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Showing 1 - 50 of 356 items for (author: jung & t)
EMDB-17334:
Cryo EM map of the vaccinia RNA polymerase intermediate pre-initiation open promoter complex (CASP target)
Method: single particle / : Grimm C, Jungwirth S, Fischer U
EMDB-17335:
Cryo EM map of the vaccinia RNA polymerase intermediate pre-initiation open promoter complex, module 2 of capping enzyme mobile
Method: single particle / : Grimm C, Jungwirth S, Fischer U
EMDB-17336:
Cryo EM map of the vaccinia RNA polymerase intermediate pre-initiation open promoter complex shallow conformation
Method: single particle / : Grimm C, Jungwirth S, Fischer U
PDB-8p0j:
Cryo EM map and model of the vaccinia RNA polymerase intermediate pre-initiation open promoter complex
Method: single particle / : Grimm C, Jungwirth S, Fischer U
PDB-8p0k:
Cryo EM map and model of the vaccinia RNA polymerase intermediate pre-initiation open promoter complex, module 2 of capping enzyme mobile
Method: single particle / : Grimm C, Jungwirth S, Fischer U
PDB-8p0n:
Cryo EM map and model of the vaccinia RNA polymerase intermediate pre-initiation open promoter complex shallow conformation
Method: single particle / : Grimm C, Jungwirth S, Fischer U
EMDB-19798:
human PLD3 homodimer structure
Method: single particle / : Lammens K
EMDB-36800:
Potassium transporter KtrAB from Bacillus subtilis in ADP-bound state
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-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-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
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
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
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-8k1s:
Potassium transporter KtrAB from Bacillus subtilis in ADP-bound state
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
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
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
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-17630:
ABCB1 L335C mutant (mABCB1) in the inward facing state bound to AAC
Method: single particle / : Parey K, Januliene D, Gewering T, Moeller A, Vecchis D, Striednig B, Hilbi H, Schaefer LV, Kuprov I, Bordignon E, Seeger MA
PDB-8pee:
ABCB1 L335C mutant (mABCB1) in the inward facing state bound to AAC
Method: single particle / : Parey K, Januliene D, Gewering T, Moeller A
EMDB-15489:
180 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
EMDB-15490:
200 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
EMDB-15491:
215 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
EMDB-15492:
235 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
EMDB-15493:
250 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
EMDB-15494:
270 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
EMDB-15495:
280 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
EMDB-15496:
305 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
EMDB-15497:
290 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
EMDB-15498:
320 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
EMDB-15499:
365 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
PDB-8akq:
180 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
PDB-8akr:
200 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
PDB-8aks:
215 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
PDB-8akt:
235 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
PDB-8aku:
250 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
PDB-8akv:
270 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
PDB-8akw:
280 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
PDB-8akx:
305 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
PDB-8aky:
290 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
PDB-8akz:
320 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
PDB-8al0:
365 A SynPspA rod after incubation with ATP
Method: helical / : Junglas B, Hudina E, Schoennenbeck P, Ritter I, Santiago-Schuebel B, Huesgen P, Sachse C
EMDB-18698:
Structural insights into the activation mechanism of antimicrobial GBP1: Polymeric assembly of GBP1
Method: single particle / : Weismehl M, Chu X, Kutsch M, Lauterjung P, Herrmann C, Kudryashev M, Daumke O
EMDB-18806:
Structural insights into the activation mechanism of antimicrobial GBP1: Membrane-bound GBP1 oligomer
Method: subtomogram averaging / : Weismehl M, Chu X, Kutsch M, Lauterjung P, Herrmann C, Kudryashev M, Daumke O
PDB-8r1a:
Model of the membrane-bound GBP1 oligomer
Method: subtomogram averaging / : Weismehl M, Chu X, Kutsch M, Lauterjung P, Herrmann C, Kudryashev M, Daumke O
EMDB-41280:
Non-targeted transpososome from ShCAST
Method: single particle / : Park J, Kellogg EH
EMDB-35904:
AtSLAC1 8D mutant in closed state
Method: single particle / : Lee Y, Lee S
EMDB-35920:
AtSLAC1 in open state
Method: single particle / : Lee Y, Lee S
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