S.c ino80 in complex with yeast 0/80 nucleosome, apo state Deposition Author(s): Cheng, Y.F. , Kaur, U. , Narlikar, G.J. , Wu, H.
Date: 2025-04-21 Method: ELECTRON MICROSCOPY Resolution: 3.2 Å Organism(s): Saccharomyces Cerevisiae , Xenopus Laevis , Synthetic Construct Sequences Data: 9OB1_I , 9OB1_B , 9OB1_F , 9OB1_C , 9OB1_G , 9OB1_D , 9OB1_H , 9OB1_J , 9OB1_Q , 9OB1_R , 9OB1_S , 9OB1_T , 9OB1_V , 9OB1_X , 9OB1_U , 9OB1_W , 9OB1_Y , 9OB1_Z , 9OB1_A , 9OB1_E
Symmetry-expanded reconstruction of augmin t-ii bonsai on the gtpgammas microtubule Deposition Author(s): Travis, S.M. , Zhang, R.
Date: 2025-05-12 Method: ELECTRON MICROSCOPY Resolution: 3.83 Å Organism(s): Bos Taurus , Xenopus Laevis Sequences Data: 9OLH_A , 9OLH_C , 9OLH_B , 9OLH_F , 9OLH_G , 9OLH_H
Nucleosome containing histone variant macroh2a Deposition Author(s): Sokolova, V. , Tan, D.
Date: 2025-07-16 Method: ELECTRON MICROSCOPY Resolution: 2.9 Å Organism(s): Homo Sapiens , Mus Musculus , Xenopus Laevis , Synthetic Construct Sequences Data: 9PM0_A , 9PM0_E , 9PM0_B , 9PM0_F , 9PM0_C , 9PM0_G , 9PM0_D , 9PM0_H , 9PM0_I , 9PM0_J , 9PM0_M , 9PM0_N
Composite map for cryo-em structure of dnmt3a2-dnmt3b3 tetramer bound to 167h3k36me2-nucleosome Deposition Author(s): Jones, P.A. , Worden, E.J. , Xie, X. , Zhou, X.E.
Date: 2025-08-25 Method: ELECTRON MICROSCOPY Resolution: 3.4 Å Organism(s): Homo Sapiens , Xenopus Laevis , Synthetic Construct Sequences Data: 9Q7U_A , 9Q7U_E , 9Q7U_B , 9Q7U_F , 9Q7U_C , 9Q7U_G , 9Q7U_D , 9Q7U_H , 9Q7U_I , 9Q7U_J , 9Q7U_V , 9Q7U_Z , 9Q7U_K , 9Q7U_L
Structure of the nucleosome-bound human bcl7a Deposition Author(s): Bergamin, E. , Martin, F.
Date: 2025-02-28 Method: ELECTRON MICROSCOPY Resolution: 2.95 Å Organism(s): Homo Sapiens , Xenopus Laevis Sequences Data: 9QAJ_A , 9QAJ_E , 9QAJ_B , 9QAJ_F , 9QAJ_C , 9QAJ_G , 9QAJ_D , 9QAJ_H , 9QAJ_I , 9QAJ_J , 9QAJ_K , 9QAJ_M , 9QAJ_L , 9QAJ_N
Cryo-em structure of the importin beta:importin7:histone h1.0 complex Deposition Author(s): Neumann, P.
Date: 2025-03-10 Method: ELECTRON MICROSCOPY Resolution: 6.2 Å Organism(s): Homo Sapiens , Xenopus Laevis Sequences Data: 9QEJ_A , 9QEJ_B , 9QEJ_C
Cryo-em structure of the mportin7:histone h1.0 complex Deposition Author(s): Dickmanns, A. , Neumann, P.
Date: 2025-03-11 Method: ELECTRON MICROSCOPY Resolution: 7.5 Å Organism(s): Homo Sapiens , Xenopus Laevis Sequences Data: 9QF0_A , 9QF0_C
M2 nucleosome Deposition Author(s): Hopfner, K.-P. , Kunert, F. , Lammens, K.
Date: 2025-03-17 Method: ELECTRON MICROSCOPY Resolution: 3.03 Å Organism(s): Xenopus Laevis , Xenopus Laevis Laevis Sequences Data: 9QIK_A , 9QIK_B , 9QIK_C , 9QIK_D , 9QIK_E , 9QIK_F , 9QIK_G , 9QIK_H , 9QIK_I , 9QIK_J
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. Deposition Author(s): Hughes, A. , Owen-Hughes, T.A. , Sundaramoorthy, R.
Date: 2025-05-09 Method: ELECTRON MICROSCOPY Resolution: 4.2 Å Organism(s): Xenopus Laevis , Synthetic Construct Sequences Data: 9R5K_I , 9R5K_J , 9R5K_A , 9R5K_E , 9R5K_B , 9R5K_F , 9R5K_C , 9R5K_G , 9R5K_D , 9R5K_H
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. Deposition Author(s): Hughes, A. , Owen-Hughes, T.A. , Sundaramoorthy, R.
Date: 2025-05-09 Method: ELECTRON MICROSCOPY Resolution: 3.8 Å Organism(s): Saccharomyces Cerevisiae , Xenopus Laevis , Synthetic Construct Sequences Data: 9R5S_I , 9R5S_J , 9R5S_A , 9R5S_E , 9R5S_B , 9R5S_F , 9R5S_C , 9R5S_G , 9R5S_D , 9R5S_H , 9R5S_W