PDB Chemical Component XQG

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 XQG

Atom I Atom J Distance (Experimental Model) Distance (Ideal Model)
C6 C5 1.387 1.406
C6 N1 1.341 1.330
C6 S1 1.750 1.763
C5 C4 1.382 1.404
C5 N7 1.328 1.354
C4 N3 1.339 1.330
C4 N9 1.329 1.372
C2 N1 1.323 1.320
C2 N3 1.325 1.316
C8 N9 1.333 1.364
C8 N7 1.333 1.301
C11 S1 1.780 1.810
N9 H9 1.000 0.970
C2 H2 1.080 1.080
C8 H8 1.080 1.081
C11 H111 1.100 1.090
C11 H112 1.100 1.090
C11 H113 1.100 1.090

Bond Angles for XQG

Atom I Atom J Atom K Angle (Experimental Model) Angle (Ideal Model)
C5 C6 N1 118.9 118.5
C5 C6 S1 120.6 120.7
C6 C5 C4 118.7 118.1
C6 C5 N7 133.7 134.7
N1 C6 S1 120.6 120.8
C6 N1 C2 120.8 121.1
C6 S1 C11 107.0 100.0
C4 C5 N7 107.6 107.1
C5 C4 N3 119.5 119.1
C5 C4 N9 107.2 106.0
C5 N7 C8 107.9 109.5
N3 C4 N9 133.4 134.9
C4 N3 C2 120.4 120.7
C4 N9 C8 108.1 107.4
C4 N9 H9 125.9 126.3
N1 C2 N3 121.7 122.5
N1 C2 H2 119.2 118.7
N3 C2 H2 119.1 118.8
N9 C8 N7 109.3 109.9
C8 N9 H9 126.0 126.3
N9 C8 H8 125.4 125.0
N7 C8 H8 125.3 125.1
S1 C11 H111 109.5 109.5
S1 C11 H112 109.4 109.5
S1 C11 H113 109.4 109.5
H111 C11 H112 109.5 109.4
H111 C11 H113 109.5 109.5
H112 C11 H113 109.5 109.5

Torsion Angles for XQG

Atom I Atom J Atom K Atom L Angle (Experimental Model) Angle (Ideal Model)
N1 C6 C5 S1 179.9 180.2
C5 C6 N1 C2 0.0 0.0
C5 C6 S1 C11 182.7 180.0
C4 C5 C6 N7 179.9 180.0
C6 C5 C4 N3 0.0 0.0
C6 C5 C4 N9 180.0 180.0
C6 C5 N7 C8 180.0 180.0
C5 C6 N1 S1 180.1 179.8
N1 C6 C5 C4 359.9 0.0
N1 C6 C5 N7 180.0 180.0
N1 C6 S1 C11 2.8 359.8
C6 N1 C2 N3 0.0 359.9
C6 N1 C2 H2 180.0 180.0
C5 C6 S1 N1 179.9 180.3
S1 C6 C5 C4 180.0 179.8
S1 C6 C5 N7 0.1 359.7
S1 C6 N1 C2 180.0 180.3
C6 S1 C11 H111 165.2 300.0
C6 S1 C11 H112 285.2 59.9
C6 S1 C11 H113 45.2 180.0
C4 C5 C6 N1 359.9 0.0
C4 C5 C6 S1 180.0 179.8
C6 C5 C4 N7 180.1 180.0
C4 C5 N7 C8 0.0 360.0
N3 C4 C5 N9 180.0 180.1
C5 C4 N3 C2 0.0 359.9
C5 C4 N9 C8 0.0 0.0
C5 C4 N9 H9 180.0 179.9
N7 C5 C6 N1 180.0 180.0
N7 C5 C6 S1 0.1 359.7
C6 C5 N7 C4 179.9 180.0
N7 C5 C4 N3 180.0 180.1
N7 C5 C4 N9 360.0 360.0
N9 C8 N7 C5 360.0 0.1
C5 N7 C8 H8 180.0 179.9
N3 C4 C5 N7 180.0 180.1
C5 C4 N3 N9 180.0 179.9
N3 C4 N9 C8 180.0 180.0
N3 C4 N9 H9 360.0 359.9
N1 C2 N3 C4 360.0 0.1
C4 N3 C2 H2 180.0 180.1
N9 C4 C5 N7 360.0 360.0
C5 C4 N9 N3 180.0 180.1
N9 C4 N3 C2 180.0 180.0
C4 N9 C8 N7 360.0 359.9
C8 N9 C4 H9 180.0 180.1
C4 N9 C8 H8 180.0 180.0
C2 N1 C6 S1 180.0 180.3
C4 N3 C2 N1 360.0 0.1
N3 C2 N1 H2 180.0 180.0
C2 N3 C4 N9 180.0 180.0
N1 C2 N3 H2 180.0 180.0
C5 N7 C8 N9 360.0 0.1
C4 N9 C8 H9 180.0 179.9
N7 C8 N9 H8 180.0 179.9
N7 C8 N9 H9 180.0 180.0
N9 C8 N7 H8 180.0 180.1
H111 C11 S1 H112 240.0 240.1
H111 C11 S1 H113 120.0 120.0
H112 C11 S1 H113 240.0 239.9
C4 N9 H9 C8 180.0 180.1
H9 N9 C8 N7 180.0 180.0
H9 N9 C8 H8 360.0 0.2
N1 C2 H2 N3 180.0 180.0
N9 C8 H8 N7 180.0 179.9
H8 C8 N9 H9 360.0 0.2
S1 C11 H111 H112 120.0 120.0
S1 C11 H111 H113 240.0 240.0
H112 C11 H111 H113 120.1 120.0
S1 C11 H112 H111 240.0 240.1
S1 C11 H112 H113 120.0 120.1
H111 C11 H112 H113 240.0 240.0
S1 C11 H113 H111 120.0 120.0
S1 C11 H113 H112 240.0 239.9
H111 C11 H113 H112 120.0 119.9