PDB Chemical Component TLA

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 TLA

Atom I Atom J Distance (Experimental Model) Distance (Ideal Model)
O1 C1 1.251 1.207
O11 C1 1.280 1.342
O11 H11 0.949 0.967
C1 C2 1.536 1.507
C2 O2 1.439 1.428
C2 C3 1.533 1.529
C2 H2 1.115 1.089
O2 HA 0.950 0.967
C3 O3 1.429 1.428
C3 C4 1.529 1.507
C3 H3 1.114 1.090
O3 HB 0.950 0.967
C4 O4 1.250 1.207
C4 O41 1.290 1.342
O41 H41 0.950 0.967

Bond Angles for TLA

Atom I Atom J Atom K Angle (Experimental Model) Angle (Ideal Model)
O1 C1 O11 124.5 120.0
O1 C1 C2 123.4 120.0
C1 O11 H11 124.5 120.0
O11 C1 C2 112.1 120.0
C1 C2 O2 106.6 109.4
C1 C2 C3 109.6 109.4
C1 C2 H2 109.4 109.5
O2 C2 C3 112.3 109.5
O2 C2 H2 109.4 109.5
C2 O2 HA 106.6 106.8
C3 C2 H2 109.4 109.5
C2 C3 O3 110.1 109.5
C2 C3 C4 112.8 109.5
C2 C3 H3 109.4 109.4
O3 C3 C4 105.5 109.5
O3 C3 H3 109.4 109.5
C3 O3 HB 110.1 106.8
C4 C3 H3 109.4 109.5
C3 C4 O4 114.1 120.0
C3 C4 O41 122.7 120.0
O4 C4 O41 123.1 120.0
C4 O41 H41 122.8 120.0

Torsion Angles for TLA

Atom I Atom J Atom K Atom L Angle (Experimental Model) Angle (Ideal Model)
O1 C1 O11 H11 180.1 0.1
O11 C1 O1 C2 179.3 179.9
O1 C1 C2 O2 161.7 359.9
O1 C1 C2 C3 39.9 240.0
O1 C1 C2 H2 279.9 120.0
O1 C1 O11 C2 180.6 180.1
O11 C1 C2 O2 342.3 180.1
O11 C1 C2 C3 220.5 60.1
O11 C1 C2 H2 100.5 300.1
H11 O11 C1 C2 359.5 179.9
O1 C1 C2 O11 179.4 179.9
C2 C1 O11 H11 359.5 179.9
O2 C2 C1 C3 121.8 119.9
O2 C2 C1 H2 241.8 239.9
C1 C2 O2 HA 180.0 300.0
C3 C2 C1 H2 120.0 120.0
C1 C2 C3 O3 64.8 59.9
C1 C2 C3 C4 182.5 180.0
C1 C2 C3 H3 304.5 299.9
C1 C2 O2 C3 240.0 240.1
C1 C2 O2 H2 118.2 120.1
C3 C2 O2 H2 238.2 240.0
O2 C2 C3 O3 306.6 300.0
O2 C2 C3 C4 64.2 60.0
O2 C2 C3 H3 186.3 180.0
C1 C2 C3 O2 118.2 119.9
C1 C2 C3 H2 240.0 240.0
O2 C2 C3 H2 121.8 120.0
C3 C2 O2 HA 300.0 60.0
O3 C3 C2 C4 242.3 240.0
O3 C3 C2 H3 120.3 120.0
C2 C3 O3 HB 180.0 60.0
C4 C3 C2 H3 237.9 240.0
C2 C3 C4 O4 252.3 240.0
C2 C3 C4 O41 72.7 60.0
C1 C2 H2 O2 243.6 240.0
C1 C2 H2 C3 120.1 120.0
O2 C2 H2 C3 236.5 240.0
H2 C2 O2 HA 61.8 180.0
H2 C2 C3 O3 184.8 180.0
H2 C2 C3 C4 302.4 300.0
H2 C2 C3 H3 64.5 60.0
HA O2 C2 C3 300.0 60.0
HA O2 C2 H2 61.8 180.0
O3 C3 C2 H2 184.8 180.0
C2 C3 O3 C4 122.1 120.0
C2 C3 O3 H3 239.7 240.0
C4 C3 O3 H3 117.6 120.0
O3 C3 C4 O4 12.6 0.0
O3 C3 C4 O41 193.0 180.0
C4 C3 C2 H2 302.4 300.0
C2 C3 C4 O3 239.7 240.0
C2 C3 C4 H3 122.1 119.9
O3 C3 C4 H3 242.4 240.0
C4 C3 O3 HB 57.9 300.0
O4 C4 C3 O41 179.6 180.0
C3 C4 O41 H41 180.0 180.0
H3 C3 C2 H2 64.5 60.0
C2 C3 H3 O3 120.7 120.0
C2 C3 H3 C4 235.9 240.0
O3 C3 H3 C4 115.2 120.0
H3 C3 O3 HB 300.3 180.0
H3 C3 C4 O4 130.2 120.0
H3 C3 C4 O41 310.7 300.0
HB O3 C3 C4 57.9 300.0
HB O3 C3 H3 300.3 180.0
O4 C4 C3 H3 130.2 120.0
C3 C4 O4 O41 180.4 180.0
O4 C4 O41 H41 0.5 0.0
O41 C4 C3 H3 310.7 300.0
C3 C4 O41 O4 179.5 180.0