PDB Chemical Component SAC

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 SAC

Atom I Atom J Distance (Experimental Model) Distance (Ideal Model)
C1A C2A 1.502 1.506
C1A OAC 1.253 1.212
C1A N 1.339 1.348
C2A H2A1 1.115 1.089
C2A H2A2 1.115 1.090
C2A H2A3 1.116 1.090
N CA 1.450 1.464
N H 1.020 0.970
CA C 1.531 1.506
CA CB 1.511 1.530
CA HA 1.115 1.090
C O 1.250 1.208
C OXT 1.322 1.342
OXT HXT 0.949 0.966
CB OG 1.380 1.428
CB HB2 1.115 1.090
CB HB3 1.115 1.090
OG HG 0.950 0.967

Bond Angles for SAC

Atom I Atom J Atom K Angle (Experimental Model) Angle (Ideal Model)
C2A C1A OAC 130.5 120.0
C2A C1A N 110.4 120.0
C1A C2A H2A1 130.5 109.5
C1A C2A H2A2 104.9 109.5
C1A C2A H2A3 104.9 109.5
OAC C1A N 119.1 120.0
C1A N CA 119.1 120.0
C1A N H 116.6 120.0
H2A1 C2A H2A2 104.9 109.4
H2A1 C2A H2A3 104.9 109.4
H2A2 C2A H2A3 104.2 109.4
CA N H 124.3 120.0
N CA C 109.4 109.5
N CA CB 106.5 109.5
N CA HA 114.0 109.5
C CA CB 116.1 109.5
C CA HA 104.1 109.5
CA C O 123.4 120.0
CA C OXT 117.1 120.0
CB CA HA 107.0 109.4
CA CB OG 120.4 109.5
CA CB HB2 108.3 109.4
CA CB HB3 108.3 109.4
O C OXT 118.5 119.9
C OXT HXT 117.1 120.0
OG CB HB2 108.3 109.5
OG CB HB3 108.3 109.5
CB OG HG 120.4 106.8
HB2 CB HB3 101.7 109.5

Torsion Angles for SAC

Atom I Atom J Atom K Atom L Angle (Experimental Model) Angle (Ideal Model)
OAC C1A C2A N 179.2 180.1
C2A C1A N CA 28.8 180.0
C2A C1A N H 208.8 0.1
H2A1 C2A C1A H2A2 234.7 240.0
H2A1 C2A C1A H2A3 125.2 120.0
H2A2 C2A C1A H2A3 250.5 240.0
C2A C1A OAC N 180.8 179.9
OAC C1A C2A H2A1 179.9 0.1
OAC C1A C2A H2A2 305.3 120.1
OAC C1A C2A H2A3 54.7 240.1
OAC C1A N CA 209.5 359.9
OAC C1A N H 29.5 180.0
C2A C1A N OAC 179.3 180.1
N C1A C2A H2A1 0.7 180.0
N C1A C2A H2A2 126.1 300.0
N C1A C2A H2A3 235.5 60.0
CA N C1A H 180.0 179.9
C1A N CA C 264.0 270.0
C1A N CA CB 137.9 150.0
C1A N CA HA 20.1 30.1
H2A1 C2A C1A OAC 179.9 0.1
H2A1 C2A C1A N 0.7 180.0
C1A C2A H2A1 H2A2 125.3 120.1
C1A C2A H2A1 H2A3 234.8 239.9
H2A2 C2A H2A1 H2A3 109.5 119.9
H2A2 C2A C1A OAC 305.3 120.1
H2A2 C2A C1A N 126.1 300.0
C1A C2A H2A2 H2A1 219.9 239.9
C1A C2A H2A2 H2A3 110.0 120.0
H2A1 C2A H2A2 H2A3 250.0 240.1
H2A3 C2A C1A OAC 54.7 240.1
H2A3 C2A C1A N 235.5 60.0
C1A C2A H2A3 H2A1 140.0 120.1
C1A C2A H2A3 H2A2 250.0 240.0
H2A1 C2A H2A3 H2A2 110.0 119.9
C1A N CA H 180.0 180.1
C CA N CB 126.2 120.0
C CA N HA 244.0 240.0
N CA C O 13.5 150.0
N CA C OXT 205.3 330.0
CB CA N HA 117.8 120.0
N CA CB OG 255.4 180.0
N CA CB HB2 20.7 300.0
N CA CB HB3 130.2 60.0
C1A N H CA 180.0 179.9
H N CA C 84.1 90.0
H N CA CB 317.9 330.0
H N CA HA 200.1 210.0
C CA N H 84.1 90.0
N CA C CB 239.5 240.0
N CA C HA 122.2 120.0
CB CA C HA 242.7 240.1
C CA CB OG 133.4 59.9
C CA CB HB2 258.6 180.0
C CA CB HB3 8.2 300.0
O C CA OXT 168.2 180.0
CA C OXT HXT 180.0 180.0
CB CA N H 317.9 330.0
N CA CB C 122.0 120.0
N CA CB HA 237.7 240.0
C CA CB HA 115.7 120.0
CB CA C O 134.0 270.1
CB CA C OXT 325.8 90.0
OG CB CA HB2 234.8 239.9
OG CB CA HB3 125.2 120.0
CA CB OG HG 180.0 180.0
HB2 CB CA HB3 250.5 240.0
HA CA N H 200.1 210.0
N CA HA C 240.9 240.0
N CA HA CB 117.5 120.0
C CA HA CB 236.6 240.0
HA CA C O 251.3 30.0
HA CA C OXT 83.1 210.0
HA CA CB OG 17.8 300.0
HA CA CB HB2 143.0 60.0
HA CA CB HB3 252.5 180.0
O C CA CB 134.0 270.1
O C CA HA 251.3 30.0
CA C O OXT 192.0 180.0
O C OXT HXT 11.3 360.0
OXT C CA CB 325.8 90.0
OXT C CA HA 83.1 210.0
CA C OXT O 168.8 180.0
OG CB CA HA 17.8 300.0
CA CB OG HB2 125.2 120.0
CA CB OG HB3 234.8 240.0
HB2 CB OG HB3 109.5 120.0
HB2 CB CA HA 143.0 60.0
CA CB HB2 OG 227.9 239.9
CA CB HB2 HB3 114.0 119.9
OG CB HB2 HB3 246.1 240.0
HB2 CB OG HG 54.8 60.0
HB3 CB CA HA 252.5 180.0
CA CB HB3 OG 132.1 120.0
CA CB HB3 HB2 246.0 240.1
OG CB HB3 HB2 113.9 120.1
HB3 CB OG HG 305.3 299.9
HG OG CB HB2 54.8 60.0
HG OG CB HB3 305.3 299.9