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Magnesium in PDB 4j6g: Crystal Structure of Light and DCR3 Complex

Protein crystallography data

The structure of Crystal Structure of Light and DCR3 Complex, PDB code: 4j6g was solved by W.Liu, C.Zhan, J.B.Bonanno, R.C.Bhosle, S.G.Nathenson, S.C.Almo, Atoms-To-Animals: The Immune Function Network (Ifn), New York Structuralgenomics Research Consortium (Nysgrc), with X-Ray Crystallography technique. A brief refinement statistics is given in the table below:

Resolution Low / High (Å) 19.93 / 2.40
Space group P 21 3
Cell size a, b, c (Å), α, β, γ (°) 149.058, 149.058, 149.058, 90.00, 90.00, 90.00
R / Rfree (%) 19.4 / 23.2

Other elements in 4j6g:

The structure of Crystal Structure of Light and DCR3 Complex also contains other interesting chemical elements:

Chlorine (Cl) 2 atoms

Magnesium Binding Sites:

The binding sites of Magnesium atom in the Crystal Structure of Light and DCR3 Complex (pdb code 4j6g). This binding sites where shown within 5.0 Angstroms radius around Magnesium atom.
In total 2 binding sites of Magnesium where determined in the Crystal Structure of Light and DCR3 Complex, PDB code: 4j6g:
Jump to Magnesium binding site number: 1; 2;

Magnesium binding site 1 out of 2 in 4j6g

Go back to Magnesium Binding Sites List in 4j6g
Magnesium binding site 1 out of 2 in the Crystal Structure of Light and DCR3 Complex


Mono view


Stereo pair view

A full contact list of Magnesium with other atoms in the Mg binding site number 1 of Crystal Structure of Light and DCR3 Complex within 5.0Å range:
probe atom residue distance (Å) B Occ
C:Mg305

b:43.4
occ:1.00
O C:SER161 2.3 44.4 1.0
O C:ALA136 2.5 31.9 1.0
OG C:SER159 2.5 38.2 1.0
O C:PRO133 2.6 43.7 1.0
O C:HOH707 2.6 43.9 1.0
O C:CYS132 2.8 39.8 1.0
C C:PRO133 3.2 47.7 1.0
C C:CYS132 3.5 40.9 1.0
C C:SER161 3.5 50.8 1.0
C C:ALA136 3.6 30.1 1.0
CB C:SER159 3.7 37.5 1.0
N C:PRO134 3.8 43.3 1.0
CB C:CYS132 4.0 45.5 1.0
CA C:PRO134 4.1 38.6 1.0
OE1 C:GLU166 4.1 50.0 1.0
CA C:PRO133 4.2 42.7 1.0
N C:SER163 4.2 50.2 1.0
N C:PRO133 4.2 38.8 1.0
N C:ALA136 4.3 32.1 1.0
CA C:CYS132 4.4 48.1 1.0
N C:SER162 4.4 58.3 1.0
CA C:SER162 4.4 53.8 1.0
N C:SER161 4.4 41.9 1.0
CA C:ALA136 4.5 31.9 1.0
CA C:SER161 4.5 49.8 1.0
O C:SER159 4.5 33.6 1.0
N C:GLY137 4.6 31.1 1.0
CA C:GLY137 4.6 32.6 1.0
C C:SER159 4.7 31.3 1.0
C C:PRO134 4.7 34.4 1.0
C C:SER162 4.7 53.8 1.0
N C:GLY135 4.8 32.2 1.0
CA C:SER159 4.8 32.7 1.0
O C:GLU166 4.8 41.5 1.0
O C:SER163 4.8 46.9 1.0
CB C:SER163 4.9 46.0 1.0
CB C:ALA136 5.0 33.4 1.0

Magnesium binding site 2 out of 2 in 4j6g

Go back to Magnesium Binding Sites List in 4j6g
Magnesium binding site 2 out of 2 in the Crystal Structure of Light and DCR3 Complex


Mono view


Stereo pair view

A full contact list of Magnesium with other atoms in the Mg binding site number 2 of Crystal Structure of Light and DCR3 Complex within 5.0Å range:
probe atom residue distance (Å) B Occ
D:Mg302

b:48.9
occ:1.00
O D:ALA136 2.2 41.0 1.0
OG D:SER159 2.6 39.3 1.0
O D:SER161 2.6 49.3 1.0
O D:PRO133 2.6 53.8 1.0
O D:HOH406 2.6 47.3 1.0
O D:CYS132 2.8 49.2 1.0
C D:PRO133 3.2 56.4 1.0
C D:ALA136 3.4 37.3 1.0
C D:CYS132 3.5 50.0 1.0
CB D:SER159 3.5 39.1 1.0
C D:SER161 3.8 58.8 1.0
N D:PRO134 3.9 52.1 1.0
CB D:CYS132 3.9 49.9 1.0
N D:PRO133 4.1 50.0 1.0
CA D:PRO133 4.1 53.5 1.0
N D:ALA136 4.1 41.2 1.0
CA D:PRO134 4.2 44.9 1.0
CA D:CYS132 4.3 49.9 1.0
CA D:ALA136 4.3 40.2 1.0
N D:GLY137 4.3 39.2 1.0
CA D:GLY137 4.4 35.1 1.0
OE2 D:GLU166 4.6 59.7 1.0
N D:SER163 4.6 60.4 1.0
O D:SER159 4.6 36.8 1.0
N D:SER162 4.6 68.3 1.0
N D:SER161 4.7 51.5 1.0
C D:SER159 4.7 34.7 1.0
C D:PRO134 4.7 43.3 1.0
CA D:SER159 4.7 38.5 1.0
CA D:SER162 4.7 64.7 1.0
N D:GLY135 4.8 39.5 1.0
CA D:SER161 4.8 58.8 1.0
O D:GLU166 4.8 47.2 1.0
O D:SER163 4.9 48.5 1.0
CB D:ALA136 4.9 43.1 1.0

Reference:

W.Liu, C.Zhan, H.Cheng, P.R.Kumar, J.B.Bonanno, S.G.Nathenson, S.C.Almo. Mechanistic Basis For Functional Promiscuity in the Tnf and Tnf Receptor Superfamilies: Structure of the Light:DCR3 Assembly. Structure V. 22 1252 2014.
ISSN: ISSN 0969-2126
PubMed: 25087510
DOI: 10.1016/J.STR.2014.06.013
Page generated: Mon Aug 11 14:34:38 2025

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