Structural basis for targeting and elongation arrest of bacillus signal recognition particle Deposition Author(s): Beckert, B. , Beckmann, R. , Kedrov, A. , Kempf, G. , Sinning, I. , Sohmen, D. , Stahlberg, H. , Wild, K. , Wilson, D.N.
Date: 2014-12-15 Method: ELECTRON MICROSCOPY Resolution: 7.0 Å Organism(s): Bacillus Subtilis Subsp. Subtilis Str. 168 Sequences Data: 4UE4_A , 4UE4_B , 4UE4_C
Structural basis for targeting and elongation arrest of bacillus signal recognition particle Deposition Author(s): Beckert, B. , Beckmann, R. , Kedrov, A. , Kempf, G. , Sinning, I. , Sohmen, D. , Stahlberg, H. , Wild, K. , Wilson, D.N.
Date: 2014-12-15 Method: ELECTRON MICROSCOPY Resolution: 9.0 Å Organism(s): Canis Lupus Familiaris Sequences Data: 4UE5_A , 4UE5_B , 4UE5_C , 4UE5_D , 4UE5_E , 4UE5_F , 4UE5_S
Structural basis for arfa-rf2 mediated translation termination on stop-codon lacking mrnas Deposition Author(s): Arenz, S. , Beckert, B. , Beckmann, R. , Berninghausen, O. , Huter, P. , Mueller, C. , Wilson, N.D.
Date: 2016-11-21 Method: ELECTRON MICROSCOPY Resolution: 3.1 Å Organism(s): Escherichia Coli Sequences Data: 5MGP_A , 5MGP_K , 5MGP_L , 5MGP_M , 5MGP_N , 5MGP_O , 5MGP_P , 5MGP_Q , 5MGP_R , 5MGP_S , 5MGP_T , 5MGP_B , 5MGP_U , 5MGP_V , 5MGP_W , 5MGP_X , 5MGP_Y , 5MGP_Z , 5MGP_0 , 5MGP_1 , 5MGP_2 , 5MGP_3 , 5MGP_C , 5MGP_4 , 5MGP_6 , 5MGP_D , 5MGP_E , 5MGP_F , 5MGP_G , 5MGP_H , 5MGP_I , 5MGP_J
Structure of the bacillus subtilis hibernating 100s ribosome reveals the basis for 70s dimerization. Deposition Author(s): Abdelshahid, M. , Arenz, S. , Bange, G. , Beckert, B. , Beckmann, R. , Berninghausen, O. , Schaefer, H. , Steinchen, W. , Turgay, K. , Wilson, D.N.
Date: 2017-03-29 Method: ELECTRON MICROSCOPY Resolution: 3.8 Å Organism(s): Bacillus Subtilis Subsp. Subtilis Str. 168 Sequences Data: 5NJT_A , 5NJT_J , 5NJT_K , 5NJT_L , 5NJT_M , 5NJT_N , 5NJT_O , 5NJT_P , 5NJT_Q , 5NJT_R , 5NJT_S , 5NJT_B , 5NJT_T , 5NJT_U , 5NJT_V , 5NJT_W , 5NJT_X , 5NJT_Y , 5NJT_Z , 5NJT_C , 5NJT_D , 5NJT_E , 5NJT_F , 5NJT_G , 5NJT_H , 5NJT_I
Structure of a hibernating 100s ribosome reveals an inactive conformation of the ribosomal protein s1 - 70s hibernating e. coli ribosome Deposition Author(s): Beckert, B. , Beckmann, R. , Berninghausen, O. , Czech, A. , Ignatova, Z. , Plitzko, J. , Turk, M. , Wilson, N.D.
Date: 2018-07-22 Method: ELECTRON MICROSCOPY Resolution: 3.0 Å Organism(s): Escherichia Coli Bw25113 Sequences Data: 6H4N_A , 6H4N_J , 6H4N_K , 6H4N_L , 6H4N_M , 6H4N_N , 6H4N_O , 6H4N_P , 6H4N_Q , 6H4N_R , 6H4N_S , 6H4N_B , 6H4N_T , 6H4N_U , 6H4N_C , 6H4N_D , 6H4N_E , 6H4N_F , 6H4N_G , 6H4N_H , 6H4N_V , 6H4N_W , 6H4N_X , 6H4N_Y , 6H4N_Z , 6H4N_0 , 6H4N_1 , 6H4N_2 , 6H4N_3 , 6H4N_4 , 6H4N_6 , 6H4N_I
Structure of a hibernating 100s ribosome reveals an inactive conformation of the ribosomal protein s1 - full 100s hibernating e. coli ribosome Deposition Author(s): Beckert, B. , Beckmann, R. , Berninghausen, O. , Czech, A. , Ignatova, Z. , Plitzko, J. , Turk, M. , Wilson, D.N.
Date: 2018-07-24 Method: ELECTRON MICROSCOPY Resolution: 7.9 Å Organism(s): Escherichia Coli Bw25113 Sequences Data: 6H58_0 , 6H58_00 , 6H58_D , 6H58_DD , 6H58_E , 6H58_EE , 6H58_F , 6H58_FF , 6H58_G , 6H58_GG , 6H58_H , 6H58_HH , 6H58_J , 6H58_JJ , 6H58_K , 6H58_KK , 6H58_L , 6H58_LL , 6H58_M , 6H58_MM , 6H58_N , 6H58_NN , 6H58_1 , 6H58_11 , 6H58_O , 6H58_OO , 6H58_P , 6H58_PP , 6H58_Q , 6H58_QQ , 6H58_R , 6H58_RR , 6H58_S , 6H58_SS , 6H58_T , 6H58_TT , 6H58_U , 6H58_UU , 6H58_V , 6H58_VV , 6H58_W , 6H58_WW , 6H58_X , 6H58_XX , 6H58_2 , 6H58_22 , 6H58_Y , 6H58_YY , 6H58_Z , 6H58_ZZ , 6H58_A , 6H58_AA , 6H58_B , 6H58_BB , 6H58_C , 6H58_CC , 6H58_3 , 6H58_33 , 6H58_I , 6H58_II , 6H58_4 , 6H58_44 , 6H58_6 , 6H58_66
Release factor-dependent ribosome rescue by brfa in the gram-positive bacterium bacillus subtilis Deposition Author(s): Beckert, B. , Muller, C. , Wilson, D.N.
Date: 2019-10-02 Method: ELECTRON MICROSCOPY Resolution: 3.06 Å Organism(s): Bacillus Subtilis (Strain 168) , Escherichia Coli (Strain K12) , Escherichia Coli K-12 Sequences Data: 6SZS_0 , 6SZS_D , 6SZS_E , 6SZS_F , 6SZS_G , 6SZS_H , 6SZS_J , 6SZS_K , 6SZS_L , 6SZS_M , 6SZS_N , 6SZS_1 , 6SZS_O , 6SZS_P , 6SZS_Q , 6SZS_R , 6SZS_S , 6SZS_T , 6SZS_U , 6SZS_V , 6SZS_W , 6SZS_X , 6SZS_2 , 6SZS_Y , 6SZS_Z , 6SZS_A , 6SZS_B , 6SZS_C , 6SZS_3 , 6SZS_I , 6SZS_4 , 6SZS_5
E. coli 70s containing suppressor trna in the a-site stabilized by a negamycin analogue and p-site trna-nascent chain. Deposition Author(s): Albers, S. , Beckert, B. , Ignatova, Z. , Matthies, M. , Riedner, M. , Sanyal, S. , Schuster, R. , Seuring, C. , Torda, A. , Wilson, N.D.
Date: 2020-12-03 Method: ELECTRON MICROSCOPY Resolution: 2.9 Å Organism(s): Escherichia Coli K-12 , Synthetic Construct Sequences Data: 7B5K_A , 7B5K_K , 7B5K_L , 7B5K_M , 7B5K_N , 7B5K_O , 7B5K_P , 7B5K_Q , 7B5K_R , 7B5K_S , 7B5K_T , 7B5K_B , 7B5K_U , 7B5K_V , 7B5K_W , 7B5K_X , 7B5K_Y , 7B5K_Z , 7B5K_0 , 7B5K_1 , 7B5K_2 , 7B5K_3 , 7B5K_C , 7B5K_4 , 7B5K_5 , 7B5K_D , 7B5K_E , 7B5K_F , 7B5K_G , 7B5K_H , 7B5K_I , 7B5K_J , 7B5K_9 , 7B5K_6
Yeast 80s ribosome bound to eef3 and a/a- and p/p-trnas Deposition Author(s): Beckert, B. , Blanchet, S. , Green, R. , Pochopien, A.A. , Ranjan, N. , Rodnina, M.V. , Wilson, D.N. , Wu, C.C.
Date: 2020-12-10 Method: ELECTRON MICROSCOPY Resolution: 3.3 Å Organism(s): Saccharomyces Cerevisiae (Strain Atcc 204508 / S288C) , Saccharomyces Cerevisiae S288C Sequences Data: 7B7D_2 , 7B7D_T , 7B7D_U , 7B7D_V , 7B7D_W , 7B7D_C , 7B7D_X , 7B7D_D , 7B7D_Y , 7B7D_Z , 7B7D_F , 7B7D_1 , 7B7D_G , 7B7D_H , 7B7D_I , 7B7D_J , 7B7D_A , 7B7D_B , 7B7D_K , 7B7D_E , 7B7D_P , 7B7D_M , 7B7D_N , 7B7D_O , 7B7D_L , 7B7D_LA , 7B7D_LB , 7B7D_LC , 7B7D_LD , 7B7D_Q , 7B7D_LE , 7B7D_LF , 7B7D_LG , 7B7D_LH , 7B7D_LI , 7B7D_LJ , 7B7D_LK , 7B7D_LL , 7B7D_LM , 7B7D_LN , 7B7D_LO , 7B7D_LP , 7B7D_LQ , 7B7D_LR , 7B7D_R , 7B7D_LS , 7B7D_LT , 7B7D_LU , 7B7D_LV , 7B7D_LW , 7B7D_LX , 7B7D_LY , 7B7D_LZ , 7B7D_S , 7B7D_SN , 7B7D_SM , 7B7D_EF
Crystal structure of the thermus thermophilus 70s ribosome in complex with bac7-001, mrna, and deacylated p-site trna at 3.00a resolution Deposition Author(s): Armas, F. , Beckert, B. , Borisek, J. , Buchmann, J. , Collis, D.W.P. , Di Stasi, A. , Hilpert, K. , Magistrato, A. , Mardirossian, M. , Polikanov, Y.S. , Scocchi, M. , Sola, R. , Syroegin, E.A. , Valencic, E. , Wilson, D.N.
Date: 2020-08-11 Method: X-RAY DIFFRACTION Resolution: 3 Å Organism(s): Escherichia Coli , Thermus Thermophilus Hb8 , Synthetic Construct Sequences Data: 7JQL_1A , 7JQL_2A , 7JQL_1O , 7JQL_2O , 7JQL_1P , 7JQL_2P , 7JQL_1Q , 7JQL_2Q , 7JQL_1R , 7JQL_2R , 7JQL_1S , 7JQL_2S , 7JQL_1T , 7JQL_2T , 7JQL_1U , 7JQL_2U , 7JQL_1V , 7JQL_2V , 7JQL_1W , 7JQL_2W , 7JQL_1X , 7JQL_2X , 7JQL_1B , 7JQL_2B , 7JQL_1Y , 7JQL_2Y , 7JQL_1Z , 7JQL_2Z , 7JQL_10 , 7JQL_20 , 7JQL_11 , 7JQL_21 , 7JQL_12 , 7JQL_22 , 7JQL_13 , 7JQL_23 , 7JQL_14 , 7JQL_24 , 7JQL_15 , 7JQL_25 , 7JQL_16 , 7JQL_26 , 7JQL_17 , 7JQL_27 , 7JQL_1D , 7JQL_2D , 7JQL_18 , 7JQL_28 , 7JQL_19 , 7JQL_29 , 7JQL_1C , 7JQL_2C , 7JQL_1E , 7JQL_2E , 7JQL_1F , 7JQL_2F , 7JQL_1G , 7JQL_2G , 7JQL_1H , 7JQL_2H , 7JQL_1I , 7JQL_2I , 7JQL_1J , 7JQL_2J , 7JQL_1K , 7JQL_2K , 7JQL_1L , 7JQL_2L , 7JQL_1M , 7JQL_2M , 7JQL_1N , 7JQL_2N