PDB Chemical Component FLG

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 FLG

Atom I Atom J Distance (Experimental Model) Distance (Ideal Model)
S1 C21 1.807 1.606
C21 N2   1.453
C21 N1 1.339 1.460
N1 C17 1.370 1.396
C17 C18 1.393 1.395
C17 C16 1.400 1.395
C18 C19 1.403 1.395
C18 H18 1.080 1.089
C19 C20 1.492 1.458
C19 C14 1.395 1.390
C20 O4 1.277 1.360
C20 O5 1.247 1.233
O4 H4 0.950 0.980
C16 C15 1.397 1.395
C16 H16 1.080 1.086
C15 C14 1.389 1.390
C15 H15 1.080 1.087
C14 C10 1.499 1.468
C10 C9 1.395 1.360
C10 C11 1.405 1.485
C9 C4 1.393 1.472
C9 C8 1.390 1.470
C4 O2 1.266 1.388
C4 C5 1.391 1.342
O2 C3 1.268 1.369
C5 C6 1.401 1.483
C5 H5 1.080 1.084
C8 C7 1.387 1.338
C8 H8 1.080 1.085
C7 C6 1.379 1.480
C7 H7 1.080 1.085
C6 O3 1.271 1.226
C11 C3 1.392 1.395
C11 C12 1.402 1.405
C3 C2 1.407 1.398
C2 C1 1.407 1.391
C2 H2 1.080 1.087
C12 C13 1.376 1.398
C12 H12 1.080 1.088
C13 C1 1.385 1.391
C13 H13 1.080 1.087
C1 O1 1.331 1.361
N2 C22   1.443
C22 C23   1.491
C22 H221   1.095
C22 H222   1.093
C23 H231   1.095
C23 H232   1.095
C23 H233   1.097
HN1 N2   1.014
HO1 O1 0.950 0.971
HN2 N1 1.000 1.024

Bond Angles for FLG

Atom I Atom J Atom K Angle (Experimental Model) Angle (Ideal Model)
S1 C21 N2   109.5
S1 C21 N1 118.2 110.2
N1 C21 N2   112.5
C21 N2 C22   121.3
C21 N1 C17 122.5 126.1
N1 C17 C18 119.4 120.0
N1 C17 C16 121.0 120.0
C18 C17 C16 119.6 120.0
C17 C18 C19 120.4 120.0
C17 C18 H18 119.8 119.9
C17 C16 C15 120.0 120.0
C17 C16 H16 120.0 120.7
C19 C18 H18 119.8 120.1
C18 C19 C20 122.0 118.3
C18 C19 C14 119.6 119.6
C20 C19 C14 118.4 122.1
C19 C20 O4 118.8 112.3
C19 C20 O5 118.3 125.3
C19 C14 C15 120.2 120.8
C19 C14 C10 123.3 121.1
O4 C20 O5 122.8 122.4
C20 O4 H4 109.5 113.0
C15 C16 H16 120.0 119.3
C16 C15 C14 120.3 119.6
C16 C15 H15 119.8 119.0
C14 C15 H15 119.9 121.4
C15 C14 C10 116.5 118.1
C14 C10 C9 121.8 119.7
C14 C10 C11 120.9 122.7
C9 C10 C11 117.2 117.7
C10 C9 C4 118.6 120.5
C10 C9 C8 121.6 122.3
C10 C11 C3 118.6 119.6
C10 C11 C12 122.2 122.4
C4 C9 C8 119.8 117.2
C9 C4 O2 120.1 120.4
C9 C4 C5 120.0 121.4
C9 C8 C7 119.5 122.3
C9 C8 H8 120.3 119.9
O2 C4 C5 119.9 118.2
C4 O2 C3 125.6 119.4
C4 C5 C6 120.3 121.2
C4 C5 H5 119.8 121.6
O2 C3 C11 119.9 122.4
O2 C3 C2 121.3 116.3
C6 C5 H5 119.8 117.3
C5 C6 C7 118.7 117.4
C5 C6 O3 123.7 121.2
C7 C8 H8 120.2 117.8
C8 C7 C6 121.6 120.5
C8 C7 H7 119.2 121.5
C6 C7 H7 119.2 118.0
C7 C6 O3 117.5 121.3
C3 C11 C12 119.2 118.0
C11 C3 C2 118.9 121.3
C11 C12 C13 121.8 120.9
C11 C12 H12 119.1 121.1
C3 C2 C1 121.2 119.9
C3 C2 H2 119.4 120.1
C1 C2 H2 119.4 119.9
C2 C1 C13 119.0 119.7
C2 C1 O1 123.9 120.2
C13 C12 H12 119.1 118.0
C12 C13 C1 120.0 120.1
C12 C13 H13 120.0 119.5
C1 C13 H13 120.0 120.4
C13 C1 O1 117.1 120.2
N2 C22 C23   111.1
N2 C22 H221   107.7
N2 C22 H222   107.8
C23 C22 H221   110.5
C23 C22 H222   110.8
C22 C23 H231   110.9
C22 C23 H232   110.9
C22 C23 H233   109.8
H221 C22 H222   108.8
H231 C23 H232   109.3
H231 C23 H233   107.9
H232 C23 H233   108.0

Torsion Angles for FLG

Atom I Atom J Atom K Atom L Angle (Experimental Model) Angle (Ideal Model)
N1 C21 S1 N2   124.3
S1 C21 N2 C22   123.0
S1 C21 N1 C17 178.2 155.7
S1 C21 N2 N1   122.9
N2 C21 N1 C17   278.2
C21 N2 C22 C23   178.8
C21 N2 C22 H221   299.9
C21 N2 C22 H222   57.2
S1 C21 N1 N2   237.4
N1 C21 N2 C22   0.1
C21 N1 C17 C18 200.9 357.2
C21 N1 C17 C16 21.2 177.2
C17 N1 C21 N2   278.2
C18 C17 N1 C16 179.7 180.0
N1 C17 C18 C19 179.3 180.0
N1 C17 C18 H18 359.3 0.0
N1 C17 C16 C15 180.6 180.0
N1 C17 C16 H16 0.6 360.0
N1 C17 C18 C16 180.3 180.0
C18 C17 C16 C15 0.9 360.0
C18 C17 C16 H16 180.9 180.0
C19 C18 C17 H18 180.0 180.0
C17 C18 C19 C20 180.4 180.0
C17 C18 C19 C14 0.4 360.0
N1 C17 C16 C18 179.7 180.0
C16 C17 C18 C19 359.0 0.0
C16 C17 C18 H18 179.0 180.0
C15 C16 C17 H16 180.0 180.0
C17 C16 C15 C14 359.8 0.0
C17 C16 C15 H15 179.8 180.0
C19 C18 C17 C16 359.0 0.0
C17 C18 C19 H18 180.0 180.0
C20 C19 C18 C14 180.0 180.1
C18 C19 C20 O4 190.9 30.0
C18 C19 C20 O5 11.5 210.0
C18 C19 C14 C15 0.3 0.0
C18 C19 C14 C10 179.9 180.0
H18 C18 C17 C16 179.0 180.0
C17 C18 H18 C19 180.0 180.0
H18 C18 C19 C20 0.4 0.1
H18 C18 C19 C14 180.4 180.0
C20 C19 C18 H18 0.4 0.1
C18 C19 C20 C14 180.0 179.9
C20 C19 C14 C15 180.3 180.0
C20 C19 C14 C10 359.8 359.9
O4 C20 C19 O5 179.4 180.0
C19 C20 O4 H4 180.6 180.1
C14 C19 C18 H18 180.4 180.0
C18 C19 C14 C20 180.0 180.1
C14 C19 C20 O4 11.0 210.0
C14 C19 C20 O5 191.6 30.0
C16 C15 C14 C19 359.6 360.0
C19 C14 C15 H15 179.6 180.0
C15 C14 C19 C10 180.5 180.0
C19 C14 C10 C9 84.5 90.2
C19 C14 C10 C11 261.8 270.0
O4 C20 C19 C14 11.0 210.0
C19 C20 O4 O5 180.6 180.0
O5 C20 C19 C14 191.6 30.0
C19 C20 O5 O4 179.4 180.0
O5 C20 O4 H4 360.0 0.1
H4 O4 C20 O5 360.0 0.1
C17 C16 C15 H16 180.0 180.0
C19 C14 C15 C16 359.6 360.0
C14 C15 C16 H15 180.0 180.0
C16 C15 C14 C10 180.0 180.0
C17 C16 H16 C15 180.0 180.0
H16 C16 C15 C14 179.8 180.0
H16 C16 C15 H15 359.8 360.0
C19 C14 C15 C10 179.6 180.0
C14 C15 C16 H16 179.8 180.0
C16 C15 C14 H15 180.0 180.0
C15 C14 C10 C9 264.1 270.1
C15 C14 C10 C11 81.3 90.0
H15 C15 C16 H16 359.8 360.0
C16 C15 H15 C14 180.0 180.0
H15 C15 C14 C10 0.0 0.0
C19 C14 C10 C15 180.4 180.0
C10 C14 C15 H15 0.0 0.0
C9 C10 C14 C11 182.7 180.2
C14 C10 C9 C4 178.7 180.0
C14 C10 C9 C8 357.5 360.0
C14 C10 C11 C3 181.3 180.0
C14 C10 C11 C12 2.5 0.0
C14 C10 C9 C11 177.4 179.8
C9 C10 C11 C3 358.7 359.8
C9 C10 C11 C12 179.9 179.9
C4 C9 C10 C8 181.2 180.0
C10 C9 C4 O2 359.2 0.0
C10 C9 C4 C5 180.2 179.9
C10 C9 C8 C7 180.9 180.0
C10 C9 C8 H8 0.9 0.0
C14 C10 C11 C9 182.6 180.2
C11 C10 C9 C4 1.4 0.1
C11 C10 C9 C8 180.1 180.1
O2 C3 C11 C10 0.6 0.0
C3 C11 C10 C12 178.9 180.0
C10 C11 C3 C2 181.3 180.0
C10 C11 C12 C13 179.5 180.0
C10 C11 C12 H12 359.5 0.0
C4 C9 C10 C11 1.4 0.1
C10 C9 C4 C8 178.8 180.0
C4 C9 C8 C7 359.7 0.0
C4 C9 C8 H8 179.7 180.0
O2 C4 C9 C5 179.0 180.1
C9 C4 O2 C3 0.0 359.9
C9 C4 C5 C6 358.7 0.1
C9 C4 C5 H5 178.7 180.0
C8 C9 C10 C11 180.1 180.1
C10 C9 C8 C4 181.3 180.0
C8 C9 C4 O2 180.5 180.0
C8 C9 C4 C5 1.4 359.9
C7 C8 C9 H8 180.0 180.0
C9 C8 C7 C6 359.0 360.0
C9 C8 C7 H7 179.0 180.0
O2 C4 C9 C8 180.5 180.0
C9 C4 O2 C5 181.0 179.9
O2 C4 C5 C6 179.7 180.0
O2 C4 C5 H5 359.7 359.9
C4 O2 C3 C11 0.1 0.1
C4 O2 C3 C2 179.4 180.2
C5 C4 C9 C8 1.4 359.9
C9 C4 C5 O2 179.0 180.1
C5 C4 O2 C3 179.0 179.9
C6 C5 C4 H5 180.0 180.1
C4 C5 C6 C7 0.0 359.9
C4 C5 C6 O3 177.9 179.9
C10 C11 C3 O2 0.6 0.0
C3 O2 C4 C5 179.0 179.9
O2 C3 C11 C12 179.5 180.0
C11 C3 O2 C2 180.7 180.0
O2 C3 C2 C1 180.1 180.0
O2 C3 C2 H2 0.1 360.0
C4 C5 C6 H5 180.0 179.9
C8 C7 C6 C5 1.1 0.1
C5 C6 C7 H7 181.1 180.0
C7 C6 C5 O3 182.2 180.0
C4 C5 H5 C6 180.0 180.1
H5 C5 C6 C7 180.1 180.0
H5 C5 C6 O3 357.9 0.0
C9 C8 C7 H8 180.0 180.0
C5 C6 C7 C8 1.1 0.1
C6 C7 C8 H7 180.0 179.9
C8 C7 C6 O3 183.1 180.1
C9 C8 H8 C7 180.0 180.0
H8 C8 C7 C6 179.1 180.0
H8 C8 C7 H7 359.0 0.1
C7 C6 C5 H5 180.1 180.0
C5 C6 C7 O3 178.0 180.0
C6 C7 C8 H8 179.1 180.0
C8 C7 C6 H7 180.0 180.1
H7 C7 C8 H8 359.0 0.1
C8 C7 H7 C6 180.0 179.9
H7 C7 C6 O3 3.1 0.0
O3 C6 C5 H5 357.9 0.0
C5 C6 O3 C7 182.1 180.0
O3 C6 C7 H7 3.1 0.0
C10 C11 C3 C12 181.1 180.0
O2 C3 C11 C2 179.3 180.0
C3 C11 C12 C13 0.7 0.0
C3 C11 C12 H12 180.7 180.0
C11 C3 C2 C1 359.5 0.0
C11 C3 C2 H2 179.5 180.0
C10 C11 C12 C3 178.8 180.0
C12 C11 C3 C2 0.1 360.0
C13 C12 C11 H12 180.0 180.0
C11 C12 C13 C1 358.9 360.0
C11 C12 C13 H13 179.0 180.1
O2 C3 C2 C11 180.7 180.0
C2 C3 C11 C12 0.1 360.0
C1 C2 C3 H2 180.0 180.0
C3 C2 C1 C13 0.1 360.0
C3 C2 C1 O1 181.6 180.0
C3 C2 C1 H2 180.0 180.0
C12 C13 C1 C2 0.7 -0.0
C2 C1 C13 H13 180.6 179.9
C13 C1 C2 O1 178.5 180.0
C3 C2 H2 C1 180.0 180.0
H2 C2 C1 C13 180.1 180.0
H2 C2 C1 O1 1.6 0.0
C11 C12 C13 H12 180.0 180.0
C2 C1 C13 C12 0.7 -0.0
C1 C13 C12 H13 180.0 179.9
C12 C13 C1 O1 179.3 180.0
C11 C12 H12 C13 180.0 180.0
H12 C12 C13 C1 178.9 180.0
H12 C12 C13 H13 359.0 0.1
C13 C1 C2 H2 180.1 180.0
C2 C1 C13 O1 181.4 180.0
C1 C13 C12 H12 178.9 180.0
C12 C13 C1 H13 180.0 180.1
H13 C13 C12 H12 359.0 0.1
C12 C13 H13 C1 180.0 179.9
H13 C13 C1 O1 359.3 359.9
O1 C1 C2 H2 1.6 0.0
C2 C1 O1 C13 178.6 180.0
O1 C1 C13 H13 359.3 359.9
C23 C22 N2 H221   238.8
C23 C22 N2 H222   121.6
N2 C22 C23 H231   298.5
N2 C22 C23 H232   60.2
N2 C22 C23 H233   179.4
H221 C22 N2 H222   242.8
N2 C22 C23 H221   119.5
N2 C22 C23 H222   240.2
H221 C22 C23 H222   120.6
H231 C23 C22 H232   238.4
H231 C23 C22 H233   119.1
H232 C23 C22 H233   240.7
N2 C22 H221 C23   238.4
N2 C22 H221 H222   116.6
C23 C22 H221 H222   238.2
H221 C22 C23 H231   179.0
H221 C22 C23 H232   300.6
H221 C22 C23 H233   59.9
N2 C22 H222 C23   121.8
N2 C22 H222 H221   243.5
C23 C22 H222 H221   121.6
H222 C22 C23 H231   58.4
H222 C22 C23 H232   180.0
H222 C22 C23 H233   299.2
H231 C23 C22 H221   179.0
H231 C23 C22 H222   58.4
C22 C23 H231 H232   122.6
C22 C23 H231 H233   239.7
H232 C23 H231 H233   117.2
H232 C23 C22 H221   300.6
H232 C23 C22 H222   180.0
C22 C23 H232 H231   237.5
C22 C23 H232 H233   120.4
H231 C23 H232 H233   242.9
H233 C23 C22 H221   59.9
H233 C23 C22 H222   299.2
C22 C23 H233 H231   120.9
C22 C23 H233 H232   238.9
H231 C23 H233 H232   118.0