M4-ctd-docked ap-4 core in apo form Deposition Author(s): Li, W. , Wang, Y.H.
Date: 2025-03-28 Method: ELECTRON MICROSCOPY Resolution: 4.2 Å Organism(s): Homo Sapiens Sequences Data: 9U9J_B , 9U9J_E , 9U9J_M , 9U9J_S
Arf1(q71l) bound m4-ctd-undocked ap-4 core Deposition Author(s): Li, W. , Wang, Y.H.
Date: 2025-03-29 Method: ELECTRON MICROSCOPY Resolution: 6.6 Å Organism(s): Homo Sapiens Sequences Data: 9U9R_B , 9U9R_E , 9U9R_R , 9U9R_M , 9U9R_S
Arf1(q71l) bound m4-ctd-docked ap-4 core Deposition Author(s): Li, W. , Wang, Y.H.
Date: 2025-03-29 Method: ELECTRON MICROSCOPY Resolution: 6.8 Å Organism(s): Homo Sapiens Sequences Data: 9U9S_B , 9U9S_E , 9U9S_H , 9U9S_M , 9U9S_S
Cryo-em structure of a. thaliana met1 with bound sah Deposition Author(s): Du, J. , Li, W. , Liu, Y. , Zhang, Z.
Date: 2025-05-24 Method: ELECTRON MICROSCOPY Resolution: 2.92 Å Organism(s): Arabidopsis Thaliana Sequences Data: 9V4O_A
Cryo-em structure of a. thaliana met1(610-1534) bound covalently to a hemi-mcpg dna Deposition Author(s): Du, J. , Li, W. , Liu, Y. , Zhang, Z.
Date: 2025-05-24 Method: ELECTRON MICROSCOPY Resolution: 2.34 Å Organism(s): Arabidopsis Thaliana , Synthetic Construct Sequences Data: 9V4P_B , 9V4P_C , 9V4P_A
Human mitoribosome in a non-rotated state, with multiple neomycin molecules bound, featuring a/a-site and p/p-site trnas Deposition Author(s): Jia, C. , Li, W. , Wu, M. , Zhu, L.
Date: 2025-07-19 Method: ELECTRON MICROSCOPY Resolution: 2.9 Å Organism(s): Homo Sapiens Sequences Data: 9VXM_0 , 9VXM_9 , 9VXM_A , 9VXM_D , 9VXM_E , 9VXM_F , 9VXM_H , 9VXM_I , 9VXM_J , 9VXM_K , 9VXM_L , 9VXM_1 , 9VXM_M , 9VXM_N , 9VXM_O , 9VXM_P , 9VXM_Q , 9VXM_R , 9VXM_S , 9VXM_T , 9VXM_U , 9VXM_W , 9VXM_2 , 9VXM_X , 9VXM_Y , 9VXM_Z , 9VXM_V , 9VXM_B , 9VXM_G , 9VXM_3 , 9VXM_AA , 9VXM_AB , 9VXM_AC , 9VXM_AD , 9VXM_4 , 9VXM_AE , 9VXM_AF , 9VXM_AG , 9VXM_AH , 9VXM_AI , 9VXM_AJ , 9VXM_AK , 9VXM_AL , 9VXM_AM , 9VXM_AN , 9VXM_5 , 9VXM_AO , 9VXM_AP , 9VXM_C , 9VXM_AR , 9VXM_AS , 9VXM_AT , 9VXM_AU , 9VXM_AV , 9VXM_AW , 9VXM_AX , 9VXM_6 , 9VXM_AY , 9VXM_AZ , 9VXM_A0 , 9VXM_A1 , 9VXM_A3 , 9VXM_A4 , 9VXM_7 , 9VXM_8
Human cytosolic ribosome in a rotated state, with multiple neomycin molecules bound, featuring a/p-site and p/e-site trnas Deposition Author(s): Jia, C. , Li, W. , Wu, M. , Zhu, L.
Date: 2025-07-19 Method: ELECTRON MICROSCOPY Resolution: 2.51 Å Organism(s): Homo Sapiens Sequences Data: 9VXN_L5 , 9VXN_LG , 9VXN_LH , 9VXN_LI , 9VXN_LJ , 9VXN_LL , 9VXN_LM , 9VXN_LN , 9VXN_LO , 9VXN_LP , 9VXN_LQ , 9VXN_L7 , 9VXN_LR , 9VXN_LS , 9VXN_LT , 9VXN_LU , 9VXN_LV , 9VXN_LW , 9VXN_LX , 9VXN_LY , 9VXN_LZ , 9VXN_LA , 9VXN_L8 , 9VXN_LB , 9VXN_LC , 9VXN_LD , 9VXN_LE , 9VXN_LF , 9VXN_LK , 9VXN_S2 , 9VXN_SA , 9VXN_SB , 9VXN_SC , 9VXN_SD , 9VXN_SE , 9VXN_SF , 9VXN_SG , 9VXN_SH , 9VXN_SI , 9VXN_SJ , 9VXN_SK , 9VXN_SL , 9VXN_SM , 9VXN_SN , 9VXN_SO , 9VXN_SP , 9VXN_SQ , 9VXN_SR , 9VXN_SS , 9VXN_ST , 9VXN_SU , 9VXN_SV , 9VXN_SW , 9VXN_SX , 9VXN_SY , 9VXN_SZ , 9VXN_U , 9VXN_V , 9VXN_W
Cryo-em structure of the type ii secretion system protein from acidithiobacillus caldus Deposition Author(s): Bao, Z.P. , Dai, X. , Feng, Q.S. , Fu, Y. , Li, W. , Li, Y. , Lin, W.F. , Liu, R.H. , Zhang, K. , Zhang, X.
Date: 2025-08-21 Method: ELECTRON MICROSCOPY Resolution: 2.39 Å Organism(s): Acidithiobacillus Caldus (Strain Sm-1) Sequences Data: 9WFD_A , 9WFD_B , 9WFD_C , 9WFD_D , 9WFD_E , 9WFD_F , 9WFD_G , 9WFD_H , 9WFD_I , 9WFD_J , 9WFD_K , 9WFD_L , 9WFD_M , 9WFD_N
Crystal structure of brd4 bd1 domain complexed with a molecular glue probe Deposition Author(s): Cao, H. , Chang, M. , Hu, X. , Li, W. , Ren, Y. , Wan, J. , Zhang, Y.
Date: 2025-09-29 Method: X-RAY DIFFRACTION Resolution: 2.62 Å Organism(s): Homo Sapiens , Synthetic Construct Sequences Data: 9WZY_A , 9WZY_B
Crystal structure of mrt4 (l96c) mutant Deposition Author(s): Cao, H. , Chang, M. , Chu, Y. , Hu, X. , Li, W. , Ren, Y. , Wan, J. , Zhang, Y.
Date: 2025-10-23 Method: X-RAY DIFFRACTION Resolution: 2.5 Å Organism(s): Chaetomium Thermophilum (Strain Dsm 1495 / Cbs 144.50 / Imi 039719) Sequences Data: 9XB4_A