PDB Chemical Component ABN

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 ABN

Atom I Atom J Distance (Experimental Model) Distance (Ideal Model)
N C 1.328 1.468
N HN1 1.021 1.009
N HN2 1.020 1.009
C C1 1.413 1.507
C H1 1.115 1.090
C H2A 1.115 1.090
C1 C2 1.428 1.382
C1 C6 1.422 1.382
C2 C3 1.412 1.382
C2 H2 1.103 1.079
C3 C4 1.392 1.382
C3 H3 1.103 1.080
C4 C5 1.406 1.382
C4 H4 1.102 1.080
C5 C6 1.414 1.383
C5 H5 1.103 1.080
C6 H6 1.104 1.080

Bond Angles for ABN

Atom I Atom J Atom K Angle (Experimental Model) Angle (Ideal Model)
C N HN1 112.5 106.7
C N HN2 111.1 106.7
N C C1 112.5 109.5
N C H1 111.1 109.5
N C H2A 111.1 109.5
HN1 N HN2 111.1 106.7
C1 C H1 111.1 109.4
C1 C H2A 111.1 109.5
C C1 C2 122.1 120.0
C C1 C6 121.9 120.0
H1 C H2A 99.2 109.5
C2 C1 C6 116.0 120.0
C1 C2 C3 122.7 120.0
C1 C2 H2 119.1 120.0
C1 C6 C5 121.2 120.0
C1 C6 H6 119.7 120.1
C3 C2 H2 118.1 120.0
C2 C3 C4 119.7 120.0
C2 C3 H3 120.8 120.0
C4 C3 H3 119.5 120.0
C3 C4 C5 119.3 120.0
C3 C4 H4 119.9 120.0
C5 C4 H4 120.8 120.0
C4 C5 C6 121.0 120.0
C4 C5 H5 119.2 120.0
C6 C5 H5 119.7 120.0
C5 C6 H6 119.1 120.0

Torsion Angles for ABN

Atom I Atom J Atom K Atom L Angle (Experimental Model) Angle (Ideal Model)
HN1 N C HN2 125.2 113.8
C1 C N H1 234.7 240.0
C1 C N H2A 125.3 120.0
N C C1 C2 120.7 90.0
N C C1 C6 300.7 269.7
H1 C N H2A 250.6 240.0
C N HN1 HN2 234.8 246.2
HN1 N C C1 180.0 293.8
HN1 N C H1 305.3 53.8
HN1 N C H2A 54.7 173.8
C N HN2 HN1 126.0 113.8
HN2 N C C1 54.8 180.0
HN2 N C H1 180.0 300.0
HN2 N C H2A 289.5 60.0
C1 C N HN1 180.0 293.8
C1 C N HN2 54.8 180.0
N C C1 H1 125.3 120.0
N C C1 H2A 234.8 240.0
H1 C C1 H2A 109.5 120.0
C2 C1 C C6 180.1 180.2
C C1 C2 C3 179.9 180.0
C C1 C2 H2 360.0 0.0
C C1 C6 C5 180.0 179.8
C C1 C6 H6 0.1 0.2
H1 C N HN1 305.3 53.8
H1 C N HN2 180.0 300.0
N C H1 C1 234.0 240.0
N C H1 H2A 116.9 120.0
C1 C H1 H2A 243.0 240.0
H1 C C1 C2 355.5 330.0
H1 C C1 C6 175.4 149.7
H2A C N HN1 54.7 173.8
H2A C N HN2 289.5 60.0
N C H2A C1 126.0 120.0
N C H2A H1 243.0 240.0
C1 C H2A H1 117.0 119.9
H2A C C1 C2 246.0 210.0
H2A C C1 C6 65.9 29.8
C2 C1 C H1 355.5 330.0
C2 C1 C H2A 246.0 210.0
C C1 C2 C6 179.9 179.8
C2 C1 C6 C5 360.0 359.6
C2 C1 C6 H6 180.0 180.0
C3 C2 C1 H2 180.0 179.9
C1 C2 C3 C4 359.9 0.1
C1 C2 C3 H3 180.0 180.0
C6 C1 C H1 175.4 149.7
C6 C1 C H2A 65.9 29.8
C C1 C6 C2 180.1 180.2
C6 C1 C2 C3 0.0 0.2
C6 C1 C2 H2 180.0 180.2
C4 C5 C6 C1 0.1 0.4
C1 C6 C5 H5 180.1 180.3
C5 C6 C1 H6 180.0 179.6
C3 C2 C1 C6 0.0 0.2
C1 C2 C3 H2 180.0 180.1
C4 C3 C2 H3 180.0 180.1
C2 C3 C4 C5 0.1 359.9
C2 C3 C4 H4 180.1 179.9
H2 C2 C1 C6 180.0 180.2
C1 C2 H2 C3 180.0 179.9
H2 C2 C3 C4 179.9 180.0
H2 C2 C3 H3 360.0 359.9
C4 C3 C2 H2 179.9 180.0
C2 C3 C4 H3 180.0 179.9
C5 C4 C3 H4 180.0 180.0
C3 C4 C5 C6 359.9 359.9
C3 C4 C5 H5 179.9 180.0
H3 C3 C2 H2 360.0 359.9
C2 C3 H3 C4 180.0 180.1
H3 C3 C4 C5 180.1 180.0
H3 C3 C4 H4 0.1 0.0
C1 C6 C5 C4 0.1 0.4
C5 C4 C3 H3 180.1 180.0
C3 C4 C5 H4 180.0 180.0
C6 C5 C4 H5 180.0 179.9
C4 C5 C6 H6 180.1 179.9
H4 C4 C3 H3 0.1 0.0
C3 C4 H4 C5 180.0 180.0
H4 C4 C5 C6 179.9 179.9
H4 C4 C5 H5 359.9 359.9
C1 C6 C5 H6 180.0 180.4
C6 C5 C4 H4 179.9 179.9
C4 C5 C6 H5 180.0 180.1
H5 C5 C4 H4 359.9 359.9
C4 C5 H5 C6 180.0 179.9
H5 C5 C6 H6 0.1 359.9
C1 C6 H6 C5 180.0 179.6
H6 C6 C5 H5 0.1 359.9