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Showing all 29 items for (author: kleanthous & c)
EMDB-16816:
Structure of TolQR complex from E.coli
Method: single particle / : Webby MN, Kleanthous C, Press CE
PDB-8odt:
Structure of TolQR complex from E.coli
Method: single particle / : Webby MN, Kleanthous C, Press CE
EMDB-26878:
Structure of the SARS-CoV-2 S 6P trimer in complex with the mouse antibody Fab fragment, M8a-3
Method: single particle / : Fan C, Bjorkman PJ
EMDB-26879:
Structure of the SARS-CoV-2 S 6P trimer in complex with the mouse antibody Fab fragment, M8a-6
Method: single particle / : Fan C, Bjorkman PJ
EMDB-26880:
Structure of the SARS-CoV-2 S 6P trimer in complex with the mouse antibody Fab fragment, M8a-28
Method: single particle / : Fan C, Bjorkman PJ
EMDB-26881:
Structure of the SARS-CoV-2 S 6P trimer in complex with the mouse antibody Fab fragment, M8a-31
Method: single particle / : Fan C, Bjorkman PJ
EMDB-26882:
Structure of the SARS-CoV-2 Omicron BA.1 S 6P trimer in complex with the mouse antibody Fab fragment, M8a-31
Method: single particle / : Fan C, Bjorkman PJ
EMDB-26883:
Structure of the SARS-CoV-2 S 6P trimer in complex with the mouse antibody Fab fragment, M8a-34
Method: single particle / : Fan C, Bjorkman PJ
EMDB-26884:
Structure of the SARS-CoV-2 S 6P trimer in complex with the mouse antibody Fab fragment, HSW-1
Method: single particle / : Fan C, Bjorkman PJ
EMDB-26885:
Structure of the SARS-CoV-2 S S1 doamin in complex with the mouse antibody Fab fragment, HSW-2
Method: single particle / : Fan C, Bjorkman PJ
PDB-7uz4:
Structure of the SARS-CoV-2 S 6P trimer in complex with the mouse antibody Fab fragment, M8a-3
Method: single particle / : Fan C, Bjorkman PJ
PDB-7uz5:
Structure of the SARS-CoV-2 S 6P trimer in complex with the mouse antibody Fab fragment, M8a-6
Method: single particle / : Fan C, Bjorkman PJ
PDB-7uz6:
Structure of the SARS-CoV-2 S 6P trimer in complex with the mouse antibody Fab fragment, M8a-28
Method: single particle / : Fan C, Bjorkman PJ
PDB-7uz7:
Structure of the SARS-CoV-2 S 6P trimer in complex with the mouse antibody Fab fragment, M8a-31
Method: single particle / : Fan C, Bjorkman PJ
PDB-7uz8:
Structure of the SARS-CoV-2 Omicron BA.1 S 6P trimer in complex with the mouse antibody Fab fragment, M8a-31
Method: single particle / : Fan C, Bjorkman PJ
PDB-7uz9:
Structure of the SARS-CoV-2 S 6P trimer in complex with the mouse antibody Fab fragment, M8a-34
Method: single particle / : Fan C, Bjorkman PJ
PDB-7uza:
Structure of the SARS-CoV-2 S 6P trimer in complex with the mouse antibody Fab fragment, HSW-1
Method: single particle / : Fan C, Bjorkman PJ
PDB-7uzb:
Structure of the SARS-CoV-2 S S1 doamin in complex with the mouse antibody Fab fragment, HSW-2
Method: single particle / : Fan C, Bjorkman PJ
EMDB-12576:
ColicinE9 partial translocation complex
Method: single particle / : Webby MN, Kleanthous C, Lukoyanova N, Housden NG
EMDB-12577:
ColicinE9 intact translocation complex
Method: single particle / : Webby MN, Kleanthous C, Lukoyanova N, Housden NG
PDB-7nst:
ColicinE9 partial translocation complex
Method: single particle / : Webby MN, Kleanthous C, Lukoyanova N, Housden NG
PDB-7nsu:
ColicinE9 intact translocation complex
Method: single particle / : Webby MN, Kleanthous C, Lukoyanova N, Housden NG
EMDB-12309:
Trimeric efflux pump Klebsiella TolC in complex with KlebC
Method: single particle / : Webby MN, Housden NG, Kleanthous C
EMDB-12310:
Trimeric efflux pump Klebsiella TolC
Method: single particle / : Webby MN, Housden NG, Kleanthous C
PDB-7ng8:
Trimeric efflux pump Klebsiella TolC in complex with KlebC
Method: single particle / : Webby MN, Housden NG, Kleanthous C
PDB-7ng9:
Trimeric efflux pump Klebsiella TolC
Method: single particle / : Webby MN, Housden NG, Kleanthous C
EMDB-4219:
Teneurin3 monomer
Method: single particle / : Janssen BJC, Meijer DHM, van Bezouwen LS
PDB-6fay:
Teneurin3 monomer
Method: single particle / : Janssen BJC, Meijer DHM, van Bezouwen LS
EMDB-2372:
Negative stain EM structure of the trypsin digested Colicin E9 translocon complex
Method: single particle / : Lukoyanova N, Housden NG, Hopper JTS, Rodriguez-Larrea D, Wojdyla JA, Klein A, Kaminska R, Bayley H, Robinson CV, Kleanthous C, Saibil HR