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Showing 1 - 50 of 78 items for (author: altman & r)

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

PDB-9n2b: 
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

PDB-9n2c: 
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-18003: 
ABCG2 in complex with AZ99 and 5D3 Fab
Method: single particle / : Yu Q, Kowal J, Tajkhorshid E, Altmann KH, Locher KP

EMDB-18016: 
ABCG2 in complex with ko143 and 5D3 Fab
Method: single particle / : Yu Q, Kowal J, Tajkhorshid E, Altmann KH, Locher KP

EMDB-18210: 
ABCG2 in complex with MZ29 and 5D3 Fab
Method: single particle / : Kowal J, Yu Q, Ni D, Stahlberg H, Tajkhorshid E, Altmann KH, Locher KP, Manolaridis I, Jackson SM, Taylor NMI, Zechner M

EMDB-18330: 
ABCG2 in complex with MZ82 and 5D3 Fab
Method: single particle / : Yu Q, Kowal J, Ni D, Stahlberg H, Tajkhorshid E, Altmann KH, Locher KP

PDB-8pxo: 
ABCG2 in complex with AZ99 and 5D3 Fab
Method: single particle / : Yu Q, Kowal J, Tajkhorshid E, Altmann KH, Locher KP

PDB-8py4: 
ABCG2 in complex with ko143 and 5D3 Fab
Method: single particle / : Yu Q, Kowal J, Tajkhorshid E, Altmann KH, Locher KP

PDB-8q7b: 
ABCG2 in complex with MZ29 and 5D3 Fab
Method: single particle / : Kowal J, Yu Q, Ni D, Stahlberg H, Tajkhorshid E, Altmann KH, Locher KP, Manolaridis I, Jackson SM, Taylor NMI, Zechner M

PDB-8qcm: 
ABCG2 in complex with MZ82 and 5D3 Fab
Method: single particle / : Yu Q, Kowal J, Ni D, Stahlberg H, Tajkhorshid E, Altmann KH, Locher KP

EMDB-41498: 
HIV-1 BG505 Env SOSIP in complex with bovine Fab Bess4 and non-human primate Fab RM20A3
Method: single particle / : Ozorowski G, Lee WH, Ward AB

PDB-8tq1: 
HIV-1 BG505 Env SOSIP in complex with bovine Fab Bess4 and non-human primate Fab RM20A3
Method: single particle / : Ozorowski G, Lee WH, Ward AB

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

PDB-8g5y: 
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

PDB-8g5z: 
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

PDB-8g60: 
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

PDB-8g61: 
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

PDB-8g6j: 
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

PDB-8glp: 
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-24120: 
Elongating 70S ribosome complex in a classical pre-translocation (PRE-C) conformation
Method: single particle / : Rundlet EJ, Holm M

EMDB-24132: 
Elongating 70S ribosome complex in a fusidic acid-stalled intermediate state of translocation bound to EF-G(GDP) (INT2)
Method: single particle / : Rundlet EJ, Holm M

EMDB-24133: 
Elongating 70S ribosome complex in a hybrid-H1 pre-translocation (PRE-H1) conformation
Method: single particle / : Rundlet EJ, Holm M

EMDB-24134: 
Elongating 70S ribosome complex in a spectinomycin-stalled intermediate state of translocation bound to EF-G in an active, GTP conformation (INT1)
Method: single particle / : Rundlet EJ, Holm M

EMDB-24135: 
Elongating 70S ribosome complex in a hybrid-H2* pre-translocation (PRE-H2*) conformation
Method: single particle / : Rundlet EJ, Holm M

EMDB-24136: 
Elongating 70S ribosome complex in a post-translocation (POST) conformation
Method: single particle / : Rundlet EJ, Holm M

PDB-7n1p: 
Elongating 70S ribosome complex in a classical pre-translocation (PRE-C) conformation
Method: single particle / : Rundlet EJ, Holm M, Schacherl M, Natchiar SK, Altman RB, Spahn CMT, Myasnikov AG, Blanchard SC

PDB-7n2c: 
Elongating 70S ribosome complex in a fusidic acid-stalled intermediate state of translocation bound to EF-G(GDP) (INT2)
Method: single particle / : Rundlet EJ, Holm M, Schacherl M, Natchiar KS, Altman RB, Spahn CMT, Myasnikov AG, Blanchard SC

PDB-7n2u: 
Elongating 70S ribosome complex in a hybrid-H1 pre-translocation (PRE-H1) conformation
Method: single particle / : Rundlet EJ, Holm M, Schacherl M, Natchiar KS, Altman RB, Spahn CMT, Myasnikov AG, Blanchard SC

PDB-7n2v: 
Elongating 70S ribosome complex in a spectinomycin-stalled intermediate state of translocation bound to EF-G in an active, GTP conformation (INT1)
Method: single particle / : Rundlet EJ, Holm M, Schacherl M, Natchiar KS, Altman RB, Spahn CMT, Myasnikov AG, Blanchard SC

PDB-7n30: 
Elongating 70S ribosome complex in a hybrid-H2* pre-translocation (PRE-H2*) conformation
Method: single particle / : Rundlet EJ, Holm M, Schacherl M, Natchiar KS, Altman RB, Spahn CMT, Myasnikov AG, Blanchard SC

PDB-7n31: 
Elongating 70S ribosome complex in a post-translocation (POST) conformation
Method: single particle / : Rundlet EJ, Holm M, Schacherl M, Natchiar KS, Altman RB, Spahn CMT, Myasnikov AG, Blanchard SC

EMDB-30835: 
cryo EM map of the LAT1-4F2hc bound with JX-075
Method: single particle / : Yan RH, Li YN

EMDB-30836: 
cryo EM map of the LAT1-4F2hc bound with JX-075, focused refined on transmembrane region
Method: single particle / : Yan RH, Li YN, Zhang YY, Zhong XY, Zhou Q

EMDB-30837: 
cryo EM map of the LAT1-4F2hc bound with JX-078
Method: single particle / : Yan RH, Li YN

EMDB-30838: 
cryo EM map of the LAT1-4F2hc bound with JX-078, focused refined on transmembrane region
Method: single particle / : Yan RH, Li YN, Zhang YY, Zhong XY, Zhou Q

EMDB-30839: 
cryo EM map of the LAT1-4F2hc bound with JX-119
Method: single particle / : Yan RH, Li YN

EMDB-30840: 
cryo EM map of the LAT1-4F2hc bound with JX-119, focused refined on transmembrane region
Method: single particle / : Yan RH, Li YN, Zhang YY, Zhong XY, Zhou Q

EMDB-30841: 
cryo EM map of the LAT1-4F2hc bound with 3,5-diiodo-L-tyrosine
Method: single particle / : Yan RH, Li YN

EMDB-30842: 
cryo EM map of the LAT1-4F2hc bound with 3,5-diiodo-L-tyrosine, focused refined on transmembrane region
Method: single particle / : Yan RH, Li YN, Zhang YY, Zhong XY, Zhou Q

PDB-7dsk: 
Overall structure of the LAT1-4F2hc bound with JX-075
Method: single particle / : Yan RH, Li YN, Zhang YY, Zhong XY, Zhou Q
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