tRNA Binding to Antitumor Drug Doxorubicin and Its Analogue |
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Authors: | Daniel Agudelo Philippe Bourassa Marc Beauregard Gervais Bérubé Heidar-Ali Tajmir-Riahi |
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Affiliation: | Department of Chemistry and Physics, University of Québec at Trois-Rivières, Trois-Rivières, Québec, Canada.; University of Hyderabad, India, |
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Abstract: | The binding sites of antitumor drug doxorubicin (DOX) and its analogue N-(trifluoroacetyl) doxorubicin (FDOX) with tRNA were located, using FTIR, CD, fluorescence spectroscopic methods and molecular modeling. Different binding sites are involved in drug-tRNA adducts with DOX located in the vicinity of A-29, A-31, A-38, C-25, C-27, C-28, G-30 and U-41, while FDOX bindings involved A-23, A-44, C-25, C-27, G-24, G-42, G-53, G-45 and U-41 with similar free binding energy (-4.44 for DOX and -4.41 kcal/mol for FDOX adducts). Spectroscopic results showed that both hydrophilic and hydrophobic contacts are involved in drug-tRNA complexation and FDOX forms more stable complexes than DOX with KDOX-tRNA = 4.7 (±0.5)×104 M−1 and KFDOX-tRNA = 6.3 (±0.7)×104 M−1. The number of drug molecules bound per tRNA (n) was 0.6 for DOX and 0.4 for FDOX. No major alterations of tRNA structure were observed and tRNA remained in A-family conformation, while biopolymer aggregation and particle formation occurred at high drug concentrations. |
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