Magnesium in PDB 8q0m: Outward-Facing, Closed Proteoliposome Complex I at 3.1 A. Initially Purified in Ddm.

Enzymatic activity of Outward-Facing, Closed Proteoliposome Complex I at 3.1 A. Initially Purified in Ddm.

All present enzymatic activity of Outward-Facing, Closed Proteoliposome Complex I at 3.1 A. Initially Purified in Ddm.:
1.6.5.3; 1.6.99.3; 7.1.1.2;

Other elements in 8q0m:

The structure of Outward-Facing, Closed Proteoliposome Complex I at 3.1 A. Initially Purified in Ddm. also contains other interesting chemical elements:

Zinc (Zn) 2 atoms
Potassium (K) 1 atom
Iron (Fe) 28 atoms

Magnesium Binding Sites:

The binding sites of Magnesium atom in the Outward-Facing, Closed Proteoliposome Complex I at 3.1 A. Initially Purified in Ddm. (pdb code 8q0m). This binding sites where shown within 5.0 Angstroms radius around Magnesium atom.
In total only one binding site of Magnesium was determined in the Outward-Facing, Closed Proteoliposome Complex I at 3.1 A. Initially Purified in Ddm., PDB code: 8q0m:

Magnesium binding site 1 out of 1 in 8q0m

Go back to Magnesium Binding Sites List in 8q0m
Magnesium binding site 1 out of 1 in the Outward-Facing, Closed Proteoliposome Complex I at 3.1 A. Initially Purified in Ddm.


Mono view


Stereo pair view

A full contact list of Magnesium with other atoms in the Mg binding site number 1 of Outward-Facing, Closed Proteoliposome Complex I at 3.1 A. Initially Purified in Ddm. within 5.0Å range:
probe atom residue distance (Å) B Occ
O:Mg402

b:77.2
occ:1.00
O1B O:DGT401 2.0 77.6 1.0
O1A O:DGT401 2.3 77.6 1.0
O1G O:DGT401 2.7 77.6 1.0
PB O:DGT401 3.1 77.6 1.0
PA O:DGT401 3.5 77.6 1.0
O3B O:DGT401 3.6 77.6 1.0
PG O:DGT401 3.6 77.6 1.0
O3A O:DGT401 3.7 77.6 1.0
OG O:SER36 3.9 71.8 1.0
CB O:SER36 4.0 71.8 1.0
O3G O:DGT401 4.1 77.6 1.0
O2B O:DGT401 4.2 77.6 1.0
O2A O:DGT401 4.3 77.6 1.0
OE1 O:GLU53 4.5 65.6 1.0
C5' O:DGT401 4.6 77.6 1.0
O5' O:DGT401 4.6 77.6 1.0
O2G O:DGT401 4.8 77.6 1.0

Reference:

D.N.Grba, J.J.Wright, W.Fisher, Z.Yin, J.Hirst. Molecular Mechanism of the Ischemia-Induced Regulatory Switch in Mammalian Complex I Science 2024.
ISSN: ESSN 1095-9203
DOI: 10.1126/SCIENCE.ADO2075
Page generated: Fri Oct 4 16:18:29 2024

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