PDB Chemical Component FOS

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 FOS

Atom I Atom J Distance (Experimental Model) Distance (Ideal Model)
C1 C2 1.427 1.382
C1 C6 1.413 1.382
C1 C 1.509 1.507
C2 C3 1.426 1.382
C2 H2 1.104 1.081
C3 C4 1.399 1.381
C3 H3 1.104 1.081
C4 C5 1.380 1.381
C4 H4 1.103 1.080
C5 C6 1.402 1.382
C5 H5 1.103 1.079
C6 H6 1.103 1.080
C O 1.425 1.451
C H1 1.115 1.090
C H2A 1.115 1.090
O C' 1.356 1.345
C' O' 1.197 1.215
C' N 1.341 1.348
N CM 1.434 1.465
N HN 1.020 0.970
CM P 1.812 1.823
CM HM1 1.115 1.090
CM HM2 1.115 1.090
P O1P 1.449 1.480
P O2P 1.419 1.609
P O3P 1.606 1.610
O2P HOP2 0.950 0.967
O3P HOP3 0.950 0.967

Bond Angles for FOS

Atom I Atom J Atom K Angle (Experimental Model) Angle (Ideal Model)
C2 C1 C6 122.4 120.0
C2 C1 C 118.5 120.0
C1 C2 C3 117.2 120.0
C1 C2 H2 121.5 120.0
C6 C1 C 119.0 120.0
C1 C6 C5 118.7 120.0
C1 C6 H6 121.0 120.0
C1 C O 111.2 109.5
C1 C H1 111.6 109.5
C1 C H2A 111.6 109.5
C3 C2 H2 121.3 120.0
C2 C3 C4 118.9 120.0
C2 C3 H3 121.4 120.0
C4 C3 H3 119.6 120.0
C3 C4 C5 123.4 120.0
C3 C4 H4 119.0 120.0
C5 C4 H4 117.6 120.0
C4 C5 C6 119.3 120.0
C4 C5 H5 119.5 120.0
C6 C5 H5 121.1 120.0
C5 C6 H6 120.3 120.0
O C H1 111.6 109.4
O C H2A 111.6 109.5
C O C' 117.6 120.1
H1 C H2A 98.8 109.5
O C' O' 118.5 120.0
O C' N 122.3 120.0
O' C' N 119.1 120.0
C' N CM 116.6 120.0
C' N HN 118.5 120.0
CM N HN 124.8 120.0
N CM P 103.7 109.5
N CM HM1 114.4 109.5
N CM HM2 114.4 109.5
P CM HM1 114.4 109.5
P CM HM2 114.4 109.4
CM P O1P 115.6 109.4
CM P O2P 119.0 109.5
CM P O3P 101.2 109.5
HM1 CM HM2 96.0 109.4
O1P P O2P 98.3 109.5
O1P P O3P 106.9 109.5
O2P P O3P 115.9 109.5
P O2P HOP2 118.9 106.8
P O3P HOP3 101.2 106.8

Torsion Angles for FOS

Atom I Atom J Atom K Atom L Angle (Experimental Model) Angle (Ideal Model)
C6 C1 C2 C 183.5 180.3
C2 C1 C6 C5 358.4 359.4
C2 C1 C6 H6 178.4 179.9
C2 C1 C O 34.0 90.0
C2 C1 C H1 159.2 330.0
C2 C1 C H2A 268.7 210.0
C3 C2 C1 H2 180.0 180.0
C1 C2 C3 C4 358.6 360.0
C1 C2 C3 H3 178.6 179.9
C2 C1 C6 C 176.5 179.7
C6 C1 C2 C3 1.8 0.3
C6 C1 C2 H2 181.8 180.3
C6 C1 C O 210.6 269.7
C6 C1 C H1 335.9 149.7
C6 C1 C H2A 85.4 29.7
C4 C5 C6 C1 1.1 0.5
C1 C6 C5 H5 181.1 180.3
C5 C6 C1 H6 180.0 179.5
C2 C1 C C6 183.3 180.3
C C1 C2 C3 178.3 180.0
C C1 C2 H2 358.3 360.0
C C1 C6 C5 181.8 179.8
C C1 C6 H6 1.9 0.2
O C C1 H1 234.8 120.0
O C C1 H2A 125.2 240.0
C1 C O C' 151.9 180.0
H1 C C1 H2A 250.5 120.0
C3 C2 C1 C6 1.8 0.3
C3 C2 C1 C 178.3 180.0
C1 C2 C3 H2 180.0 180.0
C4 C3 C2 H3 180.0 180.1
C2 C3 C4 C5 1.0 360.0
C2 C3 C4 H4 181.0 180.0
H2 C2 C1 C6 181.8 180.3
H2 C2 C1 C 358.3 360.0
C1 C2 H2 C3 180.0 180.0
H2 C2 C3 C4 178.6 180.0
H2 C2 C3 H3 358.6 359.9
C4 C3 C2 H2 178.6 180.0
C2 C3 C4 H3 180.0 179.9
C5 C4 C3 H4 180.0 180.0
C3 C4 C5 C6 359.1 359.8
C3 C4 C5 H5 179.1 180.0
H3 C3 C2 H2 358.6 359.9
C2 C3 H3 C4 180.0 180.1
H3 C3 C4 C5 181.1 180.1
H3 C3 C4 H4 1.0 0.0
C1 C6 C5 C4 1.1 0.5
C5 C4 C3 H3 181.1 180.1
C3 C4 C5 H4 180.0 180.0
C6 C5 C4 H5 180.0 179.8
C4 C5 C6 H6 181.1 180.0
H4 C4 C3 H3 1.0 0.0
C3 C4 H4 C5 180.0 180.0
H4 C4 C5 C6 179.1 179.8
H4 C4 C5 H5 359.2 0.0
C5 C6 C1 C 181.8 179.8
C1 C6 C5 H6 180.0 180.5
C6 C5 C4 H4 179.1 179.8
C4 C5 C6 H5 180.0 180.2
H5 C5 C4 H4 359.2 0.0
C4 C5 H5 C6 180.0 179.8
H5 C5 C6 H6 1.1 359.8
H6 C6 C1 C 1.9 0.2
C1 C6 H6 C5 180.0 179.5
H6 C6 C5 H5 1.1 359.8
C1 C O H1 125.2 240.0
C1 C O H2A 234.7 120.0
H1 C O H2A 109.5 240.0
C O C' O' 172.1 0.0
C O C' N 350.1 180.0
C1 C H1 O 235.0 120.0
C1 C H1 H2A 117.5 240.0
O C H1 H2A 242.5 120.0
H1 C O C' 26.6 300.0
C1 C H2A O 125.0 239.9
C1 C H2A H1 242.5 120.0
O C H2A H1 117.5 240.1
H2A C O C' 277.1 59.9
C' O C H1 26.6 300.0
C' O C H2A 277.1 59.9
O' C' O N 182.1 180.0
O C' N CM 180.8 180.0
O C' N HN 0.8 360.0
O C' O' N 178.0 180.0
O' C' N CM 358.8 0.0
O' C' N HN 178.8 180.0
O C' N O' 182.1 180.0
CM N C' HN 180.0 180.0
C' N CM P 139.1 90.0
C' N CM HM1 264.4 330.0
C' N CM HM2 13.8 210.0
C' N CM HN 180.0 180.0
P CM N HM1 234.7 120.1
P CM N HM2 125.3 240.0
N CM P O1P 292.5 300.0
N CM P O2P 49.1 180.0
N CM P O3P 177.4 60.0
HM1 CM N HM2 250.6 120.0
C' N HN CM 180.0 180.0
HN N CM P 319.1 270.1
HN N CM HM1 84.4 150.0
HN N CM HM2 193.9 30.0
P CM N HN 319.1 270.1
N CM P HM1 125.3 239.9
N CM P HM2 234.8 120.0
HM1 CM P HM2 109.5 240.1
O1P P CM O2P 243.4 120.0
O1P P CM O3P 115.1 240.0
O2P P CM O3P 231.7 120.0
CM P O2P HOP2 180.0 180.0
CM P O3P HOP3 179.9 60.0
HM1 CM N HN 84.4 150.0
N CM HM1 P 240.6 120.1
N CM HM1 HM2 120.2 240.0
P CM HM1 HM2 239.7 119.9
HM1 CM P O1P 167.2 60.1
HM1 CM P O2P 283.8 300.1
HM1 CM P O3P 52.1 180.1
HM2 CM N HN 193.9 30.0
N CM HM2 P 119.4 240.0
N CM HM2 HM1 239.7 120.1
P CM HM2 HM1 120.3 240.1
HM2 CM P O1P 57.7 180.0
HM2 CM P O2P 174.3 60.0
HM2 CM P O3P 302.6 300.0
O1P P CM HM1 167.2 60.1
O1P P CM HM2 57.7 180.0
CM P O1P O2P 127.8 240.0
CM P O1P O3P 248.2 120.0
O2P P O1P O3P 120.5 240.0
O1P P O2P HOP2 305.4 60.0
O1P P O3P HOP3 58.6 180.0
O2P P CM HM1 283.8 300.1
O2P P CM HM2 174.3 60.0
CM P O2P O1P 234.6 120.0
CM P O2P O3P 121.1 240.0
O1P P O2P O3P 246.5 120.0
O2P P O3P HOP3 310.1 300.0
O3P P CM HM1 52.1 180.1
O3P P CM HM2 302.6 300.0
CM P O3P O1P 121.3 240.1
CM P O3P O2P 229.8 120.0
O1P P O3P O2P 108.5 239.9
O3P P O2P HOP2 58.9 300.0
HOP2 O2P P O3P 58.9 300.0