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Mechanism of Interactions of dsDNA Binding with Apigenin and Its Sulfamate Derivatives Using Multispectroscopic, Voltammetric, and Molecular Docking Studies

Simon Waihenya, Pelin Şenel, Francis J. Osonga, Taner Erdoğan, Filiz Altay, Ayşegül Gölcü, Omowunmi A. Sadik

2021ACS Omega18 citationsDOIOpen Access PDF

Abstract

constants calculated for APG, ADSAM, and ATSAM are in harmony for all techniques. As a result of the incorporation of dimethylsulfamate groups into the APG structure, in the ADSAM-dsDNA and ATSAM-dsDNA complexes, in addition to hydrogen bonds, π-sulfur interactions have also contributed to the stabilization of the ligand-DNA complexes. This work provides new insights that could lead to the development of prospective drugs and vaccines.

Topics & Concepts

ApigeninChemistryDocking (animal)Mechanism (biology)BiophysicsBiochemistryFlavonoidBiologyMedicineAntioxidantPhysicsQuantum mechanicsNursingProtein Interaction Studies and Fluorescence AnalysisMonoclonal and Polyclonal Antibodies ResearchSynthesis and Characterization of Heterocyclic Compounds
Mechanism of Interactions of dsDNA Binding with Apigenin and Its Sulfamate Derivatives Using Multispectroscopic, Voltammetric, and Molecular Docking Studies | Litcius