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Showing 1 - 50 of 94 items for (author: schnell & h)

EMDB-51786: 
Cryo-EM Structure of human OAS2 Dimer
Method: single particle / : Merold VR, Lammens K, de Oliveira Mann CC

PDB-9h1z: 
Cryo-EM Structure of human OAS2 Dimer
Method: single particle / : Merold VR, Lammens K, de Oliveira Mann CC

EMDB-19842: 
Vitellogenin from the honey bee hemolymph
Method: single particle / : Montserrat-Canals M, Schnelle K, Moeller A, Cunha E, Luecke H

EMDB-19843: 
Cleavage product of vitellogenin from the honey bee hemolymph
Method: single particle / : Montserrat-Canals M, Schnelle K, Moeller A, Cunha E, Luecke H

PDB-9enr: 
Vitellogenin from the honey bee hemolymph
Method: single particle / : Montserrat-Canals M, Schnelle K, Moeller A, Cunha E, Luecke H

PDB-9ens: 
Cleavage product of vitellogenin from the honey bee hemolymph
Method: single particle / : Montserrat-Canals M, Schnelle K, Moeller A, Cunha E, Luecke H

EMDB-50774: 
MsbA in DDM inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50775: 
MsbA in LMNG inward-facing narrow
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50776: 
MsbA in LMNG inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50777: 
MsbA in GDN inward-facing narrow
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50778: 
MsbA in GDN inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50779: 
MsbA in Triton inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50780: 
MsbA in Triton inward-facing wide (+) open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50782: 
MsbA in UDM inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50783: 
MsbA in UDM inward-facing wide (+) open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50784: 
MsbA in MSP1D1 Nanodisc inward-facing narrow open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shearer D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50785: 
MsbA in MSP1D1 (EPL:PC) Nanodisc inward-facing narrow open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50786: 
MsbA in MSP1E3D1 Nanodisc inward-facing narrow open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50787: 
MsbA in MSP2N2 Nanodisc inward-facing narrow open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50788: 
MsbA in peptidisc inward-facing narrow (-) open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50789: 
MsbA in peptidisc inward-facing narrow open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50790: 
MsbA in Amphipol A8-35 inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50791: 
MsbA in Amphipol A8-35 inward-facing wide (+) open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50792: 
MsbA in Amphipol 18 inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50793: 
MsbA in Amphipol 18 inward-facing wide (+) open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-50794: 
MsbA in MSP2N2 Nanodisc inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fuq: 
MsbA in DDM inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fur: 
MsbA in LMNG inward-facing narrow
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fus: 
MsbA in LMNG inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fut: 
MsbA in GDN inward-facing narrow
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fuu: 
MsbA in GDN inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fuv: 
MsbA in Triton inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fuw: 
MsbA in Triton inward-facing wide (+) open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fuy: 
MsbA in UDM inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fuz: 
MsbA in UDM inward-facing wide (+) open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fv0: 
MsbA in MSP1D1 Nanodisc inward-facing narrow open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shearer D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fv1: 
MsbA in MSP1D1 (EPL:PC) Nanodisc inward-facing narrow open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fv2: 
MsbA in MSP1E3D1 Nanodisc inward-facing narrow open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fv3: 
MsbA in MSP2N2 Nanodisc inward-facing narrow open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fv4: 
MsbA in peptidisc inward-facing narrow (-) open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fv5: 
MsbA in peptidisc inward-facing narrow open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fv6: 
MsbA in Amphipol A8-35 inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fv7: 
MsbA in Amphipol A8-35 inward-facing wide (+) open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fv8: 
MsbA in Amphipol 18 inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fv9: 
MsbA in Amphipol 18 inward-facing wide (+) open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

PDB-9fva: 
MsbA in MSP2N2 Nanodisc inward-facing wide open
Method: single particle / : Hoffmann L, Baier A, Jorde L, Kamel M, Schaefer J, Schnelle K, Scholz A, Shvarev D, Wong J, Parey K, Januliene D, Moeller A

EMDB-43813: 
VIR-7229 Fab fragment bound the SARS-CoV-2 BA.2.86 spike trimer (local refinement of the BA 2.86 RBD/VIR-7229 VHVL)
Method: single particle / : Park YJ, Tortorici MA, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

EMDB-43842: 
VIR-7229 Fab fragment bound the BA.2.86 spike trimer (global refinement)
Method: single particle / : Tortorici MA, Park YJ, Veelser D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)

PDB-9asd: 
VIR-7229 Fab fragment bound the SARS-CoV-2 BA.2.86 spike trimer (local refinement of the BA 2.86 RBD/VIR-7229 VHVL)
Method: single particle / : Park YJ, Tortorici MA, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

PDB-9au2: 
VIR-7229 Fab fragment bound the BA.2.86 spike trimer (global refinement)
Method: single particle / : Tortorici MA, Park YJ, Veelser D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)
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