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  4. Biological Implications of the Intrinsic Deformability of Human Acetylcholinesterase Induced by Diverse Compounds: A Computational Study
 
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Biological Implications of the Intrinsic Deformability of Human Acetylcholinesterase Induced by Diverse Compounds: A Computational Study

Journal
Biology
ISSN
2079-7737
Publisher
MDPI
Date Issued
2024
Author(s)
Alvarado, Ysaías J.
González-Paz, Lenin
Paz , José L.
Loroño-González, Marcos A.
Santiago Contreras, Julio
Lossada, Carla
Vivas, Alejandro
Marrero Ponce, Yovani  
Facultad de Ingeniería - CampCM  
Martínez Ríos, Félix Orlando  
Facultad de Ingeniería - CampCM  
Rodriguez-Lugo, Patricia
Balladores, Yanpiero
Tellez-Maqueo, David-Ezequiel
Type
Resource Types::text::journal::journal article
DOI
10.3390/biology13121065
URL
https://scripta.up.edu.mx/handle/20.500.12552/11797
Abstract
The enzyme acetylcholinesterase (AChE) plays a crucial role in the termination of nerve impulses by hydrolyzing the neurotransmitter acetylcholine (ACh). The inhibition of AChE has emerged as a promising therapeutic approach for the management of neurological disorders such as Lewy body dementia and Alzheimer’s disease. The potential of various compounds as AChE inhibitors was investigated. In this study, we evaluated the impact of natural compounds of interest on the intrinsic deformability of human AChE using computational biophysical analysis. Our approach incorporates classical dynamics, elastic networks (ENM and NMA), statistical potentials (CUPSAT and SWOTein), energy frustration (Frustratometer), and volumetric cavity analyses (MOLE and PockDrug). The results revealed that cyanidin induced significant changes in the flexibility and rigidity of AChE, especially in the distribution and volume of internal cavities, compared to model inhibitors such as TZ2PA6, and through a distinct biophysical-molecular mechanism from the other inhibitors considered. These findings suggest that cyanidin could offer potential mechanistic pathways for future research and applications in the development of new treatments for neurodegenerative diseases. ©The authors ©MDPI
Subjects

Alzheimer’s disease

Structural flexibilit...

AChE inhibitors

License
Acceso Abierto
URL License
https://creativecommons.org/licenses/by-nc-sa/4.0/
How to cite
Alvarado, Y. J., González-Paz, L., Paz, J. L., Loroño-González, M. A., Santiago Contreras, J., Lossada, C., Vivas, A., Marrero-Ponce, Y., Martinez-Rios, F., Rodriguez-Lugo, P., Balladores, Y., & Vera-Villalobos, J. (2024). Biological Implications of the Intrinsic Deformability of Human Acetylcholinesterase Induced by Diverse Compounds: A Computational Study. In Biology (Vol. 13, Issue 12, p. 1065). MDPI AG. https://doi.org/10.3390/biology13121065

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