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Magnesium in PDB 6c6t: Cryoem Structure of E.Coli Rna Polymerase Elongation Complex Bound with Rfah

Enzymatic activity of Cryoem Structure of E.Coli Rna Polymerase Elongation Complex Bound with Rfah

All present enzymatic activity of Cryoem Structure of E.Coli Rna Polymerase Elongation Complex Bound with Rfah:
2.7.7.6;

Other elements in 6c6t:

The structure of Cryoem Structure of E.Coli Rna Polymerase Elongation Complex Bound with Rfah also contains other interesting chemical elements:

Zinc (Zn) 2 atoms

Magnesium Binding Sites:

The binding sites of Magnesium atom in the Cryoem Structure of E.Coli Rna Polymerase Elongation Complex Bound with Rfah (pdb code 6c6t). 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 Cryoem Structure of E.Coli Rna Polymerase Elongation Complex Bound with Rfah, PDB code: 6c6t:

Magnesium binding site 1 out of 1 in 6c6t

Go back to Magnesium Binding Sites List in 6c6t
Magnesium binding site 1 out of 1 in the Cryoem Structure of E.Coli Rna Polymerase Elongation Complex Bound with Rfah


Mono view


Stereo pair view

A full contact list of Magnesium with other atoms in the Mg binding site number 1 of Cryoem Structure of E.Coli Rna Polymerase Elongation Complex Bound with Rfah within 5.0Å range:
probe atom residue distance (Å) B Occ
R:Mg1501

b:17.6
occ:1.00
OD2 J:ASP462 2.0 13.2 1.0
O3' R:A20 2.1 20.4 1.0
OD1 J:ASP462 2.1 13.2 1.0
CG J:ASP462 2.3 13.2 1.0
OD2 J:ASP460 2.4 14.8 1.0
OD1 J:ASP460 2.4 14.8 1.0
CG J:ASP460 2.7 14.8 1.0
C3' R:A20 3.4 20.4 1.0
OD1 J:ASP464 3.8 15.0 1.0
CB J:ASP462 3.8 13.2 1.0
OD2 J:ASP464 4.0 15.0 1.0
C4' R:A20 4.1 20.4 1.0
CB J:ASP460 4.2 14.8 1.0
CG J:ASP464 4.3 15.0 1.0
C5' R:A20 4.4 20.4 1.0
O2' R:A20 4.4 20.4 1.0
C2' R:A20 4.5 20.4 1.0
N J:ASP462 4.5 13.2 1.0
CA J:ASP462 4.7 13.2 1.0
O5' R:A20 4.9 20.4 1.0
N J:ASP460 5.0 14.8 1.0
C J:ASP462 5.0 13.2 1.0

Reference:

J.Y.Kang, R.A.Mooney, Y.Nedialkov, J.Saba, T.V.Mishanina, I.Artsimovitch, R.Landick, S.A.Darst. Structural Basis For Transcript Elongation Control By Nusg Family Universal Regulators. Cell V. 173 1650 2018.
ISSN: ISSN 1097-4172
PubMed: 29887376
DOI: 10.1016/J.CELL.2018.05.017
Page generated: Mon Sep 30 20:13:51 2024

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