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In vitro interaction of cefotaxime with calf thymus DNA: Insights from spectroscopic, calorimetric and molecular modelling studies.
J Pharm Biomed Anal. 2018 Feb 05; 149:193-205.JP

Abstract

Cefotaxime is third generation antibiotic with known therapeutic efficacy against bacterial infections including cerebral abscesses and bacterial meningitis. The β-lactam group of drugs are considered safest antibiotics. Many antibiotics directly interact with DNA and alter their expression profile. Thus, it is necessary to understand the binding mode and its relevance to drug activity and toxicity. There is considerably a remarkable focus on deciphering the binding mechanism of these therapeutic agents as DNA is one of the major target for wide range of drugs. Cefotaxime has been extensively studied for its pharmacological properties while its binding mode to DNA has not been explicated so far. In this study, we have unveiled the binding mechanism of cefotaxime to DNA by using various biophysical, thermodynamic and in silico techniques. UV-vis spectroscopy confirmed the formation cefotaxime-DNA complex along with a brief idea about the extent of interaction. Fluorescence spectroscopy yielded the values of various binding constants and explained mode of fluorescence quenching to be static. CD spectroscopy, thermal denaturation, KI quenching and viscosity measurement explained that cefotaxime is groove binder. Measuring the effect of ions on cefotaxime-DNA complex ensured that it does not bind to DNA electrostatically. Dye displacement experiments finally confirmed that cefotaxime binds to the minor groove of DNA. ITC gave the thermodynamic profile of this binding in which negative value of Gibb's free energy change revealed that the process is spontaneous. Molecular modelling finally strengthened our experimental results that cefotaxime was located in curved contour of minor groove of DNA. The findings support on safety of drug and may have a little interference on normal biological functions.

Authors+Show Affiliations

Department of Agricultural Microbiology, Aligarh Muslim University, Aligarh, UP 202002, India.Department of Agricultural Microbiology, Aligarh Muslim University, Aligarh, UP 202002, India. Electronic address: ahmadiqbal8@yahoo.co.in.

Pub Type(s)

Journal Article

Language

eng

PubMed ID

29121574

Citation

Qais, Faizan Abul, and Iqbal Ahmad. "In Vitro Interaction of Cefotaxime With Calf Thymus DNA: Insights From Spectroscopic, Calorimetric and Molecular Modelling Studies." Journal of Pharmaceutical and Biomedical Analysis, vol. 149, 2018, pp. 193-205.
Qais FA, Ahmad I. In vitro interaction of cefotaxime with calf thymus DNA: Insights from spectroscopic, calorimetric and molecular modelling studies. J Pharm Biomed Anal. 2018;149:193-205.
Qais, F. A., & Ahmad, I. (2018). In vitro interaction of cefotaxime with calf thymus DNA: Insights from spectroscopic, calorimetric and molecular modelling studies. Journal of Pharmaceutical and Biomedical Analysis, 149, 193-205. https://doi.org/10.1016/j.jpba.2017.10.016
Qais FA, Ahmad I. In Vitro Interaction of Cefotaxime With Calf Thymus DNA: Insights From Spectroscopic, Calorimetric and Molecular Modelling Studies. J Pharm Biomed Anal. 2018 Feb 5;149:193-205. PubMed PMID: 29121574.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - In vitro interaction of cefotaxime with calf thymus DNA: Insights from spectroscopic, calorimetric and molecular modelling studies. AU - Qais,Faizan Abul, AU - Ahmad,Iqbal, Y1 - 2017/10/28/ PY - 2017/06/10/received PY - 2017/10/11/revised PY - 2017/10/15/accepted PY - 2017/11/10/pubmed PY - 2018/8/9/medline PY - 2017/11/10/entrez KW - AO KW - CD KW - Cefotaxime KW - Drug-DNA interaction KW - EB KW - ITC KW - Minor groove binding KW - Molecular docking KW - acridine orange KW - circular dichroism KW - ethidium bromide KW - isothermal titration calorimetry SP - 193 EP - 205 JF - Journal of pharmaceutical and biomedical analysis JO - J Pharm Biomed Anal VL - 149 N2 - Cefotaxime is third generation antibiotic with known therapeutic efficacy against bacterial infections including cerebral abscesses and bacterial meningitis. The β-lactam group of drugs are considered safest antibiotics. Many antibiotics directly interact with DNA and alter their expression profile. Thus, it is necessary to understand the binding mode and its relevance to drug activity and toxicity. There is considerably a remarkable focus on deciphering the binding mechanism of these therapeutic agents as DNA is one of the major target for wide range of drugs. Cefotaxime has been extensively studied for its pharmacological properties while its binding mode to DNA has not been explicated so far. In this study, we have unveiled the binding mechanism of cefotaxime to DNA by using various biophysical, thermodynamic and in silico techniques. UV-vis spectroscopy confirmed the formation cefotaxime-DNA complex along with a brief idea about the extent of interaction. Fluorescence spectroscopy yielded the values of various binding constants and explained mode of fluorescence quenching to be static. CD spectroscopy, thermal denaturation, KI quenching and viscosity measurement explained that cefotaxime is groove binder. Measuring the effect of ions on cefotaxime-DNA complex ensured that it does not bind to DNA electrostatically. Dye displacement experiments finally confirmed that cefotaxime binds to the minor groove of DNA. ITC gave the thermodynamic profile of this binding in which negative value of Gibb's free energy change revealed that the process is spontaneous. Molecular modelling finally strengthened our experimental results that cefotaxime was located in curved contour of minor groove of DNA. The findings support on safety of drug and may have a little interference on normal biological functions. SN - 1873-264X UR - https://www.unboundmedicine.com/medline/citation/29121574 DB - PRIME DP - Unbound Medicine ER -