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Atomistry » Magnesium » PDB 8dr5-8e0e » 8dxi » |
Magnesium in PDB 8dxi: Hiv-1 Reverse Transcriptase/Rilpivirine with Bound Fragment [1-(4- Fluorophenyl)-5-Methyl-1H-Pyrazol-4-Yl]Methanol at Multiple SitesEnzymatic activity of Hiv-1 Reverse Transcriptase/Rilpivirine with Bound Fragment [1-(4- Fluorophenyl)-5-Methyl-1H-Pyrazol-4-Yl]Methanol at Multiple Sites
All present enzymatic activity of Hiv-1 Reverse Transcriptase/Rilpivirine with Bound Fragment [1-(4- Fluorophenyl)-5-Methyl-1H-Pyrazol-4-Yl]Methanol at Multiple Sites:
2.7.7.49; 2.7.7.7; 3.1.13.2; 3.1.26.13; Protein crystallography data
The structure of Hiv-1 Reverse Transcriptase/Rilpivirine with Bound Fragment [1-(4- Fluorophenyl)-5-Methyl-1H-Pyrazol-4-Yl]Methanol at Multiple Sites, PDB code: 8dxi
was solved by
A.Chopra,
F.X.Ruiz,
J.D.Bauman,
E.Arnold,
with X-Ray Crystallography technique. A brief refinement statistics is given in the table below:
Other elements in 8dxi:
The structure of Hiv-1 Reverse Transcriptase/Rilpivirine with Bound Fragment [1-(4- Fluorophenyl)-5-Methyl-1H-Pyrazol-4-Yl]Methanol at Multiple Sites also contains other interesting chemical elements:
Magnesium Binding Sites:
The binding sites of Magnesium atom in the Hiv-1 Reverse Transcriptase/Rilpivirine with Bound Fragment [1-(4- Fluorophenyl)-5-Methyl-1H-Pyrazol-4-Yl]Methanol at Multiple Sites
(pdb code 8dxi). 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 Hiv-1 Reverse Transcriptase/Rilpivirine with Bound Fragment [1-(4- Fluorophenyl)-5-Methyl-1H-Pyrazol-4-Yl]Methanol at Multiple Sites, PDB code: 8dxi: Magnesium binding site 1 out of 1 in 8dxiGo back to![]() ![]()
Magnesium binding site 1 out
of 1 in the Hiv-1 Reverse Transcriptase/Rilpivirine with Bound Fragment [1-(4- Fluorophenyl)-5-Methyl-1H-Pyrazol-4-Yl]Methanol at Multiple Sites
![]() Mono view ![]() Stereo pair view
Reference:
A.Chopra,
J.D.Bauman,
F.X.Ruiz,
E.Arnold.
Halo Library, A Tool For Rapid Identification of Ligand Binding Sites on Proteins Using Crystallographic Fragment Screening. J.Med.Chem. V. 66 6013 2023.
Page generated: Fri Oct 4 00:58:04 2024
ISSN: ISSN 0022-2623 PubMed: 37115705 DOI: 10.1021/ACS.JMEDCHEM.2C01681 |
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