Cryo-em structures of ribosomal 80s complexes with termination factors and cricket paralysis virus ires reveal the ires in the translocated state Deposition Author(s): Hilal, T. , Mielke, T. , Muhs, M. , Pestova, T.V. , Sanbonmatsu, K.Y. , Skabkin, M.A. , Spahn, C.M.T.
Date: 2014-11-05 Method: ELECTRON MICROSCOPY Resolution: 9.0 Å Organism(s): Oryctolagus Cuniculus Sequences Data: 4D5L_1 , 4D5L_I , 4D5L_J , 4D5L_K , 4D5L_L , 4D5L_M , 4D5L_N , 4D5L_O , 4D5L_P , 4D5L_Q , 4D5L_R , 4D5L_A , 4D5L_S , 4D5L_T , 4D5L_U , 4D5L_V , 4D5L_W , 4D5L_X , 4D5L_Y , 4D5L_Z , 4D5L_B , 4D5L_C , 4D5L_D , 4D5L_E , 4D5L_F , 4D5L_G , 4D5L_H
Cryo-em structures of ribosomal 80s complexes with termination factors and cricket paralysis virus ires reveal the ires in the translocated state Deposition Author(s): Hilal, T. , Mielke, T. , Muhs, M. , Pestova, T.V. , Sanbonmatsu, K.Y. , Skabkin, M.A. , Spahn, C.M.T.
Date: 2014-11-06 Method: ELECTRON MICROSCOPY Resolution: 9.0 Å Organism(s): Homo Sapiens , Synthetic Construct Sequences Data: 4D5N_A , 4D5N_X
Cryo-em structures of ribosomal 80s complexes with termination factors and cricket paralysis virus ires reveal the ires in the translocated state Deposition Author(s): Hilal, T. , Mielke, T. , Muhs, M. , Pestova, T.V. , Sanbonmatsu, K.Y. , Skabkin, M.A. , Spahn, C.M.T.
Date: 2014-11-07 Method: ELECTRON MICROSCOPY Resolution: 9.0 Å Organism(s): Oryctolagus Cuniculus Sequences Data: 4D5Y_A , 4D5Y_J , 4D5Y_L , 4D5Y_M , 4D5Y_N , 4D5Y_O , 4D5Y_P , 4D5Y_Q , 4D5Y_R , 4D5Y_S , 4D5Y_T , 4D5Y_B , 4D5Y_U , 4D5Y_V , 4D5Y_W , 4D5Y_X , 4D5Y_Y , 4D5Y_Z , 4D5Y_C , 4D5Y_D , 4D5Y_E , 4D5Y_F , 4D5Y_G , 4D5Y_H , 4D5Y_I , 4D5Y_K , 4D5Y_2 , 4D5Y_3 , 4D5Y_4
Cryo-em structures of ribosomal 80s complexes with termination factors and cricket paralysis virus ires reveal the ires in the translocated state Deposition Author(s): Hilal, T. , Mielke, T. , Muhs, M. , Pestova, T.V. , Sanbonmatsu, K.Y. , Skabkin, M.A. , Spahn, C.M.T.
Date: 2014-11-07 Method: ELECTRON MICROSCOPY Resolution: 9.0 Å Organism(s): Homo Sapiens , Oryctolagus Cuniculus , Synthetic Construct Sequences Data: 4D61_1 , 4D61_I , 4D61_J , 4D61_K , 4D61_L , 4D61_M , 4D61_N , 4D61_O , 4D61_P , 4D61_Q , 4D61_R , 4D61_A , 4D61_S , 4D61_T , 4D61_U , 4D61_V , 4D61_W , 4D61_X , 4D61_Y , 4D61_Z , 4D61_B , 4D61_C , 4D61_D , 4D61_E , 4D61_F , 4D61_G , 4D61_H
Cryo-em structures of ribosomal 80s complexes with termination factors and cricket paralysis virus ires reveal the ires in the translocated state Deposition Author(s): Hilal, T. , Mielke, T. , Muhs, M. , Pestova, T.V. , Sanbonmatsu, K.Y. , Skabkin, M.A. , Spahn, C.M.T.
Date: 2014-11-10 Method: ELECTRON MICROSCOPY Resolution: 9.0 Å Organism(s): Oryctolagus Cuniculus Sequences Data: 4D67_A , 4D67_J , 4D67_L , 4D67_M , 4D67_N , 4D67_O , 4D67_P , 4D67_Q , 4D67_R , 4D67_S , 4D67_T , 4D67_B , 4D67_U , 4D67_V , 4D67_W , 4D67_X , 4D67_Y , 4D67_Z , 4D67_C , 4D67_D , 4D67_E , 4D67_F , 4D67_G , 4D67_H , 4D67_I , 4D67_K , 4D67_2 , 4D67_3 , 4D67_4
Mammalian 40s hcv-ires complex Deposition Author(s): Burger, J. , Collier, M. , Dabrowski, M. , Hilal, T. , Hildebrand, P.W. , Ismer, J. , Loerke, J. , Mielke, T. , Scheerer, P. , Schmidt, A. , Shaikh, T.R. , Spahn, C.M.T. , Sprink, T. , Yamamoto, H. , Yamamoto, K.
Date: 2015-10-28 Method: ELECTRON MICROSCOPY Resolution: 3.9 Å Organism(s): Hepatitis C Virus , Oryctolagus Cuniculus Sequences Data: 5FLX_1 , 5FLX_I , 5FLX_J , 5FLX_K , 5FLX_L , 5FLX_M , 5FLX_N , 5FLX_O , 5FLX_P , 5FLX_Q , 5FLX_R , 5FLX_A , 5FLX_S , 5FLX_T , 5FLX_U , 5FLX_V , 5FLX_W , 5FLX_X , 5FLX_Y , 5FLX_Z , 5FLX_B , 5FLX_C , 5FLX_D , 5FLX_E , 5FLX_F , 5FLX_G , 5FLX_H
Nonstop ribosomal complex bound with dom34 and hbs1 Deposition Author(s): Buerger, J. , Hilal, T. , Loerke, J. , Mielke, T. , Spahn, C.M.T. , Yamamoto, H.
Date: 2016-10-07 Method: ELECTRON MICROSCOPY Resolution: 3.3 Å Organism(s): Saccharomyces Cerevisiae , Synthetic Construct Sequences Data: 5M1J_A1 , 5M1J_E2 , 5M1J_F2 , 5M1J_G2 , 5M1J_H2 , 5M1J_I2 , 5M1J_J2 , 5M1J_K2 , 5M1J_L2 , 5M1J_A2 , 5M1J_M2 , 5M1J_N2 , 5M1J_O2 , 5M1J_P2 , 5M1J_Q2 , 5M1J_R2 , 5M1J_S2 , 5M1J_T2 , 5M1J_U2 , 5M1J_V2 , 5M1J_W2 , 5M1J_X2 , 5M1J_Y2 , 5M1J_Z2 , 5M1J_22 , 5M1J_14 , 5M1J_34 , 5M1J_44 , 5M1J_A5 , 5M1J_B2 , 5M1J_B5 , 5M1J_C5 , 5M1J_D5 , 5M1J_E5 , 5M1J_F5 , 5M1J_G5 , 5M1J_H5 , 5M1J_I5 , 5M1J_J5 , 5M1J_K5 , 5M1J_L5 , 5M1J_C2 , 5M1J_M5 , 5M1J_N5 , 5M1J_O5 , 5M1J_P5 , 5M1J_Q5 , 5M1J_S5 , 5M1J_U5 , 5M1J_V5 , 5M1J_Z5 , 5M1J_R5 , 5M1J_X5 , 5M1J_Y5 , 5M1J_T5 , 5M1J_W5 , 5M1J_D2 , 5M1J_A6 , 5M1J_X7 , 5M1J_A3
50s ribosomal subunit assembly intermediate state 5 Deposition Author(s): Buerger, J. , Hilal, T. , Loerke, J. , Mielke, T. , Nikolay, R. , Qin, B. , Spahn, C.M.T.
Date: 2018-04-16 Method: ELECTRON MICROSCOPY Resolution: 3.8 Å Organism(s): Escherichia Coli K-12 Sequences Data: 6GBZ_A , 6GBZ_L , 6GBZ_N , 6GBZ_O , 6GBZ_P , 6GBZ_Q , 6GBZ_R , 6GBZ_S , 6GBZ_T , 6GBZ_U , 6GBZ_V , 6GBZ_C , 6GBZ_W , 6GBZ_X , 6GBZ_Y , 6GBZ_Z , 6GBZ_0 , 6GBZ_1 , 6GBZ_2 , 6GBZ_3 , 6GBZ_B , 6GBZ_M , 6GBZ_D , 6GBZ_E , 6GBZ_F , 6GBZ_G , 6GBZ_H , 6GBZ_J , 6GBZ_K
50s ribosomal subunit assembly intermediate state 4 Deposition Author(s): Buerger, J. , Hilal, T. , Loerke, J. , Mielke, T. , Nikolay, R. , Qin, B. , Spahn, C.M.T.
Date: 2018-04-16 Method: ELECTRON MICROSCOPY Resolution: 3.8 Å Organism(s): Escherichia Coli Sequences Data: 6GC0_A , 6GC0_K , 6GC0_L , 6GC0_N , 6GC0_O , 6GC0_P , 6GC0_Q , 6GC0_R , 6GC0_S , 6GC0_T , 6GC0_U , 6GC0_B , 6GC0_V , 6GC0_W , 6GC0_X , 6GC0_Y , 6GC0_Z , 6GC0_0 , 6GC0_1 , 6GC0_2 , 6GC0_3 , 6GC0_C , 6GC0_D , 6GC0_E , 6GC0_F , 6GC0_G , 6GC0_H , 6GC0_J
50s ribosomal subunit assembly intermediate state 3 Deposition Author(s): Buerger, J. , Hilal, T. , Loerke, J. , Mielke, T. , Nikolay, R. , Qin, B. , Spahn, C.M.T.
Date: 2018-04-17 Method: ELECTRON MICROSCOPY Resolution: 4.3 Å Organism(s): Escherichia Coli K-12 Sequences Data: 6GC4_V , 6GC4_N , 6GC4_P , 6GC4_Q , 6GC4_R , 6GC4_S , 6GC4_T , 6GC4_U , 6GC4_X , 6GC4_Y , 6GC4_0 , 6GC4_A , 6GC4_2 , 6GC4_O , 6GC4_F , 6GC4_B , 6GC4_Z , 6GC4_H , 6GC4_W , 6GC4_C , 6GC4_D , 6GC4_E , 6GC4_G , 6GC4_J , 6GC4_K , 6GC4_L