PDB Chemical Component MCT

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 MCT

Atom I Atom J Distance (Experimental Model) Distance (Ideal Model)
C1 C2 1.404 1.382
C1 C6 1.376 1.382
C1 C 1.535 1.507
C2 C3 1.411 1.385
C2 H2 1.102 1.080
C3 O3 1.372 1.360
C3 C4 1.385 1.390
O3 HO3 0.949 0.966
C4 O4 1.373 1.361
C4 C5 1.374 1.386
O4 HO4 0.950 0.966
C5 C6 1.503 1.382
C5 H5 1.104 1.080
C6 H6 1.104 1.080
C H1 1.116 1.089
C H2A 1.115 1.090
C H3 1.115 1.089

Bond Angles for MCT

Atom I Atom J Atom K Angle (Experimental Model) Angle (Ideal Model)
C2 C1 C6 121.4 120.1
C2 C1 C 118.9 119.9
C1 C2 C3 118.7 120.0
C1 C2 H2 120.4 120.0
C6 C1 C 119.7 119.9
C1 C6 C5 119.0 120.2
C1 C6 H6 116.3 119.9
C1 C H1 118.9 109.5
C1 C H2A 108.9 109.5
C1 C H3 108.9 109.5
C3 C2 H2 121.0 120.1
C2 C3 O3 118.8 120.0
C2 C3 C4 122.0 119.9
O3 C3 C4 119.2 120.1
C3 O3 HO3 118.8 106.8
C3 C4 O4 119.3 120.1
C3 C4 C5 120.9 119.9
O4 C4 C5 119.8 120.0
C4 O4 HO4 119.3 106.8
C4 C5 C6 118.2 119.9
C4 C5 H5 116.7 120.0
C6 C5 H5 125.1 120.0
C5 C6 H6 124.7 119.9
H1 C H2A 108.8 109.5
H1 C H3 108.7 109.4
H2A C H3 101.3 109.4

Torsion Angles for MCT

Atom I Atom J Atom K Atom L Angle (Experimental Model) Angle (Ideal Model)
C6 C1 C2 C 179.8 179.6
C2 C1 C6 C5 0.2 0.3
C2 C1 C6 H6 180.2 180.3
C2 C1 C H1 180.0 269.7
C2 C1 C H2A 305.2 29.7
C2 C1 C H3 54.8 149.7
C3 C2 C1 H2 180.0 179.5
C1 C2 C3 O3 180.1 180.3
C1 C2 C3 C4 359.8 0.5
C2 C1 C6 C 180.2 180.4
C6 C1 C2 C3 0.1 359.4
C6 C1 C2 H2 180.1 179.9
C6 C1 C H1 0.2 90.0
C6 C1 C H2A 125.4 210.0
C6 C1 C H3 235.0 330.0
C4 C5 C6 C1 359.6 0.0
C1 C6 C5 H5 179.6 179.9
C5 C6 C1 H6 180.0 180.0
C2 C1 C C6 179.8 179.6
C C1 C2 C3 180.3 179.8
C C1 C2 H2 0.3 0.3
C C1 C6 C5 180.0 179.9
C C1 C6 H6 360.0 360.0
H1 C C1 H2A 234.7 240.0
H1 C C1 H3 125.2 120.0
H2A C C1 H3 250.5 240.0
C3 C2 C1 C6 0.1 359.4
C3 C2 C1 C 180.3 179.8
C1 C2 C3 H2 180.0 180.5
O3 C3 C2 C4 180.2 179.8
C2 C3 O3 HO3 180.0 270.3
C2 C3 C4 O4 180.1 179.7
C2 C3 C4 C5 359.9 359.8
H2 C2 C1 C6 180.1 179.9
H2 C2 C1 C 0.3 0.3
C1 C2 H2 C3 180.0 179.5
H2 C2 C3 O3 0.1 359.8
H2 C2 C3 C4 179.8 180.0
O3 C3 C2 H2 0.1 359.8
C2 C3 O3 C4 179.8 180.2
O3 C3 C4 O4 359.9 359.9
O3 C3 C4 C5 179.7 180.0
C4 C3 C2 H2 179.8 180.0
C2 C3 C4 O3 180.2 179.8
C4 C3 O3 HO3 0.2 90.0
O4 C4 C3 C5 180.2 179.9
C3 C4 O4 HO4 180.0 270.0
C3 C4 C5 C6 0.3 359.9
C3 C4 C5 H5 180.3 180.0
HO3 O3 C3 C4 0.2 90.0
C3 C4 O4 C5 179.8 180.1
O4 C4 C5 C6 180.1 180.0
O4 C4 C5 H5 0.1 0.1
C1 C6 C5 C4 359.6 0.0
C3 C4 C5 O4 180.2 179.9
C5 C4 O4 HO4 0.2 90.0
C6 C5 C4 H5 180.0 179.9
C4 C5 C6 H6 179.6 180.0
HO4 O4 C4 C5 0.2 90.0
C5 C6 C1 C 180.0 179.9
C1 C6 C5 H6 180.0 180.0
C4 C5 C6 H5 180.0 180.1
C4 C5 H5 C6 180.0 179.9
H5 C5 C6 H6 359.6 359.9
H6 C6 C1 C 360.0 360.0
C1 C6 H6 C5 180.0 180.0
H6 C6 C5 H5 359.6 359.9
C1 C H1 H2A 125.3 120.0
C1 C H1 H3 234.8 239.9
H2A C H1 H3 109.5 119.9
C1 C H2A H1 229.0 240.0
C1 C H2A H3 114.6 120.1
H1 C H2A H3 245.6 240.1
C1 C H3 H1 130.9 120.0
C1 C H3 H2A 245.4 240.0
H1 C H3 H2A 114.5 120.0