PDB Chemical Component 0O3

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 0O3

Atom I Atom J Distance (Experimental Model) Distance (Ideal Model)
O19 P17 1.570 1.480
O14 P13 1.531 1.479
O16 P17 1.577 1.610
O16 P13 1.633 1.610
P17 O18 1.578 1.610
P17 O20 1.476 1.610
O15 P13 1.603 1.611
P13 O29 1.638 1.611
O3 C13 1.404 1.429
O29 C28 1.404 1.429
C13 C30 1.526 1.507
C1 C30 1.362 1.310
C30 C27 1.525 1.508
C28 C27 1.537 1.530
O20 H1 0.950 0.968
O18 H2 0.950 0.967
O15 H3 0.950 0.967
C28 H4 1.100 1.090
C28 H5 1.100 1.089
C27 H6 1.100 1.091
C27 H7 1.100 1.090
C1 H8 1.080 1.080
C1 H9 1.080 1.080
C13 H10 1.100 1.091
C13 H11 1.100 1.090
O3 H12 0.950 0.967

Bond Angles for 0O3

Atom I Atom J Atom K Angle (Experimental Model) Angle (Ideal Model)
O19 P17 O18 107.1 109.5
O14 P13 O29 105.8 109.5
O16 P13 O29 110.3 109.5
P17 O18 H2 109.5 114.0
P17 O20 H1 109.5 114.0
O15 P13 O29 109.4 109.4
P13 O29 C28 127.8 123.0
O3 C13 H10 110.4 109.5
O3 C13 H11 110.4 109.5
O29 C28 C27 104.1 109.4
O29 C28 H4 110.8 109.5
O29 C28 H5 110.8 109.4
C30 C27 H6 107.2 109.4
C30 C27 H7 107.1 109.4
C27 C28 H4 110.8 109.5
C27 C28 H5 110.8 109.5
C28 C27 H6 107.1 109.5
C28 C27 H7 107.1 109.5
H4 C28 H5 109.5 109.5
H6 C27 H7 109.5 109.5
H8 C1 H9 120.0 120.0
H10 C13 H11 109.5 109.4

Torsion Angles for 0O3

Atom I Atom J Atom K Atom L Angle (Experimental Model) Angle (Ideal Model)
O19 P17 O18 H2 360.0 180.0
O19 P17 O20 H1 360.0 300.0
O16 P13 O14 O29 244.2 240.0
O15 P13 O14 O29 121.1 120.0
O14 P13 O29 C28 313.2 54.9
O16 P17 O18 H2 253.4 300.0
O16 P17 O20 H1 120.5 180.0
O14 P13 O16 O29 112.6 120.1
O15 P13 O16 O29 237.4 240.0
O16 P13 O29 C28 64.0 175.0
O18 P17 O20 H1 236.8 60.0
O14 P13 O15 O29 240.9 240.0
O16 P13 O15 O29 123.1 120.0
O15 P13 O29 C28 188.4 295.0
P13 O29 C28 C27 275.1 180.1
P13 O29 C28 H4 34.3 300.1
P13 O29 C28 H5 156.0 60.1
H10 C13 O3 H11 238.8 120.0
C27 C28 O29 H4 240.8 240.0
C27 C28 O29 H5 119.1 120.0
O29 C28 C27 H6 9.7 300.0
O29 C28 C27 H7 252.3 60.1
H4 C28 O29 H5 238.3 240.0
C13 C30 C27 H6 325.2 155.0
C13 C30 C27 H7 82.6 35.0
C1 C30 C27 H6 148.3 335.0
C1 C30 C27 H7 265.8 215.0
C30 C27 C28 H4 11.9 60.0
C30 C27 C28 H5 250.2 299.9
C28 C27 C30 H6 238.7 120.0
C28 C27 C30 H7 121.3 240.0
H6 C27 C30 H7 242.6 119.9
O29 C28 C27 H4 119.1 120.0
O29 C28 C27 H5 240.8 240.1
C30 C27 C28 H6 121.3 240.0
C30 C27 C28 H7 238.7 120.0
H4 C28 C27 H5 121.7 120.1
H6 C27 C28 H7 117.4 239.9
H3 O15 P13 O29 119.1 300.0
O29 C28 H4 C27 245.0 240.0
O29 C28 H4 H5 122.5 120.0
C27 C28 H4 H5 237.5 239.9
H4 C28 C27 H6 250.6 180.0
H4 C28 C27 H7 133.2 300.1
O29 C28 H5 C27 115.0 119.9
O29 C28 H5 H4 237.5 240.0
C27 C28 H5 H4 122.5 120.1
H5 C28 C27 H6 128.9 59.9
H5 C28 C27 H7 11.5 180.0
C30 C27 H6 H7 115.9 240.1
H6 C27 C28 H4 250.6 180.0
H6 C27 C28 H5 128.9 59.9
C28 C27 H6 H7 244.2 120.1
C30 C27 H7 H6 244.1 119.9
H7 C27 C28 H4 133.2 300.1
H7 C27 C28 H5 11.5 180.0
C28 C27 H7 H6 115.8 239.9
O3 C13 H10 H11 121.8 240.0
O3 C13 H11 H10 238.2 120.0
H12 O3 C13 H10 299.4 60.0
H12 O3 C13 H11 60.6 300.0