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Showing 1 - 50 of 487 items for (author: stuart & d)

PDB-9i5c: 
Inner layer protein P1 chains in transcribing particles of bacteriophage phi6
Method: single particle / : Kumpula EP, Ilca SL, Huiskonen JT

PDB-9i7w: 
Extended and wrapped protein P7 dimers of dimers, the P1 layer and the RNA-dependent RNA polymerase P2 in transcribing particles of bacteriophage phi6
Method: single particle / : Kumpula EP, Ilca SL, Huiskonen JT

EMDB-52379: 
Transcribing double-layered particle of bacteriophage phi6 reconstructed with icosahedral symmetry
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52380: 
Transcribing single-layered particle of bacteriophage phi6 reconstructed with icosahedral symmetry
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52381: 
Localized reconstruction of packaging hexamer P4 from polar region of transcribing single-layered particle of bacteriophage phi6
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52382: 
Localized reconstruction of packaging hexamer P4 from equatorial region of transcribing single-layered particle of bacteriophage phi6
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52383: 
Localized reconstruction of packaging hexamer P4 from polar region of transcribing double-layered particle of bacteriophage phi6
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52384: 
Localized reconstruction of packaging hexamer P4 from equatorial region of transcribing double-layered particle of bacteriophage phi6
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52385: 
Localized reconstruction consensus map of minor protein P7 from transcribing particles of bacteriophage phi6
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52386: 
Localized reconstruction of polymerase P2 from transcribing double-layered particle of bacteriophage phi6 in stage A1
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52387: 
Localized reconstruction of polymerase P2 from transcribing double-layered particle of bacteriophage phi6 in stage A2
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52388: 
Localized reconstruction of polymerase P2 from transcribing double-layered particle of bacteriophage phi6 in stage A3
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52389: 
Localized reconstruction of polymerase P2 from transcribing single-layered particle of bacteriophage phi6 in stage B
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52390: 
Localized reconstruction of polymerase P2 from transcribing single-layered particle of bacteriophage phi6 in stage C
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52391: 
Asymmetric reconstruction of transcribing double-layered particle of bacteriophage phi6, disassembly intermediate 1
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52392: 
Asymmetric reconstruction of transcribing double-layered particle of bacteriophage phi6, disassembly intermediate 2
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52393: 
Asymmetric reconstruction of transcribing double-layered particle of bacteriophage phi6, disassembly intermediate 3
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52394: 
Asymmetric reconstruction of transcribing double-layered particle of bacteriophage phi6, disassembly intermediate 4
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52395: 
Transcription-arrested double-layered particle of bacteriophage phi6 reconstructed with icosahedral symmetry
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52396: 
Transcription-arrested single-layered particle of bacteriophage phi6 reconstructed with icosahedral symmetry
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52397: 
Transcription-arrested double-layered particle of bacteriophage phi6 reconstructed with D3 symmetry
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52398: 
Transcription-arrested single-layered particle of bacteriophage phi6 reconstructed with D3 symmetry
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52399: 
Localized reconstruction of asymmetric unit from transcribing double-layered particle of bacteriophage phi6
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52400: 
Localized reconstruction of asymmetric unit from transcribing single-layered particle of bacteriophage phi6
Method: single particle / : Ilca SL, Huiskonen JT

EMDB-52401: 
Localized reconstruction of asymmetric unit from transcribing single-layered particle of bacteriophage phi6 in an over-expanded state
Method: single particle / : Ilca SL, Huiskonen JT

PDB-9htw: 
Minor protein P7 dimer from transcribing particles of bacteriophage phi6
Method: single particle / : Kumpula EP, Huiskonen JT

PDB-9hu4: 
Asymmetric unit from transcribing double-layered particle of bacteriophage phi6
Method: single particle / : Ilca SL, Huiskonen JT

PDB-9hu5: 
Asymmetric unit from transcribing single-layered particle of bacteriophage phi6
Method: single particle / : Ilca SL, Kumpula EP, Huiskonen JT

PDB-9hu6: 
Asymmetric unit from transcribing single-layered particle of bacteriophage phi6 in an over-expanded state
Method: single particle / : Ilca SL, Kumpula EP, Huiskonen JT

EMDB-55441: 
In situ structure of wild-type HIV-1 CA hexamer prior to nuclear import
Method: subtomogram averaging / : Hou Z, Zhang P

EMDB-55443: 
In situ structure of wild-type HIV-1 CA hexamer post nuclear import
Method: subtomogram averaging / : Hou Z, Zhang P

EMDB-55445: 
In situ structure of N74D HIV-1 CA hexamer post nuclear import
Method: subtomogram averaging / : Hou Z, Zhang P

EMDB-55446: 
In situ structure of the H1-bound nucleosome
Method: subtomogram averaging / : Hou Z, Zhang P

EMDB-55447: 
In situ structure of stacking H1-bound nucleosomes
Method: subtomogram averaging / : Hou Z, Zhang P

EMDB-55448: 
In situ structure of the H1-bound nucleosome in stacking nucleosomes
Method: subtomogram averaging / : Hou Z, Zhang P

EMDB-55449: 
In situ structure of the core nucleosome
Method: subtomogram averaging / : Hou Z, Zhang P

EMDB-55450: 
In situ structure of the open-linker H1-bound nucleosome
Method: subtomogram averaging / : Hou Z, Zhang P

EMDB-51530: 
Capsid of full Haloferax tailed virus 1 without turret head protein gp31.
Method: single particle / : Zhang D, Daum B, Isupov MN, McLaren M, Stuart W

EMDB-51866: 
Tail of full Haloferax tailed virus 1
Method: single particle / : Zhang D, Daum B, Isupov MN, McLaren M

EMDB-51883: 
Tail fibre of Haloferax tailed virus 1
Method: single particle / : Zhang D, Daum B, Isupov MN, McLaren M

EMDB-51915: 
The baseplate assembly of Haloferax tailed virus 1.
Method: single particle / : Zhang D, Daum B, Isupov MN, McLaren M

PDB-9gs0: 
Capsid of full Haloferax tailed virus 1 without turret head protein gp31.
Method: single particle / : Zhang D, Daum B, Isupov MN, McLaren M, Stuart W

PDB-9h4p: 
Tail of full Haloferax tailed virus 1
Method: single particle / : Zhang D, Daum B, Isupov MN, McLaren M

PDB-9h5b: 
Tail fibre of Haloferax tailed virus 1
Method: single particle / : Zhang D, Daum B, Isupov MN, McLaren M

PDB-9h7v: 
The baseplate assembly of Haloferax tailed virus 1.
Method: single particle / : Zhang D, Daum B, Isupov MN, McLaren M

EMDB-49092: 
Structure of the Rattus norvegicus ACE2 receptor bound HsItaly2011 RBD complex
Method: single particle / : Park YJ, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

EMDB-49093: 
Eptesicus fuscus ACE2 peptidase domain bound to VsCoV-a7 RBD complex
Method: single particle / : Park YJ, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)

PDB-9n7d: 
Structure of the Rattus norvegicus ACE2 receptor bound HsItaly2011 RBD complex
Method: single particle / : Park YJ, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

PDB-9n7e: 
Eptesicus fuscus ACE2 peptidase domain bound to VsCoV-a7 RBD complex
Method: single particle / : Park YJ, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)

EMDB-50668: 
Cryo-EM structure of MmCAT1 bound with FrMLV-RBD in the apo inward-open state
Method: single particle / : Ye M, Zhou D, Pike ACW, Wang S, Wang D, Bakshi S, Brooke L, Williams E, Elkins J, Stuart DI, Sauer DB
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