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Mechanistic Insight into the Inhibition of Choline Acetyltransferase by Proton Pump Inhibitors.
Baidya, Anurag T K; Das, Bhanuranjan; Devi, Bharti; Långström, Bengt; Ågren, Hans; Darreh-Shori, Taher; Kumar, Rajnish.
Affiliation
  • Baidya ATK; Department of Pharmaceutical Engineering & Technology, Indian Institute of Technology (B.H.U.), Varanasi, 221005 U.P., India.
  • Das B; Department of Pharmaceutical Engineering & Technology, Indian Institute of Technology (B.H.U.), Varanasi, 221005 U.P., India.
  • Devi B; Department of Pharmaceutical Engineering & Technology, Indian Institute of Technology (B.H.U.), Varanasi, 221005 U.P., India.
  • Långström B; Department of Chemistry, Uppsala University, SE-751 20 Uppsala, Sweden.
  • Ågren H; Department of Physics and Astronomy, Uppsala University, Box 516, SE-751 20 Uppsala, Sweden.
  • Darreh-Shori T; Division of Clinical Geriatrics, Centre for Alzheimer Research, Department of Neurobiology, Care Sciences and Society, Karolinska Institutet, NEO, Eighth Floor, 141 52 Stockholm, Sweden.
  • Kumar R; Department of Pharmaceutical Engineering & Technology, Indian Institute of Technology (B.H.U.), Varanasi, 221005 U.P., India.
ACS Chem Neurosci ; 14(4): 749-765, 2023 02 15.
Article in En | MEDLINE | ID: mdl-36749117
ABSTRACT
Various pharmacoepidemiological investigational studies have indicated that Proton Pump Inhibitors (PPIs) may increase the likelihood of developing Alzheimer's disease (AD) and non-AD related dementias. Previously, we have reported the inhibition of the acetylcholine biosynthesizing enzyme choline acetyltransferase (ChAT) by PPIs, for which omeprazole, lansoprazole, and pantoprazole exhibited IC50 values of 0.1, 1.5, and 5.3 µM, respectively. In this study we utilize a battery of computational tools to perceive a mechanistic insight into the molecular interaction of PPIs with the ChAT binding pocket that may further help in designing novel ChAT ligands. Various in-silico tools make it possible for us to elucidate the binding interaction, conformational stability, and dynamics of the protein-ligand complexes within a 200 ns time frame. Further, the binding free energies for the PPI-ChAT complexes were explored. The results suggest that the PPIs exhibit equal or higher binding affinity toward the ChAT catalytic tunnel and are stable throughout the simulated time and that the pyridine ring of the PPIs interacts primarily with the catalytic residue His324. A free energy landscape analysis showed that the folding process was linear, and the residue interaction network analysis can provide insight into the roles of various amino acid residues in stabilization of the PPIs in the ChAT binding pocket. As a major factor for the onset of Alzheimer's disease is linked to cholinergic dysfunction, our previous and the present findings give clear insight into the PPI interaction with ChAT. The scaffold can be further simplified to develop novel ChAT ligands, which can also be used as ChAT tracer probes for the diagnosis of cholinergic dysfunction and to initiate timely therapeutic interventions to prevent or delay the progression of AD.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Proton Pump Inhibitors / Alzheimer Disease Limits: Humans Language: En Journal: ACS Chem Neurosci Year: 2023 Document type: Article Affiliation country: India

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Proton Pump Inhibitors / Alzheimer Disease Limits: Humans Language: En Journal: ACS Chem Neurosci Year: 2023 Document type: Article Affiliation country: India
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