| Literature DB >> 29410835 |
Yang-Liu Xia1, Tong-Yi Dou1, Yong Liu1, Ping Wang2, Guang-Bo Ge2, Ling Yang2.
Abstract
Daphnetin (7,8-dihydroxycoumarin (7,8-DHC)) and its C-4 derivatives have multiple pharmacological activities, but the poor metabolic stability of these catechols has severely restricted their application in the clinic. Methylation plays important roles in catechol elimination, although thus far the effects of structural modifications on the metabolic selectivity and the catalytic efficacy of human catechol-O-methyltransferase (COMT) remain unclear. This study was aimed at exploring the structure-methylation relationship of daphnetin and its C-4 derivatives, including 4-methyl, 4-phenyl and 4-acetic acid daphnetin. It was achieved by identifying the methylated products generated and by careful characterization of the reaction kinetics. These catechols are selectively metabolized to the corresponding 8-O-methyl conjugates, and this regioselective methylation could be elucidated by flexible docking, in which all the 8-OH groups of these catechols are much closer than the 7-OH groups to catalytic residue LYS144 and methyl donor AdoMet. The results of the kinetic analyses revealed that the Clint values of the compounds could be strongly affected by the C-4 substitutions, which could be partially explained by the electronic effects of the C-4 substituents and the coordination modes of 7,8- dihydroxycoumarins in the active site of COMT. These findings provide helpful guidance for further structural modification of 7,8-DHCs to improve metabolic stability.Entities:
Keywords: 7; 8-dihydroxycoumarins; human catechol-O-methyltransferase; metabolic stability; structure–methylation relationship
Year: 2018 PMID: 29410835 PMCID: PMC5792912 DOI: 10.1098/rsos.171271
Source DB: PubMed Journal: R Soc Open Sci ISSN: 2054-5703 Impact factor: 2.963
Figure 1.Structures of daphnetin and its C-4 derivatives.
Figure 2.Chromatograms of incubation systems with (a) daphnetin, (b) 4-MDPN, (c) 4-PDPN and (d) 4-ADPN. Each substrate was incubated in human liver cytosol with SAM (+SAM) and without (−SAM) for 60 min. The diode-array detector was set at a wavelength of 325 nm.
Kinetics of daphnetin, 4-MDPN, 4-PDPN and 4-ADPN in HLC and S-COMT.
| Clint (μl min−1 mg−1) | ||||||
|---|---|---|---|---|---|---|
| compound | HLC | S-COMT | HLC | S-COMT | HLC | S-COMT |
| daphnetin | 0.21 ± 0.036 | 0.48 ± 0.071 | 0.11 ± 0.0034 | 81.4 ± 2.4 | 0.52 | 169.5 |
| 4-MDPN | 0.20 ± 0.029 | 1.07 ± 0.10 | 0.14 ± 0.0039 | 165.7 ± 3.5 | 0.70 | 154.8 |
| 4-PDPN | 0.089 ± 0.015 | 0.22 ± 0.034 | 0.17 ± 0.0047 | 93.3 ± 2.4 | 1.91 | 424.0 |
| 4-ADPN | 7.52 ± 0.64 | 7.93 ± 1.31 | 0.13 ± 0.0038 | 247.0 ± 14.6 | 0.017 | 31.1 |
Figure 3.Methylation kinetics of daphnetin and its C-4 derivatives in (a–d) HLC and (e–h) recombinant S-COMT. Data were expressed as mean ± s.d.
Figure 4.Docking simulation of (a) daphnetin, (b) 4-MDPN, (c) 4-PDPN, (d) 4-ADPN into human S-COMT. Distance values are in the unit Å.