4.5 Article

Synthesis and Structure-Activity Relationships of 3-Arylisoquinolone Analogues as Highly Specific hCES2A Inhibitors

Journal

CHEMMEDCHEM
Volume 16, Issue 2, Pages 388-398

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/cmdc.202000581

Keywords

3-arylisoquinolone; hCES2A; specific; structure-activity relationships

Funding

  1. National Key Research and Development Program of China [2016YFA0502301, 2017YFC1700200, 2017YFC1702000]
  2. National Major Scientific and Technological Special Project for Significant New Drugs Development [2018ZX09711002]
  3. Natural Science Foundation of China [81922070, 81973286, 81973393, 82003847]
  4. Natural Science Foundation of Shanghai, China [19ZR1467800]
  5. Program of Shanghai Academic/Technology Research Leader [18XD1403600]

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A new compound was found to exhibit strong inhibitory effects on human carboxylesterase 2A (hCES2A), with better activity in living cells, which may have important implications for drug metabolism. Molecular docking simulations demonstrated that these compounds can act as mixed inhibitors with good specificity and inhibitory potency.
Mammalian carboxylesterases (CES) are key enzymes that participate in the hydrolytic metabolism of various endogenous and exogenous substrates. Human carboxylesterase 2A (hCES2A), mainly distributed in the small intestine and colon, plays a significant role in the hydrolysis of many drugs. In this study, 3-arylisoquinolones3 h[3-(4-(benzyloxy)-3-methoxyphenyl)-7,8-dimethoxyisoquinolin-1(2H)-one] and4 a[3-(4-(benzyloxy)-3-methoxyphenyl)-4-bromo-7,8-dimethoxyisoquinolin-1(2H)-one] were found to have potent inhibitory effects on hCES2A (IC50=0.68 mu M,K-i=0.36 mu M) and excellent specificity (more than 147.05-fold over hCES1 A). Moreover,4 aexhibited threefold improved inhibition on intracellular hCES2A in living HepG2 cells relative to3 h, with an IC(50)value of 0.41 mu M. Results of inhibition kinetics studies and molecular docking simulations demonstrate that both3 hand4 acan bind to multiple sites on hCES2A, functioning as mixed inhibitors. Structure-activity relationship analysis revealed that the lactam moiety on the B ring is crucial for specificity towards hCES2A, while a benzyloxy group is optimal for hCES2A inhibitory potency; the introduction of a bromine atom may enhance cell permeability, thereby increasing the intracellular hCES2A inhibitory activity.

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