
Method: single particle / : Meng R, Xing Z, Zhang J
EMDB-41657:
Acinetobacter phage AP205 T=4 VLP
Method: single particle / : Meng R, Xing Z, Zhang J
EMDB-41666:
Acinetobacter phage AP205 T=3 VLP
Method: single particle / : Meng R, Xing Z, Zhang J
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