|
107
|
370
|
9caeL |
Cryo-em structure of the reconstituted ruvbl lobe of the human tip60 complex (composite structure) |
|
176
|
1506
|
9caeA |
Cryo-em structure of the reconstituted ruvbl lobe of the human tip60 complex (composite structure) |
|
244
|
1981
|
9ca7A |
Cryo-em structure of human srcap-nucleosome complex in the fully-engaged state (composite structure) |
|
28
|
98
|
9caaU |
Cryo-em structure of human srcap-nucleosome complex in the pre-engaged state (composite structure) |
|
21
|
138
|
9cabD |
Cryo-em structure of human srcap-nucleosome complex in the encounter state (composite structure) |
|
21
|
138
|
9caaD |
Cryo-em structure of human srcap-nucleosome complex in the pre-engaged state (composite structure) |
|
29
|
103
|
9cabQ |
Cryo-em structure of human srcap-nucleosome complex in the encounter state (composite structure) |
|
119
|
444
|
9ca9E |
Cryo-em structure of the human srcap complex in the unbound state (composite structure) |
|
124
|
437
|
9cacE |
Cryo-em structure of the ruvbl lobe of the native human tip60 complex (composite structure) |
|
46
|
220
|
9cadA |
Cryo-em structure of the trrap lobe of the native human tip60 complex (composite structure) |
|
126
|
438
|
9caaF |
Cryo-em structure of human srcap-nucleosome complex in the pre-engaged state (composite structure) |
|
13
|
123
|
9caeB |
Cryo-em structure of the reconstituted ruvbl lobe of the human tip60 complex (composite structure) |
|
131
|
439
|
9cacF |
Cryo-em structure of the ruvbl lobe of the native human tip60 complex (composite structure) |
|
131
|
1330
|
9ca9A |
Cryo-em structure of the human srcap complex in the unbound state (composite structure) |
|
121
|
1330
|
9caaA |
Cryo-em structure of human srcap-nucleosome complex in the pre-engaged state (composite structure) |
|
242
|
1981
|
9ca8A |
Cryo-em structure of human srcap-nucleosome complex in the partially-engaged state (composite structure) |
|
54
|
213
|
9cacN |
Cryo-em structure of the ruvbl lobe of the native human tip60 complex (composite structure) |
|
26
|
79
|
9ca7V |
Cryo-em structure of human srcap-nucleosome complex in the fully-engaged state (composite structure) |
|
34
|
92
|
9ca7R |
Cryo-em structure of human srcap-nucleosome complex in the fully-engaged state (composite structure) |
|
18
|
138
|
9cacC |
Cryo-em structure of the ruvbl lobe of the native human tip60 complex (composite structure) |
|
34
|
92
|
9ca8R |
Cryo-em structure of human srcap-nucleosome complex in the partially-engaged state (composite structure) |
|
12
|
122
|
9ca9B |
Cryo-em structure of the human srcap complex in the unbound state (composite structure) |
|
125
|
438
|
9cabF |
Cryo-em structure of human srcap-nucleosome complex in the encounter state (composite structure) |
|
26
|
166
|
9cacB |
Cryo-em structure of the ruvbl lobe of the native human tip60 complex (composite structure) |
|
144
|
836
|
9q3gA |
Cryo-em structure of human ago1 in complex with guide rna |
|
25
|
80
|
9r5kB |
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. |
|
26
|
105
|
9r5sC |
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. |
|
148
|
1145
|
9r5sW |
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. |
|
25
|
105
|
9r5kC |
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. |
|
26
|
80
|
9r5sB |
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. |
|
25
|
80
|
9r5wB |
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. |
|
32
|
123
|
9vnoA |
The crystal structure of the ehd3 tandem phd-h3k4me1 complex. |
|
31
|
94
|
9r5sD |
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. |
|
28
|
96
|
9r5wA |
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. |
|
25
|
105
|
9r5wC |
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. |
|
27
|
94
|
9r5wD |
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. |
|
28
|
96
|
9r5kA |
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. |
|
28
|
92
|
9r5sA |
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. |
|
27
|
94
|
9r5kD |
Structural characterisation of chromatin remodelling intermediates supports linker dna dependent product inhibition as a mechanism for nucleosome spacing. |
|
0
|
9
|
9vnoB |
The crystal structure of the ehd3 tandem phd-h3k4me1 complex. |
|
9
|
23
|
9e7qA |
Structure of a coiled-coil peptide from c. elegans edc4 |
|
0
|
27
|
9wc1C |
The structure of arp module in ncbaf complex |
|
29
|
64
|
9wc1D |
The structure of arp module in ncbaf complex |
|
127
|
396
|
9upbB |
Structure of the human trex-2 bound to uap56 |
|
108
|
355
|
9upbA |
Structure of the human trex-2 bound to uap56 |
|
6
|
53
|
9upbC |
Structure of the human trex-2 bound to uap56 |
|
57
|
245
|
9upbD |
Structure of the human trex-2 bound to uap56 |
|
90
|
429
|
9uxcC |
The adp-bound structure of bcl7b-containing arp module of the human swi/snf complex |
|
0
|
26
|
9uxbD |
The apo structure of bcl7b-containing arp module of the human swi/snf complex |
|
98
|
428
|
9uxbC |
The apo structure of bcl7b-containing arp module of the human swi/snf complex |