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Magnesium in PDB 8ies: Cryo-Em Structure of ATP13A2 in the E1P-Adp State

Other elements in 8ies:

The structure of Cryo-Em Structure of ATP13A2 in the E1P-Adp State also contains other interesting chemical elements:

Aluminium (Al) 1 atom
Fluorine (F) 4 atoms

Magnesium Binding Sites:

The binding sites of Magnesium atom in the Cryo-Em Structure of ATP13A2 in the E1P-Adp State (pdb code 8ies). 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 Cryo-Em Structure of ATP13A2 in the E1P-Adp State, PDB code: 8ies:

Magnesium binding site 1 out of 1 in 8ies

Go back to Magnesium Binding Sites List in 8ies
Magnesium binding site 1 out of 1 in the Cryo-Em Structure of ATP13A2 in the E1P-Adp State


Mono view


Stereo pair view

A full contact list of Magnesium with other atoms in the Mg binding site number 1 of Cryo-Em Structure of ATP13A2 in the E1P-Adp State within 5.0Å range:
probe atom residue distance (Å) B Occ
P:Mg1202

b:63.1
occ:1.00
N P:GLY879 2.3 61.9 1.0
F2 P:ALF1201 2.3 56.6 1.0
F3 P:ALF1201 2.6 56.6 1.0
CB P:ASP878 2.9 59.5 1.0
OD2 P:ASP513 3.0 51.6 1.0
C P:ASP878 3.1 59.5 1.0
CA P:GLY879 3.2 61.9 1.0
O P:THR515 3.2 52.5 1.0
CA P:ASP878 3.2 59.5 1.0
N P:ASP878 3.3 59.5 1.0
AL P:ALF1201 3.3 56.6 1.0
O3B P:ADP1203 4.0 62.8 1.0
CG P:ASP878 4.1 59.5 1.0
CG P:ASP513 4.1 51.6 1.0
O P:ASP878 4.2 59.5 1.0
C P:GLY879 4.4 61.9 1.0
C P:THR515 4.4 52.5 1.0
OD1 P:ASP878 4.4 59.5 1.0
C P:GLY877 4.6 52.4 1.0
O2B P:ADP1203 4.6 62.8 1.0
PB P:ADP1203 4.6 62.8 1.0
F4 P:ALF1201 4.7 56.6 1.0
ND2 P:ASN881 4.7 60.0 1.0
O P:GLY879 4.8 61.9 1.0
F1 P:ALF1201 4.8 56.6 1.0
OD1 P:ASP513 4.9 51.6 1.0
O1B P:ADP1203 4.9 62.8 1.0
CB P:ASP513 4.9 51.6 1.0
OD2 P:ASP878 5.0 59.5 1.0

Reference:

J.Mu, C.Xue, L.Fu, Z.Yu, M.Nie, M.Wu, X.Chen, K.Liu, R.Bu, Y.Huang, B.Yang, J.Han, Q.Jiang, K.C.Chan, R.Zhou, H.Li, A.Huang, Y.Wang, Z.Liu. Conformational Cycle of Human Polyamine Transporter ATP13A2. Nat Commun V. 14 1978 2023.
ISSN: ESSN 2041-1723
PubMed: 37031211
DOI: 10.1038/S41467-023-37741-0
Page generated: Fri Aug 15 07:30:44 2025

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