PDB Chemical Component DOR

The following tables include covalent bond distance, bond angle and torsion angle values for the experimental model and ideal geometries stored in the definition for this chemical component.

Bond Distances for DOR

Atom I Atom J Distance (Experimental Model) Distance (Ideal Model)
O2 C2 1.229 1.215
C2 N1 1.329 1.343
C2 N3 1.342 1.344
N1 C6 1.448 1.465
N1 HN1 1.020 0.970
N3 C4 1.363 1.345
N3 HN3 1.020 0.971
C4 O4 1.237 1.213
C4 C5 1.520 1.508
C5 C6 1.523 1.530
C5 H51 1.115 1.090
C5 H52 1.115 1.090
C6 C7 1.494 1.507
C6 H6 1.116 1.090
C7 O72 1.243 1.343
C7 O71 1.244 1.209
O72 H72 0.951 0.967

Bond Angles for DOR

Atom I Atom J Atom K Angle (Experimental Model) Angle (Ideal Model)
O2 C2 N1 119.9 119.2
O2 C2 N3 121.3 119.2
N1 C2 N3 118.7 121.6
C2 N1 C6 120.6 120.9
C2 N1 HN1 108.2 119.6
C2 N3 C4 123.9 121.0
C2 N3 HN3 117.2 119.4
C6 N1 HN1 108.2 119.5
N1 C6 C5 110.4 109.5
N1 C6 C7 109.6 109.5
N1 C6 H6 108.6 109.5
C4 N3 HN3 118.9 119.5
N3 C4 O4 123.7 120.0
N3 C4 C5 118.8 120.0
O4 C4 C5 117.6 120.0
C4 C5 C6 109.8 109.2
C4 C5 H51 112.1 109.5
C4 C5 H52 112.1 109.5
C6 C5 H51 112.1 109.5
C6 C5 H52 112.1 109.5
C5 C6 C7 109.1 109.5
C5 C6 H6 109.2 109.4
H51 C5 H52 98.4 109.6
C7 C6 H6 110.0 109.5
C6 C7 O72 119.0 120.0
C6 C7 O71 117.3 120.0
O72 C7 O71 123.7 120.0
C7 O72 H72 119.0 120.0

Torsion Angles for DOR

Atom I Atom J Atom K Atom L Angle (Experimental Model) Angle (Ideal Model)
N1 C2 O2 N3 175.8 180.1
O2 C2 N1 C6 164.3 185.7
O2 C2 N1 HN1 39.1 5.6
O2 C2 N3 C4 167.1 192.0
O2 C2 N3 HN3 347.1 12.1
O2 C2 N1 N3 184.1 179.9
N1 C2 N3 C4 351.2 12.0
N1 C2 N3 HN3 171.3 192.0
C6 N1 C2 HN1 125.2 180.0
C2 N1 C6 C5 46.4 324.1
C2 N1 C6 C7 166.6 84.1
C2 N1 C6 H6 286.8 204.1
O2 C2 N3 N1 175.8 180.1
N3 C2 N1 C6 340.2 5.7
N3 C2 N1 HN1 215.0 185.7
C4 N3 C2 HN3 180.0 180.0
C2 N3 C4 O4 184.8 184.4
C2 N3 C4 C5 6.6 4.5
C6 N1 C2 N3 340.2 5.7
C2 N1 C6 HN1 234.7 180.0
C4 C5 C6 N1 316.5 46.7
N1 C6 C5 H51 81.7 166.6
N1 C6 C5 H52 191.2 286.8
C5 C6 N1 C7 239.9 240.0
C5 C6 N1 H6 119.7 120.0
C7 C6 N1 H6 239.8 240.0
N1 C6 C7 O72 178.3 160.0
N1 C6 C7 O71 358.3 340.0
HN1 N1 C2 N3 215.0 185.7
C2 N1 HN1 C6 132.3 180.0
HN1 N1 C6 C5 171.7 144.1
HN1 N1 C6 C7 291.8 264.2
HN1 N1 C6 H6 52.0 24.2
C2 N3 C4 HN3 180.0 180.0
O4 C4 N3 C5 178.3 180.0
N3 C4 C5 C6 20.6 325.8
N3 C4 C5 H51 255.4 205.9
N3 C4 C5 H52 145.9 85.7
C2 N3 HN3 C4 180.0 180.0
HN3 N3 C4 O4 4.8 4.4
HN3 N3 C4 C5 186.5 184.4
O4 C4 N3 HN3 4.8 4.4
N3 C4 O4 C5 181.7 180.0
O4 C4 C5 C6 202.2 145.8
O4 C4 C5 H51 77.0 25.9
O4 C4 C5 H52 327.5 265.7
N1 C6 C5 C4 316.5 46.7
C5 C4 N3 HN3 186.5 184.4
N3 C4 C5 O4 178.4 180.0
C6 C5 C4 H51 125.2 119.9
C6 C5 C4 H52 234.8 240.1
C4 C5 C6 C7 196.1 286.7
C4 C5 C6 H6 75.9 166.7
H51 C5 C4 H52 109.5 120.2
C5 C6 N1 HN1 171.7 144.1
N1 C6 C5 C7 120.4 120.1
N1 C6 C5 H6 240.7 240.0
C4 C5 C6 H51 234.8 240.1
C4 C5 C6 H52 125.3 119.9
H51 C5 C6 H52 250.5 239.8
C7 C6 C5 H6 120.2 120.0
C5 C6 C7 O72 299.3 280.1
C5 C6 C7 O71 119.2 100.0
C4 C5 H51 C6 124.0 119.7
C4 C5 H51 H52 242.0 239.8
C6 C5 H51 H52 118.0 120.2
H51 C5 C6 C7 321.3 46.5
H51 C5 C6 H6 201.1 286.6
C4 C5 H52 C6 236.0 240.3
C4 C5 H52 H51 118.0 120.1
C6 C5 H52 H51 242.0 239.8
H52 C5 C6 C7 70.8 166.8
H52 C5 C6 H6 310.6 46.8
C7 C6 N1 HN1 291.8 264.2
N1 C6 C7 C5 239.1 239.9
N1 C6 C7 H6 119.4 120.0
C7 C6 C5 H51 321.3 46.5
C7 C6 C5 H52 70.8 166.8
C5 C6 C7 H6 240.3 240.1
O72 C7 C6 O71 180.0 180.0
C6 C7 O72 H72 180.0 180.0
H6 C6 N1 HN1 52.0 24.2
N1 C6 H6 C5 120.4 120.0
N1 C6 H6 C7 240.1 240.0
H6 C6 C5 H51 201.1 286.6
H6 C6 C5 H52 310.6 46.8
C5 C6 H6 C7 119.6 120.0
H6 C6 C7 O72 58.9 40.0
H6 C6 C7 O71 238.9 220.0
O72 C7 C6 H6 58.9 40.0
C6 C7 O72 O71 180.0 180.0
O71 C7 C6 H6 238.9 220.0
C6 C7 O71 O72 180.0 180.0
O71 C7 O72 H72 0.0 360.0
H72 O72 C7 O71 0.0 360.0