PDB Chemical Component JBQ

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 JBQ

Atom I Atom J Distance (Experimental Model) Distance (Ideal Model)
F01 C02 1.329 1.351
O11 C10 1.394 1.429
C02 C03 1.386 1.386
C02 C12 1.434 1.380
C03 C04 1.390 1.383
C10 C12 1.428 1.510
C10 N09 1.351 1.471
C12 C06 1.361 1.396
C04 C05 1.390 1.380
N09 C08 1.351 1.371
C06 C05 1.425 1.395
C06 N07 1.391 1.370
C08 N07 1.350 1.299
C03 H1 1.080 1.080
C04 H2 1.080 1.080
C05 H3 1.080 1.080
C08 H4 1.080 1.080
N09 H5 0.999 0.970
O11 H7 0.950 0.967
C10 H6 1.100 1.091

Bond Angles for JBQ

Atom I Atom J Atom K Angle (Experimental Model) Angle (Ideal Model)
F01 C02 C03 118.1 120.1
F01 C02 C12 121.4 120.0
O11 C10 C12 119.3 109.8
O11 C10 H6 90.2 109.8
C03 C02 C12 120.5 119.9
C02 C03 C04 118.7 120.2
C02 C03 H1 120.7 119.9
C10 C12 C02 122.1 120.7
C02 C12 C06 120.2 120.2
C03 C04 C05 121.5 120.3
C04 C03 H1 120.7 119.9
C03 C04 H2 119.3 119.8
N09 C10 C12 120.7 107.9
C10 C12 C06 117.7 119.1
C12 C10 H6 90.2 109.8
C10 N09 C08 120.5 118.6
C10 N09 H5 119.8 120.7
N09 C10 H6 90.2 109.8
C05 C04 H2 119.2 119.9
C04 C05 H3 120.2 120.0
N09 C08 H4 119.9 119.8
C06 C05 H3 120.2 120.1

Torsion Angles for JBQ

Atom I Atom J Atom K Atom L Angle (Experimental Model) Angle (Ideal Model)
C03 C02 F01 C12 179.5 180.1
F01 C02 C03 C04 180.1 180.1
F01 C02 C03 H1 0.2 0.0
C10 C12 C02 F01 359.6 0.7
F01 C02 C12 C06 179.8 180.5
O11 C10 C12 C02 0.6 85.7
N09 C10 O11 C12 180.6 241.6
O11 C10 C12 C06 180.5 265.8
C12 C10 O11 H6 269.7 239.2
O11 C10 N09 H5 359.6 258.9
N09 C10 O11 H6 90.3 120.8
F01 C02 C03 C12 180.5 179.9
C10 C12 C02 C03 180.1 180.6
C03 C02 C12 C06 0.3 0.4
C02 C03 C04 C05 0.6 359.6
C04 C03 C02 H1 180.0 180.1
C02 C03 C04 H2 180.6 179.7
F01 C02 C12 C03 179.5 180.1
C12 C02 C03 C04 359.6 0.2
C12 C02 C03 H1 179.7 180.1
N09 C10 C12 C02 180.1 205.3
C10 C12 C02 C06 179.9 180.1
C02 C12 C10 H6 270.4 324.9
C04 C03 C02 C12 359.6 0.2
C02 C03 C04 H1 180.0 179.9
C05 C04 C03 H2 180.0 180.0
C03 C04 C05 H3 179.3 179.8
F01 C02 C12 C10 359.6 0.7
O11 C10 C12 H6 90.3 120.8
C03 C02 C12 C10 180.1 180.6
C02 C12 C10 C06 180.1 179.9
C12 C10 N09 C08 0.1 319.3
C12 C10 N09 H5 180.1 139.2
N09 C10 C12 H6 269.7 240.4
O11 C10 N09 C12 179.4 119.6
O11 C10 N09 H6 269.7 239.2
N09 C10 C12 C06 359.9 25.4
C12 C10 N09 H6 90.3 119.5
C10 N09 C08 H4 180.0 211.7
C10 C12 C06 C02 180.1 179.9
C06 C12 C10 H6 90.2 145.0
C12 C06 C05 H3 180.6 180.8
C05 C04 C03 H1 180.6 179.7
C03 C04 C05 H2 180.0 180.0
C06 C05 C04 H3 180.0 180.1
C08 N09 C10 C12 0.1 319.3
C10 N09 C08 H5 180.0 180.0
C08 N09 C10 H6 269.8 199.7
C02 C12 C06 C05 359.6 359.1
C10 C12 C06 C05 179.8 179.0
C06 C05 C04 H2 179.3 179.9
C04 C05 C06 H3 180.0 179.9
C02 C12 C06 N07 179.7 179.5
C10 C12 C06 N07 359.9 359.4
N07 C06 C05 H3 0.5 0.4
C10 N09 C08 N07 0.0 31.7
H1 C03 C02 C12 179.7 180.1
C02 C03 H1 C04 180.0 180.1
H1 C03 C04 C05 180.6 179.7
H1 C03 C04 H2 0.5 359.7
C03 C04 H2 C05 180.0 180.0
H2 C04 C03 H1 0.5 359.7
H2 C04 C05 H3 359.3 359.8
H3 C05 C04 H2 359.3 359.8
H5 N09 C10 C12 180.1 139.2
C10 N09 H5 C08 180.0 180.0
H5 N09 C10 H6 89.8 19.7
H5 N09 C08 H4 0.0 31.7
H7 O11 C10 C12 180.0 180.0
H7 O11 C10 H6 270.2 300.8
O11 C10 H6 C12 240.7 239.2
H6 C10 C12 C02 270.4 324.9
N09 C10 H6 C12 120.7 118.4
H6 C10 C12 C06 90.2 145.0
H6 C10 N09 C08 269.8 199.7
H6 C10 N09 H5 89.8 19.7