| Literature DB >> 25484897 |
Sentot Joko Raharjo1, Chanif Mahdi2, Nurdiana Nurdiana3, Takheshi Kikuchi4, Fatchiyah Fatchiyah5.
Abstract
To understand the structural features that dictate the selectivity of the two isoforms of the prostaglandin H2 synthase (PGHS/COX), the three-dimensional (3D) structure of COX-1/COX-2 was assessed by means of binding energy calculation of virtual molecular dynamic with using ligand alpha-Patchouli alcohol isomers. Molecular interaction studies with COX-1 and COX-2 were done using the molecular docking tools by Hex 8.0. Interactions were further visualized by using Discovery Studio Client 3.5 software tool. The binding energy of molecular interaction was calculated by AMBER12 and Virtual Molecular Dynamic 1.9.1 software. The analysis of the alpha-Patchouli alcohol isomer compounds showed that all alpha-Patchouli alcohol isomers were suggested as inhibitor of COX-1 and COX-2. Collectively, the scoring binding energy calculation (with PBSA Model Solvent) of alpha-Patchouli alcohol isomer compounds (CID442384, CID6432585, CID3080622, CID10955174, and CID56928117) was suggested as candidate for a selective COX-1 inhibitor and CID521903 as nonselective COX-1/COX-2.Entities:
Year: 2014 PMID: 25484897 PMCID: PMC4251649 DOI: 10.1155/2014/850628
Source DB: PubMed Journal: Adv Bioinformatics ISSN: 1687-8027
Figure 12D and 3D structure of alpha-Patchouli isomers (CID442384, CID521903, CID6432585, CID3080622, CID10955174, and CID56928117).
Figure 2Ramachandran plot analysis of COX-1 and COX-2.
Figure 3Modeling analyses suggest that alpha-Patchouli alcohol isomer binds to COX-1 and COX-2. (a1) to (l1) 3D active site structure of COX-1/COX-2-alpha-Patchouli alcohol isomers (CID 521903, CID6432585, CID442384, CID306022, CID10955174, and CID56928117) complexes; we used Hex 8.0 Docking Software and Discovery Studio 3.5 Viewer Software; (a2) to (l2) Ramachandran plot analysis of COX-1/COX-2-alpha-Patchouli alcohol (CID 521903, CID6432585, CID442384, CID306022, CID10955174, and CID56928117) complexes; we used Discovery Studio 3.5 Viewer Software.
Figure 4Binding energy calculation of alpha-Patchouli alcohol isomers binds to COX-1/COX-2. (a)–(f) and (j)–(o) Virtual Molecule Dynamic Complexes of COX-1/COX-2-alpha-Patchouli alcohol isomers. (g), (h), (i), (p), (q), and (r) Comparison of binding energy calculation of alpha-Patchouli alcohol isomer-COX-1 (blue) and COX-2 (red) complexes. (s) Histogram of Binding energy calculation of COX-1 (blue)/COX-2 (red)-alpha-Patchouli alcohol isomer complexes.
Analysis of virtual modelling of COX-1/COX-2-alpha-Patchouli alcohol isomer complexes.
| No. | Virtual modelling | Active site (by Hex 8.0 software and then Discovery Studio 3.5 software) |
Binding energy calculation (Δ | Suggestion | ||
|---|---|---|---|---|---|---|
| COX-1 | COX-2 | COX-1 | COX-2 | |||
| 1 | Alpha-Patchouli alcohol CID442384 | TRP141A, GLU142A, SER145A, ASN146A, LEU226B, GLY227B, ASP231B, GLN243B, GLY237B, ASN239B, LEU240B, ASP238B, ARG335B | TRP139A, GLU140A, SER143A, ASN144A, LEU145A, GLY235B, GLU236B, THR237B, LEU238B, GLN241B, GLN330B | −28.386 ± 1.102 (VAR = 15.100, SD = 3.896, | −16.215 ± 0.985 (VAR = 12.056, SD = 3.481, | Selective of COX-1 |
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| 2 | Alpha-Patchouli alcohol CID521903 | SER123A, ASN124A, LEU125A, ILE126A, PRO127A, SER128A, PRO129A, GLN372A, PHE373A, GLN274A, LYS534A, PRO544B, GLU545B | LYS211B, THR212B, ASP213B, HIS214B, LYS215B, ARG222B, ILE274B, GLN298B, GLU290B, VAL291B, HEM682B, | −25.995 ± 0.952 (VAR = 11.264, SD = 3.365, SE = 0.238) | −25.185 ± 0.815 (VAR = 8.255, SD = 2.880, | Nonselective |
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| 3 | Alpha-Patchouli alcohol CID643285 | TRP141A, GLU142A, SER145A, ASN146A, LEU226B, ASP231B, GLY237B, ASP238B, ASN239B, LEU240B, GLN243B, ARG335B | TRP139A, GLU140A, SER143A, ASN144A, LEU145A, THR237B, LEU238B, GLY235B, GLU236B, GLN241B, GLN330B, LYS333B | −21.724 ± 0.802 (VAR = 7.996, SD = 2.835, | −16.215 ± 0.985 (VAR = 12.056, SD = 3.481, | Selective of COX-1 |
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| 4 | Alpha-Patchouli alcohol CID3080622 | SER123A, ASN124A, ILE126A, PRO127A, SER128A, PRO129A, GLN372A, PHE373A, GLN374A, LYS534A, PRO544B, GLU545B | TRP139A, SER143A, ASN144A, LEU145A, GLY235B, GLU236B, THR237B, LEU238B, GLN241B, LYS333B | −21.895 ± 0.770 (VAR = 7.367, SD = 2.721, | −17.020 ± 0.756 (VAR = 7.099, SD = 2.671, | Selective of COX-1 |
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| 5 | Alpha-Patchouli alcohol CID10955174 | TRP141A, GLU142A, SER145A, ASN146A, LEU226B, ASP231B, GLY237B, ASP238B, ASN239B, LEU240B, GLN243B, ARG335B | TRP139A, GLU140A, SER143A, ASN144A, LEU145A, GLY235B, GLU236B, THR237B, LEU238B, GLN241B, GLN330B, LYS33B | −21.007 ± 0.859 (VAR = 9.177, SD = 3.037, | −16.215 ± 0.985 (VAR = 12.056, SD = 3.481, | Selective of COX-1 |
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| 6 | Alpha-Patchouli alcohol CID56928117 | LEU226A, GLY237A, ASP238A, ASN239A, LEU240A, GLU241A, GLN243A, ARG335A, TRP141B, GLU142B, SER145B, ASN146B | GLY235A, GLU236A, THR237A, LEU238A, ASP239A, GLN241A, LYS333A, TRP139B, GLU140B, SER143B, ASN144B, LEU145B | −28.448 ± 0.955 (VAR = 11.339, SD = 3.376, | −17.833 ± 0.737 (VAR = 6.755, | Selective of COX-1 |
Figure 5Ligand binding pattern and 2D interaction of CD442384 with COX-1 (a) and COX-2 (b).