Crystal structure of p domain from norovirus gi.4 capsid protein. Deposition Author(s): Hasegawa, K. , Katsura, K. , Kimura-Someya, T. , Sakai, N. , Shirouzu, M.
Date: 2023-04-21 Method: X-RAY DIFFRACTION Resolution: 1.89 Å Organism(s): Norovirus Hu/Gi.4/S50/2008/Lilla Edet/Sweden Sequences Data: 8J5B_A , 8J5B_B , 8J5B_C , 8J5B_D
Structure of the human cytoplasmic ribosome with human trna asp(q34) and mrna(gau) Deposition Author(s): Ishiguro, K. , Shirouzu, M. , Suzuki, T. , Yokoyama, T.
Date: 2023-05-14 Method: ELECTRON MICROSCOPY Resolution: 2.5 Å Organism(s): Homo Sapiens , Synthetic Construct Sequences Data: 8JDJ_A , 8JDJ_K , 8JDJ_L , 8JDJ_M , 8JDJ_N , 8JDJ_O , 8JDJ_P , 8JDJ_Q , 8JDJ_R , 8JDJ_S , 8JDJ_T , 8JDJ_B , 8JDJ_C , 8JDJ_U , 8JDJ_V , 8JDJ_W , 8JDJ_X , 8JDJ_Y , 8JDJ_Z , 8JDJ_D , 8JDJ_E , 8JDJ_F , 8JDJ_G , 8JDJ_H , 8JDJ_I , 8JDJ_J , 8JDJ_0 , 8JDJ_1 , 8JDJ_2 , 8JDJ_3 , 8JDJ_4 , 8JDJ_5 , 8JDJ_6 , 8JDJ_7 , 8JDJ_8 , 8JDJ_9 , 8JDJ_AA , 8JDJ_AB , 8JDJ_AC , 8JDJ_AD , 8JDJ_AE , 8JDJ_AF , 8JDJ_AG , 8JDJ_AH , 8JDJ_AI , 8JDJ_AJ , 8JDJ_AK , 8JDJ_AL , 8JDJ_AM , 8JDJ_AN , 8JDJ_AO , 8JDJ_AP , 8JDJ_AQ , 8JDJ_AR
Structure of the human cytoplasmic ribosome with human trna asp(manq34) and mrna(gau) Deposition Author(s): Ishiguro, K. , Shirouzu, M. , Suzuki, T. , Yokoyama, T.
Date: 2023-05-14 Method: ELECTRON MICROSCOPY Resolution: 2.26 Å Organism(s): Homo Sapiens Sequences Data: 8JDK_A , 8JDK_K , 8JDK_L , 8JDK_M , 8JDK_N , 8JDK_O , 8JDK_P , 8JDK_Q , 8JDK_R , 8JDK_S , 8JDK_T , 8JDK_B , 8JDK_C , 8JDK_U , 8JDK_V , 8JDK_W , 8JDK_X , 8JDK_Y , 8JDK_Z , 8JDK_D , 8JDK_E , 8JDK_F , 8JDK_G , 8JDK_H , 8JDK_I , 8JDK_J , 8JDK_0 , 8JDK_1 , 8JDK_2 , 8JDK_3 , 8JDK_4 , 8JDK_5 , 8JDK_6 , 8JDK_7 , 8JDK_8 , 8JDK_9 , 8JDK_AA , 8JDK_AB , 8JDK_AC , 8JDK_AD , 8JDK_AE , 8JDK_AF , 8JDK_AG , 8JDK_AH , 8JDK_AI , 8JDK_AJ , 8JDK_AK , 8JDK_AL , 8JDK_AM , 8JDK_AN , 8JDK_AO , 8JDK_AP , 8JDK_AQ , 8JDK_AR
Structure of the human cytoplasmic ribosome with human trna tyr(galq34) and mrna(uau) (non-rotated state) Deposition Author(s): Ishiguro, K. , Shirouzu, M. , Suzuki, T. , Yokoyama, T.
Date: 2023-05-14 Method: ELECTRON MICROSCOPY Resolution: 2.42 Å Organism(s): Homo Sapiens Sequences Data: 8JDL_A , 8JDL_K , 8JDL_L , 8JDL_M , 8JDL_N , 8JDL_O , 8JDL_P , 8JDL_Q , 8JDL_R , 8JDL_S , 8JDL_T , 8JDL_B , 8JDL_U , 8JDL_V , 8JDL_W , 8JDL_X , 8JDL_Y , 8JDL_Z , 8JDL_C , 8JDL_D , 8JDL_E , 8JDL_F , 8JDL_G , 8JDL_H , 8JDL_I , 8JDL_J , 8JDL_0 , 8JDL_1 , 8JDL_2 , 8JDL_3 , 8JDL_4 , 8JDL_5 , 8JDL_6 , 8JDL_7 , 8JDL_8 , 8JDL_9 , 8JDL_AA , 8JDL_AB , 8JDL_AC , 8JDL_AD , 8JDL_AE , 8JDL_AF , 8JDL_AG , 8JDL_AH , 8JDL_AI , 8JDL_AJ , 8JDL_AK , 8JDL_AL , 8JDL_AM , 8JDL_AN , 8JDL_AO , 8JDL_AP , 8JDL_AQ , 8JDL_AR
Structure of the human cytoplasmic ribosome with human trna tyr(galq34) and mrna(uau) (rotated state) Deposition Author(s): Ishiguro, K. , Shirouzu, M. , Suzuki, T. , Yokoyama, T.
Date: 2023-05-14 Method: ELECTRON MICROSCOPY Resolution: 2.67 Å Organism(s): Homo Sapiens , Synthetic Construct Sequences Data: 8JDM_A , 8JDM_K , 8JDM_L , 8JDM_M , 8JDM_N , 8JDM_O , 8JDM_P , 8JDM_Q , 8JDM_R , 8JDM_S , 8JDM_T , 8JDM_B , 8JDM_C , 8JDM_U , 8JDM_V , 8JDM_W , 8JDM_X , 8JDM_Y , 8JDM_Z , 8JDM_D , 8JDM_E , 8JDM_F , 8JDM_G , 8JDM_H , 8JDM_I , 8JDM_J , 8JDM_0 , 8JDM_1 , 8JDM_2 , 8JDM_3 , 8JDM_4 , 8JDM_5 , 8JDM_6 , 8JDM_7 , 8JDM_8 , 8JDM_9 , 8JDM_AA , 8JDM_AB , 8JDM_AC , 8JDM_AD , 8JDM_AE , 8JDM_AF , 8JDM_AG , 8JDM_AH , 8JDM_AI , 8JDM_AJ , 8JDM_AK , 8JDM_AL , 8JDM_AM , 8JDM_AN , 8JDM_AO , 8JDM_AP , 8JDM_AQ , 8JDM_AR
Cryo-em structure of the gi.4 chiba vlp complexed with the cv-1a1 fv-clasp Deposition Author(s): Hosaka, T. , Katsura, K. , Kimura-Someya, T. , Shirouzu, M. , Someya, Y.
Date: 2023-05-19 Method: ELECTRON MICROSCOPY Resolution: 3.04 Å Organism(s): Chiba Virus , Homo Sapiens Sequences Data: 8JG5_A , 8JG5_B , 8JG5_G , 8JG5_C , 8JG5_E , 8JG5_D , 8JG5_F
Cryo-em structure of the dock5/elmo1 complex, focused on one protomer Deposition Author(s): Inoue, M. , Ishizuka-Katsura, Y. , Katsura, K. , Kaushik, R. , Kukimoto-Niino, M. , Mishima-Tsumagari, C. , Nakagawa, R. , Shirouzu, M. , Yonemochi, M. , Zhang, K.Y.J.
Date: 2023-05-23 Method: ELECTRON MICROSCOPY Resolution: 4.76 Å Organism(s): Homo Sapiens Sequences Data: 8JHK_A , 8JHK_B , 8JHK_E
Full agonist-bound mu-type opioid receptor-g protein complex Deposition Author(s): Hisano, T. , Imai, S. , Kaneko, S. , Shimada, I. , Shirouzu, M. , Uchikubo-Kamo, T.
Date: 2023-08-01 Method: ELECTRON MICROSCOPY Resolution: 2.98 Å Organism(s): Escherichia Coli , Homo Sapiens , Macaca Mulatta , Synthetic Construct , Synthetic Construct Sequences Data: 8K9K_R , 8K9K_S , 8K9K_A , 8K9K_B , 8K9K_G , 8K9K_H
Full agonist- and positive allosteric modulator-bound mu-type opioid receptor-g protein complex Deposition Author(s): Hisano, T. , Imai, S. , Kaneko, S. , Shimada, I. , Shirouzu, M. , Uchikubo-Kamo, T.
Date: 2023-08-01 Method: ELECTRON MICROSCOPY Resolution: 3.05 Å Organism(s): Escherichia Coli , Homo Sapiens , Macaca Mulatta , Synthetic Construct , Synthetic Construct Sequences Data: 8K9L_R , 8K9L_S , 8K9L_A , 8K9L_B , 8K9L_G , 8K9L_H
Solution structures of the n-terminal divergent caplonin homology (nn-ch) domains of human intraflagellar transport protein 54 Deposition Author(s): Dang, W. , Guentert, P. , He, F. , Kigawa, T. , Kobayashi, N. , Kuwasako, K. , Muto, Y. , Nagata, T. , Riken Structural Genomics/Proteomics Initiative (Rsgi) , Shirouzu, M. , Takahashi, M. , Tanaka, A. , Tsuda, K. , Yokoyama, S.
Date: 2023-08-08 Method: SOLUTION NMR Resolution: N.A. Organism(s): Homo Sapiens Sequences Data: 8KCQ_A