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New pyrazoline bearing 4(3H)-quinazolinone inhibitors of monoamine oxidase: Synthesis,biological evaluation,and structural determinants of MAO-A and MAO-B selectivity
Authors:Nesrin Gökhan-Kelekçi  Semra Koyuno?lu  Samiye Yabano?lu  Kemal Yelekçi  Özen Özgen  Gülberk Uçar  Kevser Erol  Engin Kendi  Akgül Ye?ilada
Institution:1. Hacettepe University, Faculty of Pharmacy, Department of Pharmaceutical Chemistry, 06100 S?hh?ye, Ankara, Turkey;2. Hacettepe University, Faculty of Pharmacy, Department of Basic Pharmaceutical Sciences, 06100 S?hh?ye, Ankara, Turkey;3. Hacettepe University, Faculty of Pharmacy, Department of Biochemistry, 06100 S?hh?ye, Ankara, Turkey;4. Kadir Has University, The Faculty of Arts and Sciences, 34080 Fatih, ?stanbul, Turkey;5. Hacettepe University, Faculty of Engineering, Department of Physics Engineering, 06800 Beytepe, Ankara, Turkey;6. Osmangazi University, Faculty of Medicine, Eski?ehir, Turkey
Abstract:A new series of pyrazoline derivatives were prepared starting from a quinazolinone ring and evaluated for antidepressant, anxiogenic and MAO-A and -B inhibitory activities by in vivo and in vitro tests, respectively. Most of the synthesized compounds showed high activity against both the MAO-A (compounds 4a4h, 4j4n, and 5g5l) and the MAO-B (compounds 4i and 5a5f) isoforms. However, none of the novel compounds showed antidepressant activity except for 4b. The reason for such biological properties was investigated by computational methods using recently published crystallographic models of MAO-A and MAO-B. The differences in the intermolecular hydrophobic and H-bonding of ligands to the active site of each MAO isoform were correlated to their biological data. Compounds 4i, 4k, 5e, 5i, and 5l were chosen for their ability to reversibly inhibit MAO-B and MAO-A and the availability of experimental inhibition data. Observation of the docked positions of these ligands revealed interactions with many residues previously reported to have an effect on the inhibition of the enzyme. Among the pyrazoline derivatives, it appears that the binding interactions for this class of compounds are mostly hydrophobic. All have potential edge-to-face hydrophobic interactions with F343, as well as π–π stacking with Y398 and other hydrophobic interactions with L171. Strong hydrophobic and H-bonding interactions in the MAO recognition of 4i could be the reason why this compound shows selectivity toward the MAO-B isoform. The very high MAO-B selectivity for 4i can be also explained in terms of the distance between the FAD and the compound, which was greater in the complex of MAO-A-4i as compared to the corresponding MAO-B complex.
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