Iron-Responsive Element Binding Protein 1

(All numbering and residues are taken from first PDB file)

Bending Residue Dihedral Analysis

Residue
i
Residue
i+1
Distance of hinge axis to residue i in conformer 1
(A)
Distance of hinge axis to residue i in conformer 2
(A)
Change in psi (i)
(deg)
Change in phi (i+1)
(deg)
Angle of psi(i) axis to hinge axis conformer 1
(deg)
Angle of psi(i) axis to hinge axis conformer 2
(deg)
Percentage Progress
 TYR-184   LEU-185  11.9 11.4 13.9 -14.9 58.2 60.5 20.9
 GLY-175   ILE-176  18.1 18.7 -71.8 -10.6 140.7 129.4 -180.4
 ILE-176   ILE-177  19.3 19.4 -129.2 -66.6 108.1 147.2 368.4
 ILE-177   HIS-178  21.5 16.8 148.7 28.9 62.8 60.4 -171.4
 HIS-178   GLN-179  19.1 19.0 -19.2 18.7 64.0 112.5 -16.1
 GLN-179   VAL-180  16.0 16.3 3.3 -8.1 135.6 129.8 4.3
 VAL-180   ASN-181  18.2 15.5 -1.8 -0.9 113.1 71.0 -8.8
 ASN-181   LEU-182  20.1 19.2 4.2 -0.1 77.9 49.0 10.7
 LEU-182   GLU-183  17.1 20.3 1.0 18.3 143.3 88.9 7.3
 GLY-175   ILE-176  12.4 8.9 -71.8 -10.6 49.9 64.8 104.6
 ILE-176   ILE-177  14.3 9.4 -129.2 -66.6 58.0 42.3 213.7
 ILE-177   HIS-178  15.2 6.7 148.7 28.9 135.2 138.1 -293.5
 HIS-178   GLN-179  13.1 8.5 -19.2 18.7 102.4 55.4 12.8
 GLN-179   VAL-180  10.0 5.6 3.3 -8.1 59.9 67.3 0.8
 VAL-180   ASN-181  10.3 5.5 -1.8 -0.9 53.3 94.2 7.7
 ASN-181   LEU-182  11.6 9.2 4.2 -0.1 118.5 150.3 -5.9
 LEU-182   GLU-183  8.3 9.8 1.0 18.3 54.8 102.8 -16.0
 GLU-183   TYR-184  6.2 8.5 -6.3 74.5 120.8 128.6 52.0
 TYR-184   LEU-185  11.9 11.4 13.9 -14.9 58.2 60.5 20.9
 GLY-175   ILE-176  18.1 18.7 -71.8 -10.6 140.7 129.4 -180.4
 ILE-176   ILE-177  19.3 19.4 -129.2 -66.6 108.1 147.2 368.4
 ILE-177   HIS-178  21.5 16.8 148.7 28.9 62.8 60.4 -171.4
 HIS-178   GLN-179  19.1 19.0 -19.2 18.7 64.0 112.5 -16.1
 GLN-179   VAL-180  16.0 16.3 3.3 -8.1 135.6 129.8 4.3
 VAL-180   ASN-181  18.2 15.5 -1.8 -0.9 113.1 71.0 -8.8
 ASN-181   LEU-182  20.1 19.2 4.2 -0.1 77.9 49.0 10.7
 LEU-182   GLU-183  17.1 20.3 1.0 18.3 143.3 88.9 7.3
 GLY-175   ILE-176  12.4 8.9 -71.8 -10.6 49.9 64.8 104.6
 ILE-176   ILE-177  14.3 9.4 -129.2 -66.6 58.0 42.3 213.7
 ILE-177   HIS-178  15.2 6.7 148.7 28.9 135.2 138.1 -293.5
 HIS-178   GLN-179  13.1 8.5 -19.2 18.7 102.4 55.4 12.8
 GLN-179   VAL-180  10.0 5.6 3.3 -8.1 59.9 67.3 0.8
 VAL-180   ASN-181  10.3 5.5 -1.8 -0.9 53.3 94.2 7.7
 ASN-181   LEU-182  11.6 9.2 4.2 -0.1 118.5 150.3 -5.9
 LEU-182   GLU-183  8.3 9.8 1.0 18.3 54.8 102.8 -16.0
 GLU-183   TYR-184  6.2 8.5 -6.3 74.5 120.8 128.6 52.0

Downloading Image

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
i
Residue
i+1
Distance of hinge axis to residue i in conformer 1
(A)
Distance of hinge axis to residue i in conformer 2
(A)
Change in psi (i)
(deg)
Change in phi (i+1)
(deg)
Angle of psi(i) axis to hinge axis conformer 1
(deg)
Angle of psi(i) axis to hinge axis conformer 2
(deg)
Percentage Progress
 ILE-605   PRO-606  25.7 22.9 164.9 -16.7 86.4 73.6 148.5
 PRO-606   GLY-607  23.2 22.7 -5.5 0.6 147.1 165.3 -25.0
 GLY-607   MET-608  23.6 22.9 -15.0 5.9 132.6 103.1 -14.7
 MET-608   PHE-609  22.3 20.3 3.3 -10.2 100.0 107.1 -5.1
 PHE-609   LYS-610  18.9 17.8 3.8 -1.0 78.9 62.6 -12.3
 LYS-610   GLU-611  18.6 18.7 6.5 6.3 13.8 30.9 41.8
 GLU-611   VAL-612  19.0 17.5 -5.7 16.0 109.0 81.4 -14.2
 VAL-612   TYR-613  16.6 14.3 -2.4 41.0 72.5 84.5 -31.9
 TYR-613   GLN-614  13.8 13.7 -65.5 17.4 96.3 156.4 -96.1
 GLN-614   LYS-615  14.8 14.4 -9.6 52.7 125.5 120.5 121.4
 LYS-615   ILE-616  12.5 11.9 -27.0 -56.6 90.8 71.6 157.0
 ILE-616   GLU-617  10.0 9.1 -20.5 50.5 108.9 99.1 31.1
 GLU-617   THR-618  6.8 11.0 -24.2 36.3 153.3 155.6 25.9
 THR-618   VAL-619  8.1 11.0 -42.7 13.4 144.6 111.3 -89.6
 VAL-619   ASN-620  9.7 7.4 -9.3 2.7 135.2 66.3 10.4
 ASN-620   GLU-621  6.8 6.5 -143.5 16.0 128.4 106.7 -214.8
 GLU-621   SER-622  6.0 9.9 18.5 -30.4 69.3 31.2 -34.2
 SER-630   ASP-631  14.7 14.6 -140.8 -17.3 47.7 68.7 338.1
 ASP-631   LYS-632  16.4 16.2 -13.1 20.5 20.0 32.1 -63.3
 ILE-605   PRO-606  8.9 8.0 164.9 -16.7 67.4 31.1 241.8
 PRO-606   GLY-607  12.3 9.4 -5.5 0.6 150.4 133.1 -9.7
 ILE-605   PRO-606  5.8 7.1 164.9 -16.7 67.5 49.9 121.5
 PRO-606   GLY-607  5.8 9.5 -5.5 0.6 165.5 145.9 -8.6
 GLY-607   MET-608  6.1 7.4 -15.0 5.9 109.9 83.1 -3.0
 MET-608   PHE-609  2.6 4.3 3.3 -10.2 99.0 97.6 -5.7
 PHE-609   LYS-610  2.5 7.1 3.8 -1.0 52.8 37.4 0.2
 LYS-610   GLU-611  5.5 9.0 6.5 6.3 28.6 53.2 15.1
 GLU-611   VAL-612  3.4 6.3 -5.7 16.0 89.9 70.6 -5.1
 VAL-612   TYR-613  3.5 7.5 -2.4 41.0 84.0 103.9 5.4
 TYR-613   GLN-614  6.7 11.1 -65.5 17.4 125.3 153.0 -72.4
 GLN-614   LYS-615  8.0 10.8 -9.6 52.7 126.0 95.7 40.5
 LYS-615   ILE-616  8.9 9.7 -27.0 -56.6 69.3 67.6 87.2
 ILE-616   GLU-617  10.1 13.1 -20.5 50.5 109.3 123.8 24.0
 GLU-617   THR-618  13.8 15.3 -24.2 36.3 168.3 152.5 12.1
 THR-618   VAL-619  13.3 14.7 -42.7 13.4 123.3 88.7 -9.9
 VAL-619   ASN-620  10.6 15.2 -9.3 2.7 110.7 70.7 9.7
 ASN-620   GLU-621  13.5 18.3 -143.5 16.0 144.0 131.8 -158.4
 GLU-621   SER-622  14.5 19.5 18.5 -30.4 82.1 45.2 -11.9
 SER-630   ASP-631  32.7 32.5 -140.8 -17.3 45.3 59.8 147.2
 ASP-631   LYS-632  35.5 35.3 -13.1 20.5 22.7 8.7 -23.7
 ILE-605   PRO-606  25.7 22.9 164.9 -16.7 86.4 73.6 148.5
 PRO-606   GLY-607  23.2 22.7 -5.5 0.6 147.1 165.3 -25.0
 GLY-607   MET-608  23.6 22.9 -15.0 5.9 132.6 103.1 -14.7
 VAL-604   ILE-605  5.9 4.3 -142.1 64.5 105.2 87.0 -29.9
 ILE-605   PRO-606  8.9 8.0 164.9 -16.7 67.4 31.1 241.8
 PRO-606   GLY-607  12.3 9.4 -5.5 0.6 150.4 133.1 -9.7
 VAL-604   ILE-605  5.7 7.7 -142.1 64.5 88.1 73.1 26.8
 ILE-605   PRO-606  5.8 7.1 164.9 -16.7 67.5 49.9 121.5
 PRO-606   GLY-607  5.8 9.5 -5.5 0.6 165.5 145.9 -8.6
 GLY-607   MET-608  6.1 7.4 -15.0 5.9 109.9 83.1 -3.0
 ILE-605   PRO-606  25.7 22.9 164.9 -16.7 86.4 73.6 148.5
 PRO-606   GLY-607  23.2 22.7 -5.5 0.6 147.1 165.3 -25.0
 GLY-607   MET-608  23.6 22.9 -15.0 5.9 132.6 103.1 -14.7
 MET-608   PHE-609  22.3 20.3 3.3 -10.2 100.0 107.1 -5.1
 PHE-609   LYS-610  18.9 17.8 3.8 -1.0 78.9 62.6 -12.3
 LYS-610   GLU-611  18.6 18.7 6.5 6.3 13.8 30.9 41.8
 GLU-611   VAL-612  19.0 17.5 -5.7 16.0 109.0 81.4 -14.2
 VAL-612   TYR-613  16.6 14.3 -2.4 41.0 72.5 84.5 -31.9
 TYR-613   GLN-614  13.8 13.7 -65.5 17.4 96.3 156.4 -96.1
 GLN-614   LYS-615  14.8 14.4 -9.6 52.7 125.5 120.5 121.4
 LYS-615   ILE-616  12.5 11.9 -27.0 -56.6 90.8 71.6 157.0
 ILE-616   GLU-617  10.0 9.1 -20.5 50.5 108.9 99.1 31.1
 GLU-617   THR-618  6.8 11.0 -24.2 36.3 153.3 155.6 25.9
 THR-618   VAL-619  8.1 11.0 -42.7 13.4 144.6 111.3 -89.6
 VAL-619   ASN-620  9.7 7.4 -9.3 2.7 135.2 66.3 10.4
 ASN-620   GLU-621  6.8 6.5 -143.5 16.0 128.4 106.7 -214.8
 GLU-621   SER-622  6.0 9.9 18.5 -30.4 69.3 31.2 -34.2
 SER-630   ASP-631  14.7 14.6 -140.8 -17.3 47.7 68.7 338.1
 ASP-631   LYS-632  16.4 16.2 -13.1 20.5 20.0 32.1 -63.3
 VAL-604   ILE-605  5.9 4.3 -142.1 64.5 105.2 87.0 -29.9
 ILE-605   PRO-606  8.9 8.0 164.9 -16.7 67.4 31.1 241.8
 PRO-606   GLY-607  12.3 9.4 -5.5 0.6 150.4 133.1 -9.7
 VAL-604   ILE-605  5.7 7.7 -142.1 64.5 88.1 73.1 26.8
 ILE-605   PRO-606  5.8 7.1 164.9 -16.7 67.5 49.9 121.5
 PRO-606   GLY-607  5.8 9.5 -5.5 0.6 165.5 145.9 -8.6
 GLY-607   MET-608  6.1 7.4 -15.0 5.9 109.9 83.1 -3.0
 MET-608   PHE-609  2.6 4.3 3.3 -10.2 99.0 97.6 -5.7
 PHE-609   LYS-610  2.5 7.1 3.8 -1.0 52.8 37.4 0.2
 LYS-610   GLU-611  5.5 9.0 6.5 6.3 28.6 53.2 15.1
 GLU-611   VAL-612  3.4 6.3 -5.7 16.0 89.9 70.6 -5.1
 VAL-612   TYR-613  3.5 7.5 -2.4 41.0 84.0 103.9 5.4
 TYR-613   GLN-614  6.7 11.1 -65.5 17.4 125.3 153.0 -72.4
 GLN-614   LYS-615  8.0 10.8 -9.6 52.7 126.0 95.7 40.5
 LYS-615   ILE-616  8.9 9.7 -27.0 -56.6 69.3 67.6 87.2
 ILE-616   GLU-617  10.1 13.1 -20.5 50.5 109.3 123.8 24.0
 GLU-617   THR-618  13.8 15.3 -24.2 36.3 168.3 152.5 12.1
 THR-618   VAL-619  13.3 14.7 -42.7 13.4 123.3 88.7 -9.9
 VAL-619   ASN-620  10.6 15.2 -9.3 2.7 110.7 70.7 9.7
 ASN-620   GLU-621  13.5 18.3 -143.5 16.0 144.0 131.8 -158.4
 GLU-621   SER-622  14.5 19.5 18.5 -30.4 82.1 45.2 -11.9
 SER-630   ASP-631  32.7 32.5 -140.8 -17.3 45.3 59.8 147.2
 ASP-631   LYS-632  35.5 35.3 -13.1 20.5 22.7 8.7 -23.7

Downloading Image

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