Contacts of ligand SO4 803A in PDB entry 4IGT

Ligand-Protein Contacts (LPC) are derived with the LPC software (Sobolev V., Sorokine A., Prilusky J., Abola E.E. and Edelman M. (1999) Automated analysis of interatomic contacts in proteins. Bioinformatics, 15, 327-332). A short description of the analytical approach is given at the end of the page.


On this page you will find:

Table II
Residues in contact with ligand SO4 803A in PDB entry 4IGT
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Legend:
Dist - nearest distance (Å) between atoms of the ligand and the residue
Surf - contact surface area (Å2) between the ligand and the residue
HB   - hydrophilic-hydrophilic contact (hydrogen bond)
Arom - aromatic-aromatic contact
Phob - hydrophobic-hydrophobic contact
DC   - hydrophobic-hydrophilic contact (destabilizing contact)
+/-  - indicates presence/absence of a specific contacts
*    - indicates residues contacting ligand by their side chain
       (including CA atoms)

----------------------------------------------------------
                                  Specific contacts
                               ---------------------------
     Residue      Dist    Surf    HB    Arom    Phob    DC
----------------------------------------------------------
    527A  LYS*     2.9    39.9    +      -       -      -
    734A  GLU*     3.1    37.6    +      -       -      +
    735A  GLN*     3.3    24.6    +      -       -      -
    739A  CYS*     3.7    19.9    +      -       -      +
    741A  THR      4.3     0.5    +      -       -      -
    742A  MET*     5.2     1.2    -      -       -      +
    794A  CYS*     3.6    17.3    +      -       -      +
----------------------------------------------------------


Table III
List of putative hydrogen bonds between ligand SO4 803A and protein in PDB entry 4IGT
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Legend:
N     - ligand atom number in PDB entry
Dist  - distance (Å) between the ligand and protein atoms
Surf  - contact surface area (Å2) between the ligand and protein atoms
------------------------------------------------------------------------
    Ligand atom            Protein atom
-----------------   ----------------------------    Dist     Surf
  N   Name   Class    Residue       Name   Class
------------------------------------------------------------------------
  2   O1     I        LYS  527A     NZ     III       4.0      3.3
  2   O1     I        CYS  794A     O      II        4.0     10.0
  3   O2     I        LYS  527A     NZ     III       2.9     19.2
  3   O2     I        CYS  739A     O      II        3.7      6.6
  3   O2     I        GLU  734A     O      II        3.8      3.1
  3   O2     I        CYS  794A     O      II        4.7      0.2
  3   O2     I        THR  741A     O      II        4.8      0.3
  4   O3     I        GLU  734A     O      II        3.1     15.9
  4   O3     I        GLN  735A     NE2    III       3.3     18.4
  4   O3     I        GLN  735A     OE1    II        3.4      6.2
  4   O3     I        CYS  794A     O      II        4.3      0.2
  5   O4     I        LYS  527A     NZ     III       3.6      7.1
  5   O4     I        GLU  734A     OE2    II        4.3      3.6
  5   O4     I        THR  741A     O      II        4.3      0.2
------------------------------------------------------------------------


Table IV
Full list of atomic contacts with ligand SO4 803A in PDB entry 4IGT
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Total number of contacts is 28
Legend:
N     - ligand atom number in PDB entry
Dist  - distance (A) between the ligand and protein atoms
Surf  - contact surface area (A**2) between the ligand and protein atoms
*     - indicates destabilizing contacts
------------------------------------------------------------------------
    Ligand atom            Protein atom
-----------------   ----------------------------    Dist     Surf
  N   Name   Class    Residue       Name   Class
------------------------------------------------------------------------
  1   S      VI      LYS  527A     NZ     III       3.7       1.6  
  1   S      VI      GLU  734A     O      II        4.0       1.3  
  1   S      VI      CYS  794A     CB     IV        4.2       1.3  
  2   O1     I       LYS  527A     NZ     III       4.0       3.3  
  2   O1     I       CYS  794A     O      II        4.0      10.0  
  3   O2     I       LYS  527A     NZ     III       2.9      19.2  
  3   O2     I       LYS  527A     CE     VII       3.5       1.9  
  3   O2     I       CYS  739A     O      II        3.7       6.6  
  3   O2     I       CYS  739A     CB     IV        3.7      13.0* 
  3   O2     I       CYS  794A     CB     IV        3.8       2.3* 
  3   O2     I       GLU  734A     O      II        3.8       3.1  
  3   O2     I       CYS  739A     CA     VII       4.1       0.2  
  3   O2     I       CYS  739A     C      VI        4.2       0.2  
  3   O2     I       CYS  794A     O      II        4.7       0.2  
  3   O2     I       THR  741A     O      II        4.8       0.3  
  4   O3     I       GLU  734A     O      II        3.1      15.9  
  4   O3     I       GLN  735A     NE2    III       3.3      18.4  
  4   O3     I       GLN  735A     OE1    II        3.4       6.2  
  4   O3     I       CYS  794A     CB     IV        3.6       3.3* 
  4   O3     I       GLU  734A     CG     IV        4.0       0.2* 
  4   O3     I       CYS  794A     O      II        4.3       0.2  
  5   O4     I       LYS  527A     NZ     III       3.6       7.1  
  5   O4     I       LYS  527A     CE     VII       3.6       6.8  
  5   O4     I       GLU  734A     CG     IV        3.9      12.6* 
  5   O4     I       GLU  734A     OE2    II        4.3       3.6  
  5   O4     I       THR  741A     O      II        4.3       0.2  
  5   O4     I       GLU  734A     CD     VI        4.4       0.7  
  5   O4     I       MET  742A     CB     IV        5.2       1.2* 
------------------------------------------------------------------------


Table V
Complementarity values for the ligand SO4 803A in PDB entry 4IGT
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---------------------------------------------
Theoretical maximum (Å2)                 194
Actual value (Å2)                         75
Normalised complementarity              0.39
---------------------------------------------


Table VI
Normalised complementarity as a function of atomic substitution for ligand SO4 803A in PDB entry 4IGT
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Legend:
N- ligand atom number in PDB entry
Bold - indicates atomic substitution which could stabilize the complex
Italics- indicates atomic substitution which could destabilize the complex
Ligand atomAtom class
NTypeClassI IIIIIIVV VIVIIVIII
1 S VI 0.38 0.36 0.36 0.36 0.39 0.39 0.37 0.38
2 O1 I 0.39 0.29 0.36 0.25 0.39 0.39 0.36 0.29
3 O2 I 0.39 0.28 0.17 0.24 0.55 0.55 0.33 0.44
4 O3 I 0.39 0.16 0.20 0.01 0.43 0.43 0.24 0.20
5 O4 I 0.39 0.35 0.25 0.42 0.53 0.53 0.39 0.49


A short description of the analytical approach (back to top of page)

The analysis of ligand-protein contacts used in this page is based upon the surface complementarity approach developed in: Sobolev V., Wade R.C., Vriend G. and Edelman M. PROTEINS (1996) 25, 120-129.
The complementarity function therein is defined as:

CF=Sl-Si-E

Where Sl is the sum of all surface areas of legitimate atomic contacts between ligand and receptor, Si is the sum of all surface areas of illegitimate atomic contacts, and E is a repulsion term.

Legitimacy depends on the hydrophobic-hydrophilic properties of the contacting atoms. In order to define it, for each inter-atomic contact, eight atom classes have been introduced:


   I  Hydrophilic      - N and O that can donate and accept hydrogen bonds
                         (e.g., oxygen of hydroxyl group of Ser. or Thr)
  II  Acceptor         - N or O that can only accept a hydrogen bond
 III  Donor            - N that can only donate a hydrogen bond
  IV  Hydrophobic      - Cl, Br, I and all C atoms that are not in
                         aromatic rings and do not have a covalent bond to
                         a N or O atom
   V  Aromatic         - C in aromatic rings irrespective of any other 
                         bonds formed by the atom
  VI  Neutral          - C atoms that have a covalent bond to at least one
                         atom of class I or two or more atoms from class II
                         or III; atoms; S, F, P, and metal atoms in all cases
 VII  Neutral-donor    - C atoms that have a covalent bond with only one
                         atom of class III
VIII  Neutral-acceptor - C atoms that have a covalent bond with only 
                         one atom of class II
For each pair of contacts the state of legitimacy is shown below:

Legend:
+, legitimate
-, illegitimate
------------------------------------------------------------
  Atomic class           I  II  III   IV   V   VI  VII  VIII
------------------------------------------------------------
   I  (Hydrophilic)      +   +    +    -   +   +    +    +
  II  (Acceptor)         +   -    +    -   +   +    +    -
 III  (Donor)            +   +    -    -   +   +    -    +
  IV  (Hydrophobic)      -   -    -    +   +   +    +    +
   V  (Aromatic)         +   +    +    +   +   +    +    +
  VI  (Neutral)          +   +    +    +   +   +    +    +
 VII  (Neutral-donor)    +   +    -    +   +   +    -    +
VIII  (Neutral-acceptor) +   -    +    +   +   +    +    -
------------------------------------------------------------
WARNING !!
Atom classes for ligands are automatically assigned based on the atomic coordinates. However, in three cases the automatic assignment is currently ambiguous (due to low resolution). In these three cases, the user is advised to manually analyze the full list of contacts (Table IV).
1. Carbon atoms belonging to a 4-, 5- or 6-member ring are 
   considered "aromatic" (Class V) if the ring is approximately
   planar, and "hydrophobic" (Class IV) or "neutral" (Classes
   VI, VII, VIII) if the ring is non-planar.
2. The oxygen atom of a carbonyl or hydroxy group is considered
   "hydroxy" (Class I) if the CO bond is longer than 1.29 Å, and
   "carbonyl" (Class II) if shorter.
3. All nitrogen atoms are considered "hydrophilic" (Class I).

IN YOUR STRUCTURE, the following atoms fall in these ambiguous cases:
Ligand 3ZA  801
2. Oxygen ("hydroxy" or "carbonyl")
                     4 O2     5 O1    13 O3    14 O4    15 O5 
3. Nitrogen ("hydrophilic")
                    11 N1    16 N2 
Ligand GOL  806
2. Oxygen ("hydroxy" or "carbonyl")
                     2 O1     4 O2     6 O3 
Ligand GOL  807
2. Oxygen ("hydroxy" or "carbonyl")
                     2 O1     4 O2     6 O3 
Ligand GOL  808
2. Oxygen ("hydroxy" or "carbonyl")
                     2 O1     4 O2     6 O3 
Ligand GOL  809
2. Oxygen ("hydroxy" or "carbonyl")
                     2 O1     4 O2     6 O3 


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