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Showing all 22 items for (author: quispe, & j.)
PDB-8soy:
Cryo-EM structure of Enoyl-CoA hydratase from Mycobacterium smegmatis
Method: single particle / : Shek R, Quispe J, Staker B, Seattle Structural Genomics Center for Infectious Disease (SSGCID)
PDB-7rkh:
Yeast CTP Synthase (URA8) tetramer bound to ATP/UTP at neutral pH
Method: single particle / : Hansen JM, Lynch EM, Farrell DP, DiMaio F, Quispe J, Kollman JM
PDB-7rl0:
Yeast CTP Synthase (URA8) Filament bound to ATP/UTP at low pH
Method: single particle / : Hansen JM, Lynch EM, Farrell DP, DiMaio F, Quispe J, Kollman JM
PDB-7rl5:
Yeast CTP Synthase (URA8) filament bound to CTP at low pH
Method: single particle / : Hansen JM, Lynch EM, Farrell DP, DiMaio F, Quispe J, Kollman JM
PDB-7rmc:
Yeast CTP Synthase (Ura7) filament bound to CTP at low pH
Method: single particle / : Hansen JM, Lynch EM, Farrell DP, DiMaio F, Quispe J, Kollman JM
PDB-7rmf:
Substrate-bound Ura7 filament at low pH
Method: single particle / : Hansen JM, Lynch EM, Farrell DP, DiMaio F, Quispe J, Kollman JM
PDB-7rmk:
Yeast CTP Synthase (Ura7) Bundle bound to substrates at low pH
Method: single particle / : Hansen JM, Lynch EM, Farrell DP, DiMaio F, Quispe J, Kollman JM
PDB-7rmo:
Yeast CTP Synthase (Ura7) Bundle bound to Products at low pH
Method: single particle / : Hansen JM, Lynch EM, Farrell DP, DiMaio F, Quispe J, Kollman JM
PDB-7rmv:
Yeast CTP Synthase (Ura7) H360R Filament bound to Substrates
Method: single particle / : Hansen JM, Lynch EM, Farrell DP, DiMaio F, Quispe J, Kollman JM
PDB-7rnl:
Yeast CTP Synthase (Ura7) H360R Filament bound to Substrates
Method: single particle / : Hansen JM, Lynch EM, Farrell DP, DiMaio F, Quispe J, Kollman JM
PDB-7rnr:
Yeast CTP Synthase (Ura8) Bundle Bound to Substrates at Low pH
Method: single particle / : Hansen JM, Lynch EM, Farrell DP, DiMaio F, Quispe J, Kollman JM
PDB-6nb3:
MERS-CoV complex with human neutralizing LCA60 antibody Fab fragment (state 1)
Method: single particle / : Walls AC, Xiong X, Park YJ, Tortorici MA, Snijder S, Quispe J, Cameroni E, Gopal R, Mian D, Lanzavecchia A, Zambon M, Rey FA, Corti D, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)
PDB-6nb4:
MERS-CoV S complex with human neutralizing LCA60 antibody Fab fragment (state 2)
Method: single particle / : Walls AC, Xiong X, Park YJ, Tortorici MA, Snijder S, Quispe J, Cameroni E, Gopal R, Mian D, Lanzavecchia A, Zambon M, Rey FA, Corti D, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)
PDB-6nb6:
SARS-CoV complex with human neutralizing S230 antibody Fab fragment (state 1)
Method: single particle / : Walls AC, Xiong X, Park YJ, Tortorici MA, Snijder S, Quispe J, Cameroni E, Gopal R, Mian D, Lanzavecchia A, Zambon M, Rey FA, Corti D, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)
PDB-6nb7:
SARS-CoV complex with human neutralizing S230 antibody Fab fragment (state 2)
Method: single particle / : Walls AC, Xiong X, Park YJ, Tortorici MA, Snijder S, Quispe J, Cameroni E, Gopal R, Mian D, Lanzavecchia A, Zambon M, Rey FA, Corti D, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)
PDB-4aaq:
ATP-triggered molecular mechanics of the chaperonin GroEL
Method: single particle / : Clare DK, Vasishtan D, Stagg S, Quispe J, Farr GW, Topf M, Horwich AL, Saibil HR
PDB-4aar:
ATP-triggered molecular mechanics of the chaperonin GroEL
Method: single particle / : Clare DK, Vasishtan D, Stagg S, Quispe J, Farr GW, Topf M, Horwich AL, Saibil HR
PDB-4aas:
ATP-triggered molecular mechanics of the chaperonin GroEL
Method: single particle / : Clare DK, Vasishtan D, Stagg S, Quispe J, Farr GW, Topf M, Horwich AL, Saibil HR
PDB-4aau:
ATP-triggered molecular mechanics of the chaperonin GroEL
Method: single particle / : Clare DK, Vasishtan D, Stagg S, Quispe J, Farr GW, Topf M, Horwich AL, Saibil HR
PDB-4ab2:
ATP-triggered molecular mechanics of the chaperonin GroEL
Method: single particle / : Clare DK, Vasishtan D, Stagg S, Quispe J, Farr GW, Topf M, Horwich AL, Saibil HR
PDB-4ab3:
ATP-triggered molecular mechanics of the chaperonin GroEL
Method: single particle / : Clare DK, Vasishtan D, Stagg S, Quispe J, Farr GW, Topf M, Horwich AL, Saibil HR