Computational and Kinetic Studies of Acetylcholine Esterase Inhibition by Phenserine

  • Tabrez S
  • Damanhouri G
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Abstract

© 2019 Bentham Science Publishers. Background: The inhibition of cholinesterase enzymes is one of the promising strategies to manage several neurological disorders that include Alzheimer's disease (AD).� Material and Methods: In the current article, we estimated the potential inhibition of acetyl cholinesterase (AChE) by phenserine using slightly modified Ellman assay. To find out the binding interactions of phenserine with the catalytic site of AChE, a molecular docking study was also performed. Results: Phenserine was found to inhibit Electrophorus electricus AChE in a dose-dependent manner with an IC50 value of 0.013 µM. The kinetic analyses indicate that phenserine inhibits AChE in a mixed type manner (competi-tive and uncompetitive) with Ki values of 0.39 µmole/l and 0.21 µmole/l, respectively. On the other hand, Km and Vmax values were found to be 0.17 µM and 0.39 µM, respectively. The molecular docking studies indicate efficient binding of phenserine through 6 hydrogen bonds, 4 pi-alkyl interactions, and 1 pi-pi interaction within the AChE catalytic pocket. Conclusion: Results of our computational and kinetics studies indicated a mixed type inhibition by phenserine at AChE catalytic site.

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Tabrez, S., & Damanhouri, G. A. (2019). Computational and Kinetic Studies of Acetylcholine Esterase Inhibition by Phenserine. Current Pharmaceutical Design, 25(18), 2108–2112. https://doi.org/10.2174/1381612825666190618141015

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