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Showing 1 - 50 of 58 items for (author: krieger & j)

EMDB-16379:
Active state homomeric GluA1 AMPA receptor in complex with TARP gamma 3
Method: single particle / : Zhang D, Ivica J, Krieger JM, Ho H, Yamashita K, Cais O, Greger I

EMDB-16380:
Resting state homomeric GluA1 AMPA receptor in complex with TARP gamma 3
Method: single particle / : Zhang D, Ivica J, Krieger JM, Ho H, Yamashita K, Cais O, Greger I

EMDB-16381:
Resting state homomeric GluA2 F231A mutant AMPA receptor in complex with TARP gamma-2
Method: single particle / : Zhang D, Ivica J, Krieger JM, Ho H, Yamashita K, Cais O, Greger I

EMDB-16382:
Transmembrane domain of resting state homomeric GluA2 F231A mutant AMPA receptor in complex with TARP gamma 2
Method: single particle / : Zhang D, Ivica J, Krieger JM, Ho H, Yamashita K, Cais O, Greger I

EMDB-16390:
Transmembrane domain of active state homomeric GluA1 AMPA receptor in tandem with TARP gamma 3
Method: single particle / : Zhang D, Ivica J, Krieger JM, Ho H, Yamashita K, Cais O, Greger I

EMDB-16391:
Transmembrane domain of resting state homomeric GluA1 AMPA receptor in complex with TARP gamma 3
Method: single particle / : Zhang D, Ivica J, Krieger JM, Ho H, Yamashita K, Cais O, Greger I

EMDB-17392:
Homomeric GluA2 flip R/G-unedited Q/R-edited F231A mutant in tandem with TARP gamma-2, desensitized conformation 3
Method: single particle / : Zhang D, Krieger JM, Yamashita K, Greger I, Cais O

EMDB-17393:
Homomeric GluA2 flip R/G-unedited Q/R-edited F231A mutant in tandem with TARP gamma-2, desensitized conformation 2
Method: single particle / : Zhang D, Krieger JM, Yamashita K, Greger I, Cais O

EMDB-17394:
Homomeric GluA1 in tandem with TARP gamma-3, desensitized conformation 1
Method: single particle / : Zhang D, Krieger J, Yamashita K, Greger I

EMDB-17395:
Homomeric GluA1 in tandem with TARP gamma-3, desensitized conformation 2
Method: single particle / : Zhang D, Krieger JM, Greger IH

EMDB-17396:
Homomeric GluA1 in tandem with TARP gamma-3, desensitized conformation 3
Method: single particle / : Zhang D, Krieger JM, Yamashita K, Greger IH

EMDB-17397:
Homomeric GluA1 in tandem with TARP gamma-3, desensitized conformation 4
Method: single particle / : Zhang D, Krieger JM, Yamashita K, Greger I

EMDB-17398:
Homomeric GluA2 flip R/G-edited Q/R-edited F231A mutant in tandem with TARP gamma-2, desensitized conformation 1
Method: single particle / : Krieger JM, Zhang D, Yamashita K, Greger IH

EMDB-17399:
Homomeric GluA2 flip R/G-edited Q/R-edited F231A mutant in tandem with TARP gamma-2, desensitized conformation 3
Method: single particle / : Krieger JM, Zhang D, Yamashita K, Greger IH

EMDB-17400:
Homomeric GluA2 flip R/G-edited Q/R-edited F231A mutant in tandem with TARP gamma-2, desensitized conformation 2
Method: single particle / : Krieger JM, Zhang D, Yamashita K, Greger IH

EMDB-17692:
Homomeric GluA2 flip R/G-unedited Q/R-edited F231A mutant in tandem with TARP gamma-2, desensitized conformation 1
Method: single particle / : Zhang D, Krieger JM, Yamashita K, Greger IH

PDB-8c1p:
Active state homomeric GluA1 AMPA receptor in complex with TARP gamma 3
Method: single particle / : Zhang D, Ivica J, Krieger JM, Ho H, Yamashita K, Cais O, Greger I

PDB-8c1q:
Resting state homomeric GluA1 AMPA receptor in complex with TARP gamma 3
Method: single particle / : Zhang D, Ivica J, Krieger JM, Ho H, Yamashita K, Cais O, Greger I

PDB-8c1r:
Resting state homomeric GluA2 F231A mutant AMPA receptor in complex with TARP gamma-2
Method: single particle / : Zhang D, Ivica J, Krieger JM, Ho H, Yamashita K, Cais O, Greger I

PDB-8c1s:
Transmembrane domain of resting state homomeric GluA2 F231A mutant AMPA receptor in complex with TARP gamma 2
Method: single particle / : Zhang D, Ivica J, Krieger JM, Ho H, Yamashita K, Cais O, Greger I

PDB-8c2h:
Transmembrane domain of active state homomeric GluA1 AMPA receptor in tandem with TARP gamma 3
Method: single particle / : Zhang D, Ivica J, Krieger JM, Ho H, Yamashita K, Cais O, Greger I

PDB-8c2i:
Transmembrane domain of resting state homomeric GluA1 AMPA receptor in complex with TARP gamma 3
Method: single particle / : Zhang D, Ivica J, Krieger JM, Ho H, Yamashita K, Cais O, Greger I

PDB-8p3q:
Homomeric GluA2 flip R/G-unedited Q/R-edited F231A mutant in tandem with TARP gamma-2, desensitized conformation 3
Method: single particle / : Zhang D, Krieger JM, Yamashita K, Greger I

PDB-8p3s:
Homomeric GluA2 flip R/G-unedited Q/R-edited F231A mutant in tandem with TARP gamma-2, desensitized conformation 2
Method: single particle / : Zhang D, Krieger JM, Yamashita K, Greger I

PDB-8p3t:
Homomeric GluA1 in tandem with TARP gamma-3, desensitized conformation 1
Method: single particle / : Zhang D, Krieger J, Yamashita K, Greger I

PDB-8p3u:
Homomeric GluA1 in tandem with TARP gamma-3, desensitized conformation 2
Method: single particle / : Zhang D, Krieger JM, Greger IH

PDB-8p3v:
Homomeric GluA1 in tandem with TARP gamma-3, desensitized conformation 3
Method: single particle / : Zhang D, Krieger JM, Yamashita K, Greger IH

PDB-8p3w:
Homomeric GluA1 in tandem with TARP gamma-3, desensitized conformation 4
Method: single particle / : Zhang D, Krieger JM, Yamashita K, Greger I

PDB-8p3x:
Homomeric GluA2 flip R/G-edited Q/R-edited F231A mutant in tandem with TARP gamma-2, desensitized conformation 1
Method: single particle / : Krieger JM, Zhang D, Yamashita K, Greger IH

PDB-8p3y:
Homomeric GluA2 flip R/G-edited Q/R-edited F231A mutant in tandem with TARP gamma-2, desensitized conformation 3
Method: single particle / : Krieger JM, Zhang D, Yamashita K, Greger IH

PDB-8p3z:
Homomeric GluA2 flip R/G-edited Q/R-edited F231A mutant in tandem with TARP gamma-2, desensitized conformation 2
Method: single particle / : Krieger JM, Zhang D, Yamashita K, Greger IH

PDB-8piv:
Homomeric GluA2 flip R/G-unedited Q/R-edited F231A mutant in tandem with TARP gamma-2, desensitized conformation 1
Method: single particle / : Zhang D, Krieger JM, Yamashita K, Greger IH

EMDB-13969:
Active state of GluA1/2 in complex with TARP gamma 8, L-glutamate and CTZ
Method: single particle / : Herguedas B, Kohegyi B, Zhang D, Greger IH

EMDB-13970:
Active state of GluA1/A2 AMPA receptor in complex with TARP gamma-8 (TMD)
Method: single particle / : Herguedas B, Kohegyi B, Dohrke JN, Watson JF, Zhang D, Ho H, Shaikh SH, Lape R, Krieger JM, Greger IH

EMDB-13971:
Active state of GluA1/A2 AMPA receptor in complex with TARP gamma-8 (LBD)
Method: single particle / : Herguedas B, Kohegyi B, Dohrke JN, Watson JF, Zhang D, Ho H, Shaikh SH, Lape R, Krieger JM, Greger IH

EMDB-13972:
Desensitized state of GluA1/2 AMPA receptor in complex with TARP-gamma 8 (TMD-LBD)
Method: single particle / : Herguedas B, Kohegyi B, Dohrke JN, Watson JF, Zhang D, Ho H, Shaikh S, Lape R, Krieger JM, Greger IH

EMDB-13973:
Desensitized state of GluA1/2 AMPA receptor in complex with TARP-gamma 8 (TMD)
Method: single particle / : Herguedas B, Kohegyi B, Dohrke JN, Watson JF, Zhang D, Ho H, Shaikh SH, Lape R, Krieger JM, Greger IH

EMDB-13974:
Desensitized state of GluA1/2 AMPA receptor in complex with TARP-gamma 8 (LBD)
Method: single particle / : Herguedas B, Kohegyi B, Dohrke JN, Watson JF, Zhang D, Ho H, Shaikh SH, Lape R, Krieger JM, Greger IH

PDB-7qhb:
Active state of GluA1/2 in complex with TARP gamma 8, L-glutamate and CTZ
Method: single particle / : Herguedas B, Kohegyi B, Zhang D, Greger IH

PDB-7qhh:
Desensitized state of GluA1/2 AMPA receptor in complex with TARP-gamma 8 (TMD-LBD)
Method: single particle / : Herguedas B, Kohegyi B, Dohrke JN, Watson JF, Zhang D, Ho H, Shaikh S, Lape R, Krieger JM, Greger IH

EMDB-12335:
Structure of PSII-M
Method: single particle / : Zabret J, Bohn S, Schuller SK, Arnolds O, Chan A, Tajkhorshid E, Stoll R, Engel BD, Rudack T, Schuller JM, Nowaczyk MM

EMDB-12336:
Structure of PSII-I (PSII with Psb27, Psb28, and Psb34)
Method: single particle / : Zabret J, Bohn S, Schuller SK, Arnolds O, Chan A, Tajkhorshid E, Stoll R, Engel BD, Rudack T, Schuller JM, Nowaczyk MM

EMDB-12337:
Structure of PSII-I prime (PSII with Psb28, and Psb34)
Method: single particle / : Zabret J, Bohn S, Schuller SK, Arnolds O, Chan A, Tajkhorshid E, Stoll R, Engel BD, Rudack T, Schuller JM, Nowaczyk MM

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