PDB Chemical Component G3P

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 G3P

Atom I Atom J Distance (Experimental Model) Distance (Ideal Model)
O1 C1 1.406 1.429
C1 C2 1.504 1.530
C2 O2 1.395 1.429
C2 C3 1.558 1.529
C3 O1P 1.453 1.429
O1P P 1.668 1.610
O4P P 1.529 1.610
O2P P 1.518 1.481
O3P P 1.530 1.609
O1 HO1 0.950 0.967
C1 H11 1.100 1.090
C1 H12 1.100 1.090
C2 H2 1.100 1.090
O2 HO2 0.950 0.967
C3 H31 1.100 1.090
C3 H32 1.100 1.091
O3P HOP3 0.950 0.968
O4P HOP4 0.950 0.966

Bond Angles for G3P

Atom I Atom J Atom K Angle (Experimental Model) Angle (Ideal Model)
O1 C1 C2 109.0 109.5
C1 O1 HO1 109.5 114.0
O1 C1 H11 109.6 109.5
O1 C1 H12 109.6 109.5
C1 C2 O2 105.5 109.5
C1 C2 C3 109.5 109.5
C2 C1 H11 109.5 109.5
C2 C1 H12 109.6 109.5
C1 C2 H2 111.4 109.5
O2 C2 C3 106.2 109.5
O2 C2 H2 113.2 109.4
C2 O2 HO2 109.5 114.0
C2 C3 O1P 111.3 109.5
C3 C2 H2 110.6 109.5
C2 C3 H31 109.0 109.5
C2 C3 H32 109.0 109.4
C3 O1P P 121.2 123.0
O1P C3 H31 109.0 109.5
O1P C3 H32 109.0 109.5
O1P P O4P 110.1 109.5
O1P P O2P 108.6 109.5
O1P P O3P 111.6 109.5
O4P P O2P 106.3 109.4
O4P P O3P 107.4 109.5
P O4P HOP4 109.5 114.0
O2P P O3P 112.8 109.5
P O3P HOP3 109.5 114.0
H11 C1 H12 109.5 109.5
H31 C3 H32 109.5 109.4

Torsion Angles for G3P

Atom I Atom J Atom K Atom L Angle (Experimental Model) Angle (Ideal Model)
O1 C1 C2 O2 103.6 65.0
O1 C1 C2 C3 217.6 185.0
C2 C1 O1 H11 240.1 240.0
C2 C1 O1 H12 119.9 120.0
O1 C1 C2 H2 340.4 305.1
H11 C1 O1 H12 239.8 240.0
C2 C1 O1 HO1 180.0 180.0
O1 C1 C2 H11 119.9 120.0
O1 C1 C2 H12 240.1 240.0
O2 C2 C1 C3 246.0 240.0
O2 C2 C1 H2 123.3 119.9
C1 C2 O2 HO2 180.0 60.0
C1 C2 C3 O1P 195.6 175.0
C3 C2 C1 H2 237.2 239.9
C1 C2 C3 H31 315.9 295.1
C1 C2 C3 H32 75.3 55.0
H11 C1 C2 H12 120.1 120.0
C1 C2 O2 C3 116.2 120.1
O2 C2 C1 H11 343.7 305.0
O2 C2 C1 H12 223.6 185.0
C1 C2 O2 H2 237.9 240.1
O2 C2 C3 O1P 309.1 295.0
C3 C2 O2 H2 121.6 120.0
O2 C2 C3 H31 69.4 55.1
O2 C2 C3 H32 188.9 175.0
C1 C2 C3 O2 246.5 240.0
C3 C2 C1 H11 97.7 65.0
C3 C2 C1 H12 337.6 305.0
C1 C2 C3 H2 123.2 120.0
O2 C2 C3 H2 236.8 240.1
C3 C2 O2 HO2 63.7 300.0
C2 C3 O1P P 189.6 180.0
O1P C3 C2 H31 239.7 239.9
O1P C3 C2 H32 120.3 120.0
H31 C3 C2 H32 240.6 240.1
O1P C3 C2 H2 72.3 54.9
C2 C3 O1P H31 120.3 120.1
C2 C3 O1P H32 239.7 240.0
C3 O1P P O4P 183.0 185.0
C3 O1P P O2P 299.0 305.0
C3 O1P P O3P 63.9 65.0
H31 C3 O1P H32 119.4 120.0
P O1P C3 H31 69.3 60.0
P O1P C3 H32 309.8 300.0
O4P P O1P O2P 244.1 240.1
O4P P O1P O3P 119.1 120.1
O1P P O4P HOP4 117.4 180.0
O2P P O1P O3P 235.0 240.0
O1P P O3P HOP3 237.4 60.0
O1P P O4P O2P 117.4 120.0
O1P P O4P O3P 238.4 239.9
O2P P O4P O3P 121.0 120.0
O4P P O3P HOP3 116.7 300.0
O1P P O2P O4P 241.6 240.0
O1P P O2P O3P 124.2 120.0
O4P P O2P O3P 242.6 240.0
O2P P O4P HOP4 0.0 60.0
O2P P O3P HOP3 360.0 180.1
O1P P O3P O4P 120.7 120.1
O1P P O3P O2P 237.5 240.0
O4P P O3P O2P 116.8 119.9
O3P P O4P HOP4 239.0 300.1
HO1 O1 C1 C2 180.0 180.0
HO1 O1 C1 H11 299.9 300.0
HO1 O1 C1 H12 60.1 60.0
O1 C1 H11 C2 240.4 240.0
H11 C1 O1 HO1 299.9 300.0
O1 C1 H11 H12 120.2 120.0
H11 C1 C2 O2 343.7 305.0
H11 C1 C2 C3 97.7 65.0
C2 C1 H11 H12 239.8 240.0
H11 C1 C2 H2 220.4 185.0
O1 C1 H12 C2 119.6 120.0
H12 C1 O1 HO1 60.1 60.0
O1 C1 H12 H11 239.8 240.0
H12 C1 C2 O2 223.6 185.0
H12 C1 C2 C3 337.6 305.0
C2 C1 H12 H11 120.2 120.0
H12 C1 C2 H2 100.3 65.1
C1 C2 H2 O2 118.8 119.9
C1 C2 H2 C3 237.9 239.9
H2 C2 C1 H11 220.4 185.0
H2 C2 C1 H12 100.3 65.1
O2 C2 H2 C3 119.1 120.0
H2 C2 O2 HO2 302.1 180.0
H2 C2 C3 O1P 72.3 54.9
H2 C2 C3 H31 192.6 175.0
H2 C2 C3 H32 312.1 294.9
HO2 O2 C2 C3 63.7 300.0
HO2 O2 C2 H2 302.1 180.0
C2 C3 H31 O1P 238.3 239.9
H31 C3 C2 H2 192.6 175.0
C2 C3 H31 H32 119.2 119.9
H31 C3 O1P P 69.3 60.0
O1P C3 H31 H32 240.9 240.0
C2 C3 H32 O1P 121.7 120.0
H32 C3 C2 H2 312.1 294.9
C2 C3 H32 H31 240.8 240.0
H32 C3 O1P P 309.8 300.0
O1P C3 H32 H31 119.1 120.0
HOP4 O4P P O2P 0.0 60.0
HOP4 O4P P O3P 239.0 300.1