Magnesium in PDB 4yeh: Crystal Structure of MG2+ Ion Containing Hemopexin Fold From Kabuli Chana (Chickpea White) at 2.45A Resolution Reveals A Structural Basis of Metal Ion Transport

Protein crystallography data

The structure of Crystal Structure of MG2+ Ion Containing Hemopexin Fold From Kabuli Chana (Chickpea White) at 2.45A Resolution Reveals A Structural Basis of Metal Ion Transport, PDB code: 4yeh was solved by S.Kumar, A.Singh, S.Yamini, A.Bhushan, S.Dey, S.Sharma, T.P.Singh, with X-Ray Crystallography technique. A brief refinement statistics is given in the table below:

Resolution Low / High (Å) 69.70 / 2.45
Space group P 3
Cell size a, b, c (Å), α, β, γ (°) 80.481, 80.481, 69.177, 90.00, 90.00, 120.00
R / Rfree (%) 15.1 / 19.4

Magnesium Binding Sites:

The binding sites of Magnesium atom in the Crystal Structure of MG2+ Ion Containing Hemopexin Fold From Kabuli Chana (Chickpea White) at 2.45A Resolution Reveals A Structural Basis of Metal Ion Transport (pdb code 4yeh). 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 MG2+ Ion Containing Hemopexin Fold From Kabuli Chana (Chickpea White) at 2.45A Resolution Reveals A Structural Basis of Metal Ion Transport, PDB code: 4yeh:
Jump to Magnesium binding site number: 1; 2;

Magnesium binding site 1 out of 2 in 4yeh

Go back to Magnesium Binding Sites List in 4yeh
Magnesium binding site 1 out of 2 in the Crystal Structure of MG2+ Ion Containing Hemopexin Fold From Kabuli Chana (Chickpea White) at 2.45A Resolution Reveals A Structural Basis of Metal Ion Transport


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 MG2+ Ion Containing Hemopexin Fold From Kabuli Chana (Chickpea White) at 2.45A Resolution Reveals A Structural Basis of Metal Ion Transport within 5.0Å range:
probe atom residue distance (Å) B Occ
A:Mg301

b:12.8
occ:1.00
O A:ASP65 2.3 12.2 1.0
O A:ASP121 2.4 12.3 1.0
O A:ASP174 2.6 14.3 1.0
OD1 A:ASN7 2.6 21.6 1.0
O A:ASN7 2.7 23.9 1.0
O A:HOH454 3.0 40.5 1.0
C A:ASP65 3.5 11.1 1.0
C A:ASP121 3.5 11.3 1.0
CG A:ASN7 3.7 21.9 1.0
C A:ASP174 3.7 15.4 1.0
C A:ASN7 3.7 23.4 1.0
CA A:ASP121 4.0 11.6 1.0
CA A:ASN7 4.1 22.7 1.0
CA A:ASP65 4.1 11.1 1.0
CB A:ASP65 4.2 9.8 1.0
CA A:ASP174 4.3 16.3 1.0
CB A:ASN7 4.4 21.9 1.0
N A:CYS66 4.5 11.8 1.0
O A:ILE120 4.5 10.6 1.0
ND2 A:ASN7 4.6 18.7 1.0
N A:ALA122 4.6 11.7 1.0
N A:SER175 4.8 14.6 1.0
CB A:ASP121 4.9 12.2 1.0
N A:ALA8 4.9 22.3 1.0
CA A:CYS66 4.9 11.8 1.0
CG A:ASP65 5.0 9.7 1.0

Magnesium binding site 2 out of 2 in 4yeh

Go back to Magnesium Binding Sites List in 4yeh
Magnesium binding site 2 out of 2 in the Crystal Structure of MG2+ Ion Containing Hemopexin Fold From Kabuli Chana (Chickpea White) at 2.45A Resolution Reveals A Structural Basis of Metal Ion Transport


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 MG2+ Ion Containing Hemopexin Fold From Kabuli Chana (Chickpea White) at 2.45A Resolution Reveals A Structural Basis of Metal Ion Transport within 5.0Å range:
probe atom residue distance (Å) B Occ
B:Mg301

b:13.7
occ:1.00
O B:ASP65 2.3 13.7 1.0
O B:ASN7 2.3 13.5 1.0
OD1 B:ASN7 2.4 12.0 1.0
O B:ASP174 2.6 17.2 1.0
O B:ASP121 2.7 11.7 1.0
O B:HOH484 2.9 20.1 1.0
C B:ASN7 3.4 12.8 1.0
CG B:ASN7 3.4 11.9 1.0
C B:ASP65 3.5 12.4 1.0
C B:ASP121 3.6 12.2 1.0
C B:ASP174 3.8 16.6 1.0
CA B:ASN7 3.9 12.7 1.0
CA B:ASP121 3.9 12.8 1.0
CB B:ASN7 4.2 12.4 1.0
CA B:ASP65 4.3 11.1 1.0
CA B:ASP174 4.4 19.5 1.0
CB B:ASP65 4.4 11.6 1.0
ND2 B:ASN7 4.4 12.7 1.0
N B:CYS66 4.5 14.1 1.0
CB B:ASP121 4.5 12.0 1.0
N B:ALA8 4.5 12.6 1.0
O B:ILE120 4.7 15.3 1.0
CA B:CYS66 4.7 14.0 1.0
N B:ALA122 4.8 12.8 1.0
N B:SER175 4.9 14.6 1.0

Reference:

S.Kumar, A.Singh, S.Yamini, A.Bhushan, S.Dey, S.Sharma, T.P.Singh. Crystal Structure of MG2+ Ion Containing Hemopexin Fold From Kabuli Chana (Chickpea White) at 2.45A Resolution Reveals A Structural Basis of Metal Ion Transport To Be Published.
Page generated: Mon Dec 14 19:53:35 2020

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