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  3. Factors Impacting the Gastrointestinal Digestive Enzymes Fate of Magnesium Oxide Clusters: In Silico Characterization.
 

Factors Impacting the Gastrointestinal Digestive Enzymes Fate of Magnesium Oxide Clusters: In Silico Characterization.

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BORIS DOI
10.48620/89208
Date of Publication
June 6, 2025
Publication Type
Article
Division/Institute

Department of Chemist...

Author
Haydar, Ghulam
Altaf, Ataf Ali
Iqbal, Aqsa
Hashmat, Uzma
Kausar, Samia
Department of Chemistry, Biochemistry and Pharmaceutical Sciences (DCBP)
Subject(s)

500 - Science::540 - ...

Series
Chemistry & Biodiversity
ISSN or ISBN (if monograph)
1612-1880
1612-1872
Publisher
Wiley
Language
English
Publisher DOI
10.1002/cbdv.202500157
PubMed ID
40479649
Uncontrolled Keywords

ADMET analysis

human digestive enzym...

magnesium oxide clust...

molecular docking

molecular dynamics

Description
Recently, metal oxide cluster dots have moved into medicinal and biological contemplations. Digestive system comprises different pH levels that may facilitate the formation of metal oxide clusters hypothetically. Those clusters may further interact with digestive system enzymes and generate metal cluster-enzyme protein complexes. The present study investigated the profiles of such 50 complexes using molecular docking techniques. A total of five magnesium oxide clusters-Mg4O4, Mg5O5, Mg6O6, Mg7O7, and Mg8O8-were designed, optimized, and docked with 10 human digestive system-related metalloenzymes (3P95, 4A94, 2V77, 2JBK, 1PJP, 1N1M, 1X0V, 1BSI, 1C8Q, 1ZLI). The complexes were produced using molecular docking simulations. The results revealed that the magnesium oxide cluster dots (MgO-CDs) show nonbonding interactions with different enzymes. The binding affinities of MgO clusters with enzymes ranged from -8.8 to -2.9 kcal/mol. The carboxypeptidase B (Protein Data Bank [PDB] ID: 1ZLI) and Mg8O8 exhibited most significant interactions with -8.8 kcal/mol and Ki 0.35 µM. Such interactions are helpful to understand the carboxypeptidase B (IZLI) enzymatic activity in hypermagnesemia symptoms, which leads to build up of non-degraded proteins.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/211806
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Chemistry Biodiversity - 2025 - Haydar - Factors Impacting the Gastrointestinal Digestive Enzymes Fate of Magnesium Oxide.pdftextAdobe PDF1.78 MBPublisher holds Copyrightpublished restricted
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