| Literature DB >> 28241010 |
Huey Chong Kwong1, C S Chidan Kumar2, Siau Hui Mah3, Tze Shyang Chia4, Ching Kheng Quah4, Zi Han Loh3, Siddegowda Chandraju5, Gin Keat Lim1.
Abstract
Biphenyl-based compounds are clinically important for the treatments of hypertension and inflammatory, while many more are under development for pharmaceutical uses. In the present study, a series of 2-([1,1'-biphenyl]-4-yl)-2-oxoethyl benzoates, 2(a-q), and 2-([1,1'-biphenyl]-4-yl)-2-oxoethyl pyridinecarboxylate, 2(r-s) were synthesized by reacting 1-([1,1'-biphenyl]-4-yl)-2-bromoethan-1-one with various carboxylic acids using potassium carbonate in dimethylformamide at ambient temperature. Single-crystal X-ray diffraction studies revealed a more closely packed crystal structure can be produced by introduction of biphenyl moiety. Five of the compounds among the reported series exhibited significant anti-tyrosinase activities, in which 2p, 2r and 2s displayed good inhibitions which are comparable to standard inhibitor kojic acid at concentrations of 100 and 250 μg/mL. The inhibitory effects of these active compounds were further confirmed by computational molecular docking studies and the results revealed the primary binding site is active-site entrance instead of inner copper binding site which acted as the secondary binding site.Entities:
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Year: 2017 PMID: 28241010 PMCID: PMC5328250 DOI: 10.1371/journal.pone.0170117
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1The reaction scheme for the synthesis of 2-([1,1'-biphenyl]-4-yl)-2-oxoethyl benzoates, 2(a-q), and 2-([1,1'-biphenyl]-4-yl)-2-oxoethyl pyridinecarboxylate, 2r&2s.
Fig 2General scheme of biphenyl esters with torsion angles τ1, τ2, τ3 and τ4.
Summary of torsion angles*.
| Compound | Substituent | τ1 | τ2 | τ3 | τ4 |
|---|---|---|---|---|---|
| 2-chlorobenzene | -176.57 | -160.15 | 70.26 | 172.44 | |
| 3-chlorobenzene | -27.21 | 172.23 | 76.16 | 8.26 | |
| 4-chlorobenzene | 149.13 | 173.43 | 73.32 | 154.95 | |
| 2,4-dichlorobenzene | -151.14 | -175.31 | 77.09 | 174.74 | |
| 3-methylbenzene | -176.21 | 2.23 | 76.32 | 0.04 | |
| 2-methoxybenzene | -127.41 | -170.83 | 77.17 | -148.66 | |
| 3-methoxybenzene | 149.09 | 7.15 | -75.65 | -6.36 | |
| 4-methoxybenzene | 178.39 | -6.54 | -72.21 | -178.03 | |
| 2-nitrobenzene | -177.09 | 6.76 | 76.59 | -101.32 | |
| 3-nitrobenzene | -80.25, -109.38 | 5.94, 164.3 | -79.04, 78.89 | 173.27, 173.28 | |
| 4-nitrobenzene | -178.13 | -5.47 | 83.95 | -158.17 | |
| 2-aminobenzene | 149.63 | -14.78 | 77.31 | 169.15 | |
| 3-aminobenzene | -156.75 | 170.24 | 89.69 | 1.4 | |
| 4-aminobenzene | 161.03 | 12.88 | 71.34 | -5.13 | |
| 2-pyridine | -164.34, -178.05 | -176.66, -33.91 | -78.65, -79.57 | 177.08, -16.00 | |
| 3-pyridine | 141.69, 145.88 | 5.35, 26.92 | 74.9, -77.11 | 16.14, 1.67 |
* τ1 = Torsion angle of C5—C6—C7—C12; τ2 = Torsion angle of C9—C10—C13—C14; τ3 = Torsion angle of C13—C14—O1—C15; τ4 = Torsion angle of O1—C15—C16—C17.
Fig 3Partial crystal packing of 2d and 2o and their overlay diagram.
Summary of structural occupancy of present and reported compounds.
| Compound | Packing coefficient (%) | Compound | Packing coefficient (%) | Compound | Packing coefficient (%) |
|---|---|---|---|---|---|
| 64.59 | 61.08 | 63.22 | |||
| 71.73 | 61.07 | 63.04 | |||
| 65.37 | 61.85 | 65.80 | |||
| 63.11 | 63.05 | 64.40 | |||
| 63.28 | 61.24 | 65.26 | |||
| 65.07 | 61.81 | 62.07 | |||
| 66.93 | 60.61 | 61.06 | |||
| 63.76 | 63.85 | 67.22 | |||
| 65.74 | 66.55 | 63.92 | |||
| 75.69 | 64.07 | 66.98 | |||
| 64.99 | 63.94 | 68.55 | |||
| 62.42 | 64.33 | 66.18 | |||
| 67.17 | 62.08 | 64.37 | |||
| 68.61 | 63.98 | 60.66 | |||
| 77.33 | 67.27 | 63.77 | |||
| 64.42 | 65.07 | 62.53 | |||
| 61.11 | 68.83 | 62.37 | |||
| 61.32 | 62.96 | 66.04 | |||
| 62.33 | 62.38 | 63.97 | |||
| 62.53 | 64.89 | 64.99 | |||
| 60.79 | 68.00 | 66.25 | |||
| 60.97 | 65.64 | 68.65 | |||
| 61.68 | 64.03 | 63.55 | |||
| 61.02 | 63.03 | 63.37 | |||
| 61.58 | 63.25 |
Fig 4Structural occupancy comparison of biphenyl benzoates, phenacyl benzoates and adamantyl benzoates.
Fig 5The percentage of tyrosinse inhibition (mean±SD) with n = 3.
# and * indicate p<0.05.
Fig 6(a) Kojic acic binding mode in the crystal structure of TyrBm. Putative binding mode inside the binding gorge of TyrBm of ligands: (b) 2i, (c) 2o, (d) 2p, (e)2r and (f) 2s.