3,4-Dihydroquinazoline derivatives inhibit the activities of cholinesterase enzymes.

Bioorg Med Chem Lett

Research Institute for Basic Sciences and Department of Chemistry, College of Sciences, Kyung Hee University, Seoul 02447, Republic of Korea; KHU-KIST Department of Converging Science and Technology, Kyung Hee University, Seoul 02447, Republic of Korea. Electronic address:

Published: March 2017

AI Article Synopsis

  • A variety of 3,4-dihydroquinazoline derivatives were tested for their ability to inhibit the enzymes acetylcholinesterase (AChE) and butyrylcholinesterase (BChE), revealing weak AChE and strong BChE inhibition among most compounds.
  • Compounds 8b and 8d showed the highest effectiveness against BChE, with IC values of 45nM and 62nM, indicating a significantly greater affinity for BChE compared to others.
  • Molecular docking simulations were used to analyze how these compounds bind to BChE, confirming that compounds 8b and 8d interact more efficiently with specific binding sites, supporting their strong inhibitory

Article Abstract

A series of 3,4-dihydroquinazoline derivatives consisting of the selected compounds from our chemical library on the diversity basis and the new synthetic compounds were in vitro tested for their inhibitory activities for both acetylcholinesterase (AChE, from electric eel) and butyrylcholinesterase (BChE, from equine serum) enzymes. It was discovered that most of the compounds displayed weak AChE and strong BuChE inhibitory activities. In particular, compound 8b and 8d were the most active compounds in the series against BChE with IC values of 45nM and 62nM, as well as 146- and 161-fold higher affinity to BChE, respectively. To understand the excellent activity of these compounds, molecular docking simulations were performed to get better insights into the mechanism of binding of 3,4-dihydroquinazoline derivatives. As expected, compound 8b and 8d bind to both catalytic anionic site (CAS) and peripheral site (PS) of BChE with better interaction energy values than AChE, in agreement with our experimental data. Furthermore, the non-competitive/mixed-type inhibitions of both compounds further confirmed their dual binding nature in kinetic studies.

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Source
http://dx.doi.org/10.1016/j.bmcl.2017.01.068DOI Listing

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