|
22
|
78
|
9ogrB |
Cryo-em analysis of human h2a.z on methylated sat2r-p dna (v1) |
|
27
|
85
|
9ogrA |
Cryo-em analysis of human h2a.z on methylated sat2r-p dna (v1) |
|
30
|
89
|
9oh0D |
Cryo-em analysis of human h2a.z on methylated sat2r-p dna (v2) |
|
27
|
91
|
9ogzD |
Cryo-em analysis of human h2a.z on sat2r-p dna (v2) |
|
28
|
95
|
9oh0A |
Cryo-em analysis of human h2a.z on methylated sat2r-p dna (v2) |
|
28
|
96
|
9oh1C |
Cryo-em analysis of human h2a.z on 601l dna |
|
31
|
96
|
9oh1A |
Cryo-em analysis of human h2a.z on 601l dna |
|
29
|
90
|
9oh1D |
Cryo-em analysis of human h2a.z on 601l dna |
|
22
|
77
|
9ogzB |
Cryo-em analysis of human h2a.z on sat2r-p dna (v2) |
|
25
|
96
|
9ogrC |
Cryo-em analysis of human h2a.z on methylated sat2r-p dna (v1) |
|
27
|
97
|
9ogsA |
Cryo-em analysis of human h2a.z on sat2r-p dna (v1) |
|
23
|
79
|
9oh2B |
Cryo-em analysis of human h2a.z on methylated 601l dna |
|
32
|
89
|
9ogrD |
Cryo-em analysis of human h2a.z on methylated sat2r-p dna (v1) |
|
29
|
91
|
9ogsD |
Cryo-em analysis of human h2a.z on sat2r-p dna (v1) |
|
25
|
78
|
9oh1B |
Cryo-em analysis of human h2a.z on 601l dna |
|
29
|
101
|
9oh2C |
Cryo-em analysis of human h2a.z on methylated 601l dna |
|
27
|
97
|
9oh2A |
Cryo-em analysis of human h2a.z on methylated 601l dna |
|
28
|
91
|
9oh2D |
Cryo-em analysis of human h2a.z on methylated 601l dna |
|
26
|
90
|
9oh0C |
Cryo-em analysis of human h2a.z on methylated sat2r-p dna (v2) |
|
206
|
809
|
9nh8W |
Chd1-nucleosome complex (anchored state) |
|
28
|
108
|
9nh8C |
Chd1-nucleosome complex (anchored state) |
|
29
|
97
|
9nh8A |
Chd1-nucleosome complex (anchored state) |
|
30
|
95
|
9nh8D |
Chd1-nucleosome complex (anchored state) |
|
23
|
86
|
9nh8B |
Chd1-nucleosome complex (anchored state) |
|
29
|
91
|
9gmrD |
Sirt7-h3k36mtunucleosome complex |
|
26
|
104
|
9gmrC |
Sirt7-h3k36mtunucleosome complex |
|
74
|
353
|
9gmrK |
Sirt7-h3k36mtunucleosome complex |
|
30
|
97
|
9dwiA |
Dna polymerase beta bound to a nucleosome containing a 1-nt gap at shl-4.5 (state 3, composite) |
|
26
|
104
|
9gmkC |
Sirt7:h3k18dtu nucleosome complex |
|
27
|
110
|
9dwhC |
Dna polymerase beta bound to a nucleosome containing a 1-nt gap at shl-4.5 (state 2, composite) |
|
25
|
107
|
9dwlC |
Nucleosome containing a 1-nt gap at shl-5.5 |
|
24
|
110
|
9dwgC |
Dna polymerase beta bound to a nucleosome containing a 1-nt gap at shl-4.5 (state 1, composite) |
|
24
|
83
|
9gmrB |
Sirt7-h3k36mtunucleosome complex |
|
26
|
108
|
9dwfC |
Nucleosome containing a 1-nt gap at shl-4.5 |
|
22
|
80
|
9dwgB |
Dna polymerase beta bound to a nucleosome containing a 1-nt gap at shl-4.5 (state 1, composite) |
|
21
|
108
|
9dwmC |
Dna polymerase beta bound to a nucleosome containing a 1-nt gap at shl-5.5 |
|
99
|
325
|
9dwiL |
Dna polymerase beta bound to a nucleosome containing a 1-nt gap at shl-4.5 (state 3, composite) |
|
71
|
325
|
9dwmL |
Dna polymerase beta bound to a nucleosome containing a 1-nt gap at shl-5.5 |
|
27
|
110
|
9dwiC |
Dna polymerase beta bound to a nucleosome containing a 1-nt gap at shl-4.5 (state 3, composite) |
|
30
|
97
|
9dwjA |
Nucleosome containing a 1-nt gap at shl-3.5 |
|
107
|
325
|
9dwgL |
Dna polymerase beta bound to a nucleosome containing a 1-nt gap at shl-4.5 (state 1, composite) |
|
28
|
95
|
9gmkA |
Sirt7:h3k18dtu nucleosome complex |
|
35
|
92
|
9gmkD |
Sirt7:h3k18dtu nucleosome complex |
|
24
|
80
|
9dwfB |
Nucleosome containing a 1-nt gap at shl-4.5 |
|
36
|
93
|
9dwfD |
Nucleosome containing a 1-nt gap at shl-4.5 |
|
19
|
78
|
9dwmB |
Dna polymerase beta bound to a nucleosome containing a 1-nt gap at shl-5.5 |
|
32
|
93
|
9dwjD |
Nucleosome containing a 1-nt gap at shl-3.5 |
|
28
|
97
|
9dwgA |
Dna polymerase beta bound to a nucleosome containing a 1-nt gap at shl-4.5 (state 1, composite) |
|
26
|
106
|
9dwjC |
Nucleosome containing a 1-nt gap at shl-3.5 |
|
21
|
80
|
9dwkB |
Dna polymerase beta bound to a nucleosome containing a 1-nt gap at shl-3.5 |