(All numbering and residues are taken from first PDB file)
Bending Residue Dihedral Analysis
Residue
iResidue
i+1Distance of hinge axis to residue i in
(A) Distance of hinge axis to residue i in
(A) Change in
(deg) Change in
(deg) Angle of psi(i) axis to hinge axis
(deg) Angle of psi(i) axis to hinge axis
(deg) Percentage Progress
SER-10
LYS-11
4.3
3.3
8.6
-3.6
92.1
76.0
38.7
LYS-11
ARG-12
1.5
0.7
6.2
-3.2
67.0
60.7
3.1
ARG-12
LEU-13
2.3
3.2
6.2
-0.5
4.2
15.9
18.2
LEU-13
VAL-14
2.4
2.9
-3.5
7.9
117.8
124.7
9.1
VAL-14
SER-15
1.4
1.0
4.1
-13.7
92.8
81.9
1.1
SER-15
TYR-16
4.1
4.4
4.2
-1.6
43.6
45.1
5.4
TYR-16
TYR-17
4.9
5.4
5.8
-1.2
32.2
22.5
7.0
TYR-17
MET-18
2.8
3.1
-2.9
-4.1
101.6
104.2
-7.4
Graph shows rotational transition at bending residues and can be used
to identify hinge bending residues.
Probably only informative for interdomain rotations greater than 20 degrees
Residue
iResidue
i+1Distance of hinge axis to residue i in
(A) Distance of hinge axis to residue i in
(A) Change in
(deg) Change in
(deg) Angle of psi(i) axis to hinge axis
(deg) Angle of psi(i) axis to hinge axis
(deg) Percentage Progress
GLU-29
VAL-30
13.6
14.0
-8.5
7.1
136.5
140.5
-7.9
VAL-30
VAL-31
15.3
15.4
29.1
-28.8
34.5
33.3
-5.3
GLU-34
GLU-35
18.0
14.4
45.5
16.7
105.4
3.5
-647.6
GLU-35
LEU-36
16.8
15.4
-13.3
3.4
107.0
104.5
23.8
LEU-36
ALA-37
13.2
17.4
-7.7
-1.4
169.0
77.7
653.2
ALA-37
ARG-38
14.3
15.0
5.7
-40.9
76.4
52.2
-14.6
ARG-38
ARG-39
16.1
12.1
60.4
126.5
99.4
6.7
-483.2
ARG-39
LEU-40
13.6
13.8
91.1
-57.9
54.3
60.1
121.6
LEU-40
ASP-41
10.4
13.2
-164.0
136.3
171.4
73.8
-86.2
ASP-41
LEU-42
12.2
15.5
71.4
-165.8
65.1
82.1
248.9
LEU-42
LYS-43
11.3
16.0
179.2
-4.0
92.3
71.8
-630.0
LYS-43
ALA-44
14.1
12.7
-164.3
-15.5
23.7
34.4
573.5
ALA-44
SER-45
15.9
11.4
9.9
-8.2
87.1
121.1
7.8
SER-45
GLN-46
16.5
14.4
0.3
6.4
90.7
74.1
9.8
GLN-46
ILE-47
12.8
14.1
-5.0
2.1
20.5
64.3
-4.2
ILE-47
ARG-48
12.0
10.9
1.9
-57.7
120.0
162.2
162.9
TYR-64
ASN-65
14.3
14.9
19.3
6.1
150.1
143.1
-73.9
ASN-65
VAL-66
12.6
13.0
20.6
-11.6
79.8
73.9
10.6
Graph shows rotational transition at bending residues and can be used
to identify hinge bending residues.
Probably only informative for interdomain rotations greater than 20 degrees
Residue
iResidue
i+1Distance of hinge axis to residue i in
(A) Distance of hinge axis to residue i in
(A) Change in
(deg) Change in
(deg) Angle of psi(i) axis to hinge axis
(deg) Angle of psi(i) axis to hinge axis
(deg) Percentage Progress
TYR-70
ASP-71
4.1
4.7
-2.9
-12.5
68.1
78.3
4.3
ASP-71
ALA-72
3.8
4.3
18.0
2.0
52.7
55.7
23.6
ALA-72
ILE-73
6.5
7.2
-13.1
14.5
142.4
146.7
-10.2
ILE-73
GLY-74
4.3
5.1
4.2
-3.7
107.6
103.2
-6.0
GLY-74
GLU-75
2.8
3.5
-2.0
-6.0
83.5
91.1
-9.9
GLU-75
ILE-76
6.5
7.3
7.0
-2.2
30.1
19.7
11.1
ILE-76
LEU-77
7.4
7.7
3.0
1.8
69.0
63.9
12.4
LEU-77
GLY-78
6.0
5.6
-10.6
8.0
56.5
69.2
0.8
GLY-78
VAL-79
8.3
8.2
-0.2
-19.7
67.0
59.2
36.4
Graph shows rotational transition at bending residues and can be used
to identify hinge bending residues.
Probably only informative for interdomain rotations greater than 20 degrees