Crystal structure of lysozyme by fixed-target pink-beam serial synchrotron crystallography Deposition Author(s): Nam, K.H.
Date: 2023-09-15 Method: X-RAY DIFFRACTION Resolution: 2.2 Å Organism(s): Gallus Gallus Sequences Data: 8WDI_A
Crystal structure analysis of tubulin and heterocyclic podophyllotoxins complex for anticancer agents Deposition Author(s): Bi, J. , Zhao, W.
Date: 2023-10-04 Method: X-RAY DIFFRACTION Resolution: 2.89 Å Organism(s): Gallus Gallus , Rattus Norvegicus , Sus Scrofa Sequences Data: 8WMO_A , 8WMO_C , 8WMO_B , 8WMO_D , 8WMO_E , 8WMO_F
Structural basis of tubulin and heterocyclic podophyllotoxins complex for anticancer agents with dual-binding sites Deposition Author(s): Bi, J. , Zhao, W.
Date: 2023-10-04 Method: X-RAY DIFFRACTION Resolution: 2.7 Å Organism(s): Gallus Gallus , Rattus Norvegicus , Sus Scrofa Sequences Data: 8WMU_A , 8WMU_C , 8WMU_B , 8WMU_D , 8WMU_E , 8WMU_F
Dark state sfx structure of hen egg white lysozyme microcrystals immobilized with a mn carbonyl complex at rt. Deposition Author(s): Abe, S. , Asanuma, A. , Hishikawa, Y. , Iwata, S. , Kang, J. , Kojima, M. , Luo, F. , Maity, B. , Nakane, T. , Nakasuji, Y. , Nango, E. , Noya, H. , Owada, S. , Shigeta, Y. , Shoji, M. , Tanaka, J. , Tanaka, R. , Thuc, T.T. , Tian, J. , Tono, K. , Ueno, T. , Yao, X.
Date: 2023-11-01 Method: X-RAY DIFFRACTION Resolution: 1.6 Å Organism(s): Gallus Gallus Sequences Data: 8WZF_A
Sfx structure of an mn-carbonyl complex immobilized in hen egg white lysozyme microcrystals, 10 ns after photoexcitation at rt. Deposition Author(s): Abe, S. , Asanuma, A. , Hishikawa, Y. , Iwata, S. , Kang, J. , Kojima, M. , Luo, F. , Maity, B. , Nakane, T. , Nakasuji, Y. , Nango, E. , Noya, H. , Owada, S. , Shigeta, Y. , Shoji, M. , Tanaka, J. , Tanaka, R. , Thuc, T.T. , Tian, J. , Tono, K. , Ueno, T. , Yao, X.
Date: 2023-11-01 Method: X-RAY DIFFRACTION Resolution: 1.6 Å Organism(s): Gallus Gallus Sequences Data: 8WZG_A
Sfx structure of an mn-carbonyl complex immobilized in hen egg white lysozyme microcrystals, 100 ns after photoexcitation at rt. Deposition Author(s): Abe, S. , Asanuma, A. , Hishikawa, Y. , Iwata, S. , Kang, J. , Kojima, M. , Luo, F. , Maity, B. , Nakane, T. , Nakasuji, Y. , Nango, E. , Noya, H. , Owada, S. , Shigeta, Y. , Shoji, M. , Tanaka, J. , Tanaka, R. , Thuc, T.T. , Tian, J. , Tono, K. , Ueno, T. , Yao, X.
Date: 2023-11-02 Method: X-RAY DIFFRACTION Resolution: 1.6 Å Organism(s): Gallus Gallus Sequences Data: 8WZR_A
Sfx structure of an mn-carbonyl complex immobilized in hen egg white lysozyme microcrystals, 1 microsecond after photoexcitation at rt. Deposition Author(s): Abe, S. , Asanuma, A. , Hishikawa, Y. , Iwata, S. , Kang, J. , Kojima, M. , Luo, F. , Maity, B. , Nakane, T. , Nakasuji, Y. , Nango, E. , Noya, H. , Owada, S. , Shigeta, Y. , Shoji, M. , Tanaka, J. , Tanaka, R. , Thuc, T.T. , Tian, J. , Tono, K. , Ueno, T. , Yao, X.
Date: 2023-11-02 Method: X-RAY DIFFRACTION Resolution: 1.6 Å Organism(s): Gallus Gallus Sequences Data: 8WZT_A
Sfx structure of an mn-carbonyl complex immobilized in hen egg white lysozyme microcrystals, 1 microsecond after photoexcitation with 40 microjoules laser intensity at rt. Deposition Author(s): Abe, S. , Asanuma, A. , Hishikawa, Y. , Iwata, S. , Kang, J. , Kojima, M. , Luo, F. , Maity, B. , Nakane, T. , Nakasuji, Y. , Nango, E. , Noya, H. , Owada, S. , Shigeta, Y. , Shoji, M. , Tanaka, J. , Tanaka, R. , Thuc, T.T. , Tian, J. , Tono, K. , Ueno, T. , Yao, X.
Date: 2023-11-02 Method: X-RAY DIFFRACTION Resolution: 1.6 Å Organism(s): Gallus Gallus Sequences Data: 8WZV_A
Crystal structure of iron-bound recombinant ovotransferrin n-lobe at 0.93 angstrom resolution Deposition Author(s): Mikami, B. , Mizutani, K. , Toyoda, M.
Date: 2023-11-13 Method: X-RAY DIFFRACTION Resolution: 0.93 Å Organism(s): Gallus Gallus Sequences Data: 8X3H_A
Structural basis for the linker histone h5-nucleosome binding and chromatin compaction Deposition Author(s): Li, W.Y. , Song, F. , Zhu, P.
Date: 2023-12-22 Method: ELECTRON MICROSCOPY Resolution: 3.6 Å Organism(s): Gallus Gallus , Synthetic Construct , Xenopus Laevis Sequences Data: 8XJV_AU , 8XJV_AV , 8XJV_A , 8XJV_B , 8XJV_C , 8XJV_D , 8XJV_E , 8XJV_F , 8XJV_G , 8XJV_H , 8XJV_I , 8XJV_K , 8XJV_L , 8XJV_AJ , 8XJV_AK , 8XJV_AL , 8XJV_AM , 8XJV_AN , 8XJV_AO , 8XJV_AP , 8XJV_AQ , 8XJV_AR , 8XJV_AS , 8XJV_AT , 8XJV_AE , 8XJV_J , 8XJV_M , 8XJV_N , 8XJV_O , 8XJV_P , 8XJV_Q , 8XJV_R , 8XJV_S , 8XJV_T , 8XJV_U , 8XJV_V , 8XJV_W , 8XJV_AW , 8XJV_AX , 8XJV_AY , 8XJV_AZ , 8XJV_AA , 8XJV_AB , 8XJV_AC , 8XJV_AD , 8XJV_AF , 8XJV_AG , 8XJV_X , 8XJV_Y , 8XJV_Z , 8XJV_0 , 8XJV_1 , 8XJV_2 , 8XJV_3 , 8XJV_4 , 8XJV_5 , 8XJV_6 , 8XJV_7 , 8XJV_8 , 8XJV_9 , 8XJV_CD , 8XJV_A2 , 8XJV_A3 , 8XJV_A4 , 8XJV_A5 , 8XJV_A6 , 8XJV_A7 , 8XJV_A8 , 8XJV_A9 , 8XJV_AH , 8XJV_AI