Interaction of ۳-(۱H-tetrazol-۵-yl) Coumarin With Bovine Serum Albumin and Calf Thymus DNA: Deciphering the Mode of Binding by In Vitro Studies
Publish place: Avicenna Journal of Medical Biochemistry، Vol: 10، Issue: 2
Publish Year: 1401
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:
JR_MEBIO-10-2_012
تاریخ نمایه سازی: 3 شهریور 1403
Abstract:
Background: Coumarins comprise a large family of heterocyclic compounds with a benzo-a-pyrone moiety. Objectives: This study aimed to analyze the binding affinity of ۳-(۱H-tetrazol-۵-yl) coumarin to bovine serum albumin (BSA) and calf thymus DNA (Ct-DNA) using fluorescence spectroscopy. The quenching of fluorescence was recognized during the interaction between ۳-(۱H-tetrazol-۵-yl) coumarin and BSA, followed by a static mechanism. Methods: The hydrogen bonds, hydrophobic interactions, and Vander Waals forces were regarded as the principal part in the ۳-(۱H-tetrazol-۵-yl) coumarin and BSA complexation process. The fluorescence spectral characteristics demonstrated an enhancement in fluorescence intensity of the ۳-(۱H-tetrazol-۵-yl) coumarin in the presence of ct-DNA solution. Results: The experimental results indicated that the ۳-(۱H-tetrazol-۵-yl) coumarin binds to DNA via interjection, hydrogen bonds, and Vander Waals forces. This work illustrated that BSA fluorescence was quenched by ۳-(۱H-tetrazol-۵-yl) coumarin via a static mechanism and the ct-DNA fluorescence enhancement by ۳-(۱H-tetrazol-۵-yl) coumarin was a static process. The secondary structure of proteins changed upon drug binding. Conclusion: It is deduced that ۳-(۱H-tetrazol-۵-yl) coumarin represents a higher binding affinity to DNA compared to BSA. This finding can be useful in designing more effective new drugs with fewer side effects.