Computational Screening of Repurposed Drugs for HMG-CoA Synthase 2 in Alzheimer's Disease

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초록

Background: HMGCS2 (mitochondrial 3-hydroxy-3-methylglutaryl-COA synthase 2) plays a pivotal role as a control enzyme in ketogenesis, and its association with the amyloid-beta protein precursor (A beta PP) in mitochondria implicates a potential involvement in Alzheimer's disease (AD) pathophysiology. Objective: Our study aimed at identifying repurposed drugs using the DrugBank database capable of inhibiting HMGCS2 activity. Methods: Exploiting the power of drug repurposing in conjunction with virtual screening and molecular dynamic (MD) simulations against 'HMGCS2', we present new in-silico insight into structure-based drug repurposing. Results: The initial molecules were screened for their binding affinity to HMGCS2. Subsequent interaction analyses and extensive 300 ns MD simulations were conducted to explore the conformational dynamics and stability of HMGCS2 in complex with the screened molecules, particularly Penfluridol and Lurasidone. Conclusions: The study revealed that HMGCS2 forms stable protein-ligand complexes with Penfluridol and Lurasidone. Our findings indicate that Penfluridol and Lurasidone competitively bind to HMGCS2 and warrant their further exploration as potential repurposed molecules for anti-Alzheimer's drug development.

키워드

Alzheimer's diseasedrug repurposinghuman mitochondrial 3-hydroxy-3-methylglutaryl-CoA synthase 2small molecule inhibitorsvirtual screeningHYDROGEN-BONDSPROTEINDISCOVERYDYNAMICS
제목
Computational Screening of Repurposed Drugs for HMG-CoA Synthase 2 in Alzheimer's Disease
저자
Shamsi, AnasFurkan, MohammadKhan, Mohd ShahnawazYadav, Dharmendra KumarShahwan, Moyad
DOI
10.3233/JAD-240376
발행일
2024-07
유형
Article
저널명
Journal of Alzheimer's Disease
100
2
페이지
475 ~ 485