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Showing all 29 items for (author: watson & zl)

EMDB-48830: 
Impacts of ribosomal RNA sequence variation on gene expression and phenotype: Cryo-EM structure of the rrsB ribosome (BBB-70S)
Method: single particle / : Welfer GA, Brady RA, Natchiar SK, Watson ZL, Rundlet EJ, Alejo JL, Singh AP, Mishra NK, Altman RB, Blanchard SC

EMDB-48831: 
Impacts of ribosomal RNA sequence variation on gene expression and phenotype: Cryo-EM structure of the rrsH ribosome (HBB-70S)
Method: single particle / : Welfer GA, Brady RA, Natchiar SK, Watson ZL, Rundlet EJ, Alejo JL, Singh AP, Mishra NK, Altman RB, Blanchard SC

EMDB-28254: 
Composite 70S ribosome structure for "Atomistic simulations of the E. coli ribosome provide selection criteria for translationally active substrates
Method: single particle / : Watson ZL, Cate JHD

EMDB-28255: 
70S map for: "Atomistic simulations of the E. coli ribosome provide selection criteria for translationally active substrates"
Method: single particle / : Watson ZL, Cate JHD

EMDB-28256: 
30S-focused map for: "Atomistic simulations of the E. coli ribosome provide selection criteria for translationally active substrates"
Method: single particle / : Watson ZL, Cate JHD

EMDB-28257: 
50S-focused map for: "Atomistic simulations of the E. coli ribosome provide selection criteria for translationally active substrates"
Method: single particle / : Watson ZL, Cate JHD

EMDB-29757: 
mRNA decoding in human is kinetically and structurally distinct from bacteria (IC state)
Method: single particle / : Holm M, Natchiar KS, Rundlet EJ, Myasnikov AG, Altman RB, Blanchard SC

EMDB-29758: 
mRNA decoding in human is kinetically and structurally distinct from bacteria (GA state)
Method: single particle / : Holm M, Natchiar KS, Rundlet EJ, Myasnikov AG, Altman RB, Blanchard SC

EMDB-29759: 
mRNA decoding in human is kinetically and structurally distinct from bacteria (CR state)
Method: single particle / : Holm M, Natchiar KS, Rundlet EJ, Myasnikov AG, Altman RB, Blanchard SC

EMDB-29760: 
mRNA decoding in human is kinetically and structurally distinct from bacteria (AC state)
Method: single particle / : Holm M, Natchiar KS, Rundlet EJ, Myasnikov AG, Altman RB, Blanchard SC

EMDB-29766: 
mRNA decoding in human is kinetically and structurally distinct from bacteria (60S Focus refined map)
Method: single particle / : Holm M, Natchiar KS, Rundlet EJ, Myasnikov AG, Altman RB, Blanchard SC

EMDB-29768: 
mRNA decoding in human is kinetically and structurally distinct from bacteria (40S Focus refined map)
Method: single particle / : Holm M, Natchiar KS, Rundlet EJ, Myasnikov AG, Altman RB, Blanchard SC

EMDB-29771: 
mRNA decoding in human is kinetically and structurally distinct from bacteria (GA state 2)
Method: single particle / : Holm M, Natchiar KS, Rundlet EJ, Myasnikov AG, Altman RB, Blanchard SC

EMDB-29782: 
mRNA decoding in human is kinetically and structurally distinct from bacteria (80S consensus refined structure)
Method: single particle / : Holm M, Natchiar KS, Rundlet EJ, Myasnikov AG, Altman RB, Blanchard SC

EMDB-40205: 
mRNA decoding in human is kinetically and structurally distinct from bacteria (Consensus LSU focused refined structure)
Method: single particle / : Holm M, Natchiar KS, Rundlet EJ, Myasnikov AG, Watson ZL, Altman RB, Blanchard SC

EMDB-28165: 
E. coli 70S ribosome with A-loop mutations U2554C and U2555C (Composite Map)
Method: single particle / : Nissley AJ, Penev PI, Watson ZL, Banfield JF, Cate JHD

EMDB-28218: 
E. coli 70S ribosome with A-loop mutations U2554C and U2555C (50S Focus Refinement)
Method: single particle / : Nissley AJ, Penev PI, Watson ZL, Banfield JF, Cate JHD

EMDB-28229: 
E. coli 70S ribosome with A-loop mutations U2554C and U2555C (30S Focus Refinement)
Method: single particle / : Nissley AJ, Penev PI, Watson ZL, Banfield JF, Cate JHD

EMDB-28230: 
E. coli 70S ribosome with A-loop mutations U2554C and U2555C: A-site tRNA class 2
Method: single particle / : Nissley AJ, Penev PI, Watson ZL, Banfield JF, Cate JHD

EMDB-22586: 
Structure of the Bacterial Ribosome at 2 Angstrom Resolution (composite structure)
Method: single particle / : Watson ZL, Ward FR

EMDB-22607: 
Structure of the Bacterial Ribosome at 2 Angstrom Resolution (70S ribosome)
Method: single particle / : Watson ZL, Ward FR, Meheust R, Ad O, Schepartz A, Banfield JF, Cate JHD

EMDB-22614: 
Structure of the Bacterial Ribosome at 2 Angstrom Resolution (50S focused refinement)
Method: single particle / : Watson ZL, Ward FR, Meheust R, Ad O, Schepartz A, Banfield JF, Cate JHD

EMDB-22632: 
Structure of the Bacterial Ribosome at 2 Angstrom Resolution (30S focused refinement)
Method: single particle / : Watson ZL, Ward FR, Meheust R, Ad O, Schepartz A, Banfield JF, Cate JHD

EMDB-22635: 
Structure of the Bacterial Ribosome at 2 Angstrom Resolution (30S head domain focused refinement)
Method: single particle / : Watson ZL, Ward FR, Meheust R, Ad O, Schepartz A, Banfield JF, Cate JHD

EMDB-22636: 
Structure of the Bacterial Ribosome at 2 Angstrom Resolution (30S platform domain focused refinement)
Method: single particle / : Watson ZL, Ward FR, Meheust R, Ad O, Schepartz A, Banfield JF, Cate JHD

EMDB-22637: 
Structure of the Bacterial Ribosome at 2 Angstrom Resolution (50S central protuberance focused refinement)
Method: single particle / : Watson ZL, Ward FR, Meheust R, Ad O, Schepartz A, Banfield JF, Cate JHD

EMDB-20853: 
P7A7 ribosome large subunit
Method: single particle / : Watson ZL, Ward FR, Cate JHD

EMDB-20854: 
E. coli large ribosomal subunit
Method: single particle / : Watson ZL, Ward FR, Cate JHD

EMDB-20638: 
E. coli 50S with phazolicin (PHZ) bound in exit tunnel
Method: single particle / : Watson ZL, Cate JHD
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