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Showing all 40 items for (author: leiman, & p.g.)
PDB-8fqc:
Structure of baseplate with receptor binding complex of Agrobacterium phage Milano
Method: single particle / : Sonani RR, Leiman PG, Wang F, Kreutzberger MAB, Sebastian A, Esteves NC, Kelly RJ, Scharf B, Egelman EH
PDB-8fop:
Structure of Agrobacterium tumefaciens bacteriophage Milano curved tail
Method: single particle / : Sonani RR, Leiman PG, Wang F, Kreutzberger MAB, Sebastian A, Esteves NC, Kelly RJ, Scharf B, Egelman EH
PDB-8fou:
Structure of Agrobacterium tumefaciens bacteriophage Milano contracted tail-tube
Method: helical / : Sonani RR, Leiman PG, Wang F, Kreutzberger MAB, Sebastian A, Esteves NC, Kelly RJ, Scharf B, Egelman EH
PDB-8foy:
Structure of Agrobacterium tumefaciens bacteriophage Milano contracted tail-sheath
Method: helical / : Sonani RR, Leiman PG, Wang F, Kreutzberger MAB, Sebastian A, Esteves NC, Kelly RJ, Scharf B, Egelman EH
PDB-8fwb:
Portal assembly of Agrobacterium phage Milano
Method: single particle / : Sonani RR, Wang F, Esteves NC, Kelly RJ, Sebastian A, Kreutzberger MAB, Leiman PG, Scharf BE, Egelman EH
PDB-8fwc:
Collar sheath structure of Agrobacterium phage Milano
Method: single particle / : Sonani RR, Wang F, Esteves NC, Kelly RJ, Sebastian A, Kreutzberger MAB, Leiman PG, Scharf BE, Egelman EH
PDB-8fwe:
Neck structure of Agrobacterium phage Milano, C3 symmetry
Method: single particle / : Sonani RR, Wang F, Esteves NC, Kelly RJ, Sebastian A, Kreutzberger MAB, Leiman PG, Scharf BE, Egelman EH
PDB-8fwg:
Structure of neck and portal vertex of Agrobacterium phage Milano, C5 symmetry
Method: single particle / : Sonani RR, Wang F, Esteves NC, Kelly RJ, Sebastian A, Kreutzberger MAB, Leiman PG, Scharf BE, Egelman EH
PDB-8fwm:
Structure of tail-neck junction of Agrobacterium phage Milano
Method: single particle / : Sonani RR, Wang F, Esteves NC, Kelly RJ, Sebastian A, Kreutzberger MAB, Leiman PG, Scharf BE, Egelman EH
PDB-8fxp:
Structure of capsid of Agrobacterium phage Milano
Method: single particle / : Sonani RR, Wang F, Esteves NC, Kelly RJ, Sebastian A, Kreutzberger MAB, Leiman PG, Scharf BE, Egelman EH
PDB-8fxr:
Structure of neck with portal vertex of capsid of Agrobacterium phage Milano
Method: single particle / : Sonani RR, Wang F, Esteves NC, Kelly RJ, Sebastian A, Kreutzberger MAB, Leiman PG, Scharf BE, Egelman EH
PDB-7um0:
Structure of the phage AR9 non-virion RNA polymerase holoenzyme in complex with two DNA oligonucleotides containing the AR9 P077 promoter as determined by cryo-EM
Method: single particle / : Leiman PG, Fraser A, Sokolova ML
PDB-7um1:
Structure of bacteriophage AR9 non-virion RNAP polymerase holoenzyme determined by cryo-EM
Method: single particle / : Leiman PG, Fraser A, Sokolova ML
PDB-6pyt:
CryoEM Structure of Pyocin R2 - precontracted - trunk
Method: helical / : Ge P, Avaylon J, Scholl D, Shneider MM, Browning C, Buth SA, Plattner M, Ding K, Leiman PG, Miller JF, Zhou ZH
PDB-6u5b:
CryoEM Structure of Pyocin R2 - precontracted - baseplate
Method: single particle / : Ge P, Avaylon J, Scholl D, Shneider MM, Browning C, Buth SA, Plattner M, Ding K, Leiman PG, Miller JF, Zhou ZH
PDB-6u5f:
CryoEM Structure of Pyocin R2 - precontracted - collar
Method: single particle / : Ge P, Avaylon J, Scholl D, Shneider MM, Browning C, Buth SA, Plattner M, Ding K, Leiman PG, Miller JF, Zhou ZH
PDB-6u5h:
CryoEM Structure of Pyocin R2 - precontracted - hub
Method: single particle / : Ge P, Avaylon J, Scholl D, Shneider MM, Browning C, Buth SA, Plattner M, Ding K, Leiman PG, Miller JF, Zhou ZH
PDB-6u5j:
CryoEM Structure of Pyocin R2 - postcontracted - collar
Method: single particle / : Ge P, Avaylon J, Scholl D, Shneider MM, Browning C, Buth SA, Plattner M, Ding K, Leiman PG, Miller JF, Zhou ZH
PDB-6u5k:
CryoEM Structure of Pyocin R2 - postcontracted - baseplate
Method: single particle / : Ge P, Avaylon J, Scholl D, Shneider MM, Browning C, Buth SA, Plattner M, Ding K, Leiman PG, Miller JF, Zhou ZH
PDB-5w5e:
Re-refinement of the pyocin tube structure
Method: helical / : Wang F, Zheng W, Taylor NM, Guerrero-Ferreira RC, Leiman PG, Egelman EH
PDB-5w5f:
Cryo-EM structure of the T4 tail tube
Method: helical / : Zheng W, Wang F, Taylor NM, Guerrero-Ferreira RC, Leiman PG, Egelman EH
PDB-5iv5:
Cryo-electron microscopy structure of the hexagonal pre-attachment T4 baseplate-tail tube complex
Method: single particle / : Taylor NMI, Guerrero-Ferreira RC, Goldie KN, Stahlberg H, Leiman PG
PDB-5iv7:
Cryo-electron microscopy structure of the star-shaped, hubless post-attachment T4 baseplate
Method: single particle / : Taylor NMI, Guerrero-Ferreira RC, Goldie KN, Stahlberg H, Leiman PG
PDB-3j9q:
Atomic structures of a bactericidal contractile nanotube in its pre- and post-contraction states
Method: helical / : Ge P, Scholl D, Leiman PG, Yu X, Miller JF, Zhou ZH
PDB-3j9r:
Atomic structures of a bactericidal contractile nanotube in its pre- and post-contraction states
Method: helical / : Ge P, Scholl D, Leiman PG, Yu X, Miller JF, Zhou ZH
PDB-3h3w:
Fitting of the gp6 crystal structure into 3D cryo-EM reconstruction of bacteriophage T4 dome-shaped baseplate
Method: single particle / : Aksyuk AA, Leiman PG, Shneider MM, Mesyanzhinov VV, Rossmann MG
PDB-3h3y:
Fitting of the gp6 crystal structure into 3D cryo-EM reconstruction of bacteriophage T4 star-shaped baseplate
Method: single particle / : Aksyuk AA, Leiman PG, Shneider MM, Mesyanzhinov VV, Rossmann MG
PDB-3foh:
Fitting of gp18M crystal structure into 3D cryo-EM reconstruction of bacteriophage T4 extended tail
Method: single particle / : Aksyuk AA, Leiman PG, Kurochkina LP, Shneider MM, Kostyuchenko VA, Mesyanzhinov VV, Rossmann MG
PDB-3foi:
Fitting of gp18M crystal structure into 3D cryo-EM reconstruction of bacteriophage T4 contracted tail
Method: single particle / : Aksyuk AA, Leiman PG, Kurochkina LP, Shneider MM, Kostyuchenko VA, Mesyanzhinov VV, Rossmann MG
PDB-2fl8:
Fitting of the gp10 trimer structure into the cryoEM map of the bacteriophage T4 baseplate in the hexagonal conformation.
Method: single particle / : Leiman PG, Shneider MM, Mesyanzhinov VV, Rossmann MG
PDB-2fl9:
Evolution of bacteriophage tails: Structure of T4 gene product 10
Method: single particle / : Leiman PG, Shneider MM, Mesyanzhinov VV, Rossmann MG
PDB-2bsg:
The modeled structure of fibritin (gpwac) of bacteriophage T4 based on cryo-EM reconstruction of the extended tail of bacteriophage T4
Method: helical / : Kostyuchenko VA, Chipman PR, Leiman PG, Arisaka F, Mesyanzhinov VV, Rossmann MG
PDB-1tja:
Fitting of gp8, gp9, and gp11 into the cryo-EM reconstruction of the bacteriophage T4 contracted tail
Method: single particle / : Leiman PG, Chipman PR, Kostyuchenko VA, Mesyanzhinov VV, Rossmann MG
PDB-1pdf:
Fitting of gp11 crystal structure into 3D cryo-EM reconstruction of bacteriophage T4 baseplate-tail tube complex
Method: single particle / : Kostyuchenko VA, Leiman PG, Chipman PR, Kanamaru S, van Raaij MJ, Arisaka F, Mesyanzhinov VV, Rossmann MG
PDB-1pdi:
Fitting of the C-terminal part of the short tail fibers into the cryo-EM reconstruction of T4 baseplate
Method: single particle / : Kostyuchenko VA, Leiman PG, Chipman PR, Kanamaru S, van Raaij MJ, Arisaka F, Mesyanzhinov VV, Rossmann MG
PDB-1pdj:
Fitting of gp27 into cryoEM reconstruction of bacteriophage T4 baseplate
Method: single particle / : Kostyuchenko VA, Leiman PG, Chipman PR, Kanamaru S, van Raaij MJ, Arisaka F, Mesyanzhinov VV, Rossmann MG
PDB-1pdl:
Fitting of gp5 in the cryoEM reconstruction of the bacteriophage T4 baseplate
Method: single particle / : Kostyuchenko VA, Leiman PG, Chipman PR, Kanamaru S, van Raaij MJ, Arisaka F, Mesyanzhinov VV, Rossmann MG
PDB-1pdm:
Fitting of gp8 structure into the cryoEM reconstruction of the bacteriophage T4 baseplate
Method: single particle / : Kostyuchenko VA, Leiman PG, Chipman PR, Kanamaru S, van Raaij MJ, Arisaka F, Mesyanzhinov VV, Rossmann MG
PDB-1pdp:
Fitting of gp9 structure into the bacteriophage T4 baseplate cryoEM reconstruction
Method: single particle / : Kostyuchenko VA, Leiman PG, Chipman PR, Kanamaru S, van Raaij MJ, Arisaka F, Mesyanzhinov VV, Rossmann MG
PDB-1foq:
PENTAMERIC MODEL OF THE BACTERIOPHAGE PHI29 PROHEAD RNA
Method: single particle / : Simpson AA, Tao Y, Leiman PG, Badasso MO, He Y, Jardine PJ, Olson NH, Morais MC, Grimes S, Anderson DL, Baker TS, Rossmann MG