Crystal structure of the poplar glutathione peroxidase 5 in the reduced form Deposition Author(s): Aubry, A. , Corbier, C. , Didierjean, C. , Jacquot, J.-P. , Koh, C.S. , Mulliert, G. , Navrot, N. , Panjikar, S. , Rouhier, N. , Shawkataly, O.
Date: 2007-03-16 Method: X-RAY DIFFRACTION Resolution: 2 Å Organism(s): Populus Trichocarpa X Populus Deltoides Sequences Data: 2P5Q_A , 2P5Q_B , 2P5Q_C , 2P5Q_D
Crystal structure of the poplar glutathione peroxidase 5 in the oxidized form Deposition Author(s): Aubry, A. , Corbier, C. , Didierjean, C. , Jacquot, J.-P. , Koh, C.S. , Mulliert, G. , Navrot, N. , Panjikar, S. , Rouhier, N. , Shawkataly, O.
Date: 2007-03-16 Method: X-RAY DIFFRACTION Resolution: 2.45 Å Organism(s): Populus Trichocarpa X Populus Deltoides Sequences Data: 2P5R_A , 2P5R_B
Crystal structure of the sap97 pdz2 i342w c378a mutant protein domain Deposition Author(s): Chi, C.N. , Elfstrom, L. , Gianni, S. , Haq, S.R. , Jemth, P. , Jurgens, M.C. , Koh, C.S. , Selmer, M.
Date: 2010-03-04 Method: X-RAY DIFFRACTION Resolution: 2 Å Organism(s): Homo Sapiens Sequences Data: 2X7Z_A
Crystal structure of a poplar wild-type thioredoxin h, pttrxh4 Deposition Author(s): Corbier, C. , Didierjean, C. , Gelhaye, E. , Jacquot, J.P. , Koh, C.S. , Rouhier, N.
Date: 2008-05-07 Method: X-RAY DIFFRACTION Resolution: 2.15 Å Organism(s): Populus Trichocarpa X Populus Deltoides Sequences Data: 3D21_A , 3D21_B
Crystal structure of a poplar thioredoxin h mutant, pttrxh4c61s Deposition Author(s): Corbier, C. , Didierjean, C. , Gelhaye, E. , Jacquot, J.P. , Koh, C.S. , Rouhier, N.
Date: 2008-05-07 Method: X-RAY DIFFRACTION Resolution: 1.6 Å Organism(s): Populus Trichocarpa X Populus Deltoides Sequences Data: 3D22_A
Crystal structure of poplar glutaredoxin s12 in complex with glutathione Deposition Author(s): Corbier, C. , Didierjean, C. , Jacquot, J.P. , Koh, C.S. , Rouhier, N.
Date: 2009-01-24 Method: X-RAY DIFFRACTION Resolution: 1.7 Å Organism(s): Populus Tremula X Populus Tremuloides Sequences Data: 3FZ9_A
Crystal structure of poplar glutaredoxin s12 in complex with glutathione and beta-mercaptoethanol Deposition Author(s): Corbier, C. , Didierjean, C. , Jacquot, J.P. , Koh, C.S. , Rouhier, N.
Date: 2009-01-24 Method: X-RAY DIFFRACTION Resolution: 1.8 Å Organism(s): Populus Tremula X Populus Tremuloides Sequences Data: 3FZA_A
S. cerevisiae 80s ribosome bound with taura syndrome virus (tsv) ires, 5 degree rotation (class ii) Deposition Author(s): Brilot, A.F. , Grigorieff, N. , Koh, C.S. , Korostelev, A.A.
Date: 2014-04-16 Method: ELECTRON MICROSCOPY Resolution: 6.1 Å Organism(s): Saccharomyces Cerevisiae , Synthetic Construct Sequences Data: 3J6X_2S , 3J6X_L7 , 3J6X_L8 , 3J6X_L9 , 3J6X_50 , 3J6X_51 , 3J6X_53 , 3J6X_54 , 3J6X_55 , 3J6X_56 , 3J6X_57 , 3J6X_8S , 3J6X_58 , 3J6X_59 , 3J6X_60 , 3J6X_61 , 3J6X_62 , 3J6X_63 , 3J6X_64 , 3J6X_65 , 3J6X_66 , 3J6X_67 , 3J6X_5S , 3J6X_68 , 3J6X_69 , 3J6X_70 , 3J6X_71 , 3J6X_72 , 3J6X_73 , 3J6X_74 , 3J6X_75 , 3J6X_76 , 3J6X_77 , 3J6X_L1 , 3J6X_78 , 3J6X_79 , 3J6X_80 , 3J6X_81 , 3J6X_82 , 3J6X_83 , 3J6X_1S , 3J6X_S0 , 3J6X_S1 , 3J6X_S2 , 3J6X_L2 , 3J6X_S3 , 3J6X_S4 , 3J6X_S5 , 3J6X_S6 , 3J6X_S7 , 3J6X_S8 , 3J6X_S9 , 3J6X_10 , 3J6X_11 , 3J6X_12 , 3J6X_L3 , 3J6X_13 , 3J6X_14 , 3J6X_15 , 3J6X_16 , 3J6X_17 , 3J6X_18 , 3J6X_19 , 3J6X_20 , 3J6X_21 , 3J6X_22 , 3J6X_L4 , 3J6X_23 , 3J6X_24 , 3J6X_25 , 3J6X_26 , 3J6X_27 , 3J6X_28 , 3J6X_29 , 3J6X_30 , 3J6X_31 , 3J6X_RA , 3J6X_L5 , 3J6X_IR , 3J6X_L6
S. cerevisiae 80s ribosome bound with taura syndrome virus (tsv) ires, 2 degree rotation (class i) Deposition Author(s): Brilot, A.F. , Grigorieff, N. , Koh, C.S. , Korostelev, A.A.
Date: 2014-04-16 Method: ELECTRON MICROSCOPY Resolution: 6.1 Å Organism(s): Saccharomyces Cerevisiae , Synthetic Construct Sequences Data: 3J6Y_2S , 3J6Y_L7 , 3J6Y_L8 , 3J6Y_L9 , 3J6Y_50 , 3J6Y_51 , 3J6Y_53 , 3J6Y_54 , 3J6Y_55 , 3J6Y_56 , 3J6Y_57 , 3J6Y_8S , 3J6Y_58 , 3J6Y_59 , 3J6Y_60 , 3J6Y_61 , 3J6Y_62 , 3J6Y_63 , 3J6Y_64 , 3J6Y_65 , 3J6Y_66 , 3J6Y_67 , 3J6Y_5S , 3J6Y_68 , 3J6Y_69 , 3J6Y_70 , 3J6Y_71 , 3J6Y_72 , 3J6Y_73 , 3J6Y_74 , 3J6Y_75 , 3J6Y_76 , 3J6Y_77 , 3J6Y_L1 , 3J6Y_78 , 3J6Y_79 , 3J6Y_80 , 3J6Y_81 , 3J6Y_82 , 3J6Y_83 , 3J6Y_1S , 3J6Y_S0 , 3J6Y_S1 , 3J6Y_S2 , 3J6Y_L2 , 3J6Y_S3 , 3J6Y_S4 , 3J6Y_S5 , 3J6Y_S6 , 3J6Y_S7 , 3J6Y_S8 , 3J6Y_S9 , 3J6Y_10 , 3J6Y_11 , 3J6Y_12 , 3J6Y_L3 , 3J6Y_13 , 3J6Y_14 , 3J6Y_15 , 3J6Y_16 , 3J6Y_17 , 3J6Y_18 , 3J6Y_19 , 3J6Y_20 , 3J6Y_21 , 3J6Y_22 , 3J6Y_L4 , 3J6Y_23 , 3J6Y_24 , 3J6Y_25 , 3J6Y_26 , 3J6Y_27 , 3J6Y_28 , 3J6Y_29 , 3J6Y_30 , 3J6Y_31 , 3J6Y_RA , 3J6Y_L5 , 3J6Y_IR , 3J6Y_L6
Structures of yeast 80s ribosome-trna complexes in the rotated and non-rotated conformations (class ii - rotated ribosome with 1 trna) Deposition Author(s): Brilot, A.F. , Grigorieff, N. , Koh, C.S. , Korostelev, A.A. , Svidritskiy, E.
Date: 2014-05-29 Method: ELECTRON MICROSCOPY Resolution: 6.2 Å Organism(s): Escherichia Coli , Saccharomyces Cerevisiae , Synthetic Construct Sequences Data: 3J77_L1 , 3J77_60 , 3J77_61 , 3J77_62 , 3J77_63 , 3J77_64 , 3J77_65 , 3J77_66 , 3J77_67 , 3J77_68 , 3J77_69 , 3J77_L2 , 3J77_70 , 3J77_71 , 3J77_72 , 3J77_73 , 3J77_74 , 3J77_75 , 3J77_76 , 3J77_77 , 3J77_78 , 3J77_79 , 3J77_L3 , 3J77_80 , 3J77_81 , 3J77_82 , 3J77_83 , 3J77_84 , 3J77_85 , 3J77_86 , 3J77_87 , 3J77_88 , 3J77_89 , 3J77_L4 , 3J77_90 , 3J77_91 , 3J77_92 , 3J77_93 , 3J77_P0 , 3J77_RC , 3J77_S0 , 3J77_S1 , 3J77_S2 , 3J77_S3 , 3J77_L5 , 3J77_S4 , 3J77_S5 , 3J77_S6 , 3J77_S7 , 3J77_S8 , 3J77_S9 , 3J77_10 , 3J77_11 , 3J77_12 , 3J77_13 , 3J77_L6 , 3J77_14 , 3J77_15 , 3J77_16 , 3J77_17 , 3J77_18 , 3J77_19 , 3J77_20 , 3J77_21 , 3J77_22 , 3J77_23 , 3J77_L7 , 3J77_24 , 3J77_25 , 3J77_26 , 3J77_27 , 3J77_28 , 3J77_29 , 3J77_30 , 3J77_31 , 3J77_1S , 3J77_2S , 3J77_L8 , 3J77_8S , 3J77_5S , 3J77_MR , 3J77_PT , 3J77_L9