AI Article Synopsis

  • AChE is critical for breaking down acetylcholine, and its inhibition by anatoxin-a (ATX-a) can lead to serious health issues.
  • This study investigates the structural properties of ATX-a and its binding interactions with AChE, comparing it to atropine.
  • Molecular simulations reveal that both ATX-a and atropine effectively bind to AChE, with ATX-a showing strong binding energy (-81.659 kJ mol), but atropine having an even stronger affinity (-127.565 kJ mol), highlighting their potential as AChE inhibitors.

Article Abstract

Acetylcholinesterase (AChE) is crucial for the breakdown of acetylcholine to acetate and choline, while the inhibition of AChE by anatoxin-a (ATX-a) results in severe health complications. This study explores the structural characteristics of ATX-a and its interactions with AChE, comparing to the reference molecule atropine for binding mechanisms. Molecular docking simulations reveal strong binding affinity of both ATX-a and atropine to AChE, interacting effectively with specific amino acids in the binding site as potential inhibitors. Quantitative assessment using the MM-PBSA method demonstrates a significantly negative binding free energy of -81.659 kJ molfor ATX-a, indicating robust binding, while atropine exhibits a stronger binding affinity with a free energy of -127.565 kJ mol. Umbrella sampling calculates the Δvalues to evaluate binding free energies, showing a favorable Δof -36.432 kJ molfor ATX-a and a slightly lower value of -30.12 kJ molfor atropine. This study reveals the dual functionality of ATX-a, acting as both a nicotinic acetylcholine receptor agonist and an AChE inhibitor. Remarkably, stable complexes form between ATX-a and atropine with AChE at its active site, exhibiting remarkable binding free energies. These findings provide valuable insights into the potential use of ATX-a and atropine as promising candidates for modulating AChE activity.

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Source
http://dx.doi.org/10.1088/1478-3975/ad0caaDOI Listing

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Article Synopsis
  • AChE is critical for breaking down acetylcholine, and its inhibition by anatoxin-a (ATX-a) can lead to serious health issues.
  • This study investigates the structural properties of ATX-a and its binding interactions with AChE, comparing it to atropine.
  • Molecular simulations reveal that both ATX-a and atropine effectively bind to AChE, with ATX-a showing strong binding energy (-81.659 kJ mol), but atropine having an even stronger affinity (-127.565 kJ mol), highlighting their potential as AChE inhibitors.
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