首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Exploring the binding mechanism of saccharin and sodium saccharin to promoter of human p53 gene by theoretical and experimental methods
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Exploring the binding mechanism of saccharin and sodium saccharin to promoter of human p53 gene by theoretical and experimental methods

机译:用理论和实验方法探讨糖精和糖酸钠对人P53基因启动子的结合机制

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In the past few decades, extensive discussions have been on the impact of artificial sweeteners on the risk of cancer. The present study aimed to evaluate the interaction of saccharin (SA) and sodium saccharin (SSA) with the promoter of the human p53 gene. The binding ability was assessed using the spectroscopic technique, molecular docking and molecular dynamics (MD) simulation methods. Free energy of binding has been calculated using Molecular Mechanics/Poisson-Boltzmann Surface Area (MM/PBSA) method. Fluorescence spectra of mentioned gene with concentration profiles of SA and SSA were obtained in a physiological condition. A gradual increase without any significant spectral shift in the fluorescence intensity of around 350 nm was evident, indicating the presence of an interaction between both compounds and gene. The docking results showed that both compounds were susceptible to bind to 5 '-DG56DG57-3 ' nucleotide sequence of gene. Furthermore, the MD simulation demonstrated that the binding positions for SA and SSA were 5 '-A1T3T4-3 ' and 5 '-G44T45-3 ' sequences of gene, respectively. The binding of these sweeteners to gene made significant conformational changes to the DNA structure. Hydrogen and hydrophobic interactions are the major forces in complexes stability. Through the groove binding mode, the non-interactive DNA-binding nature of SSA and SA has been demonstrated by the results of spectrofluorometric and molecular modeling. This study could provide valuable insight into the binding mechanism of SA and its salt with p53 gene promoter as macromolecule at the molecular level in atomistic details. This work can contribute to the possibility of the potential hazard of carcinogenicity of this sweetener and to design and apply new and safer artificial sweeteners.
机译:在过去的几十年里,广泛的讨论一直在人造甜味剂对癌症风险的影响。本研究旨在评估糖精(SA)和糖精(SSA)与人p53基因启动子的相互作用。使用光谱技术,分子对接和分子动力学(MD)仿真方法评估结合能力。使用分子机械/泊松 - 玻璃板表面积(MM / PBSA)方法计算了自由能量。在生理条件下获得具有SA和SSA浓度谱的提到基因的荧光光谱。没有任何显着的荧光强度的逐渐增加,显而易见,表明化合物和基因之间存在相互作用。对接结果表明,两种化合物易于结合5'-DG56DG57-3'基因的核苷酸序列。此外,MD模拟证明SA和SSA的结合位置分别为5'-A1T3T4-3'和5'-G44T45-3'基因序列。这些甜味剂对基因的结合使DNA结构具有显着的构象变化。氢和疏水性相互作用是复合物稳定性的主要力。通过沟槽结合模式,通过光谱荧光测定和分子建模的结果证明了SSA和SA的非交互式DNA结合性质。该研究可以为P53基因启动子作为原子细节分子水平的Macromo分子提供对Sa及其盐的有价值的洞察力。这项工作可以有助于这种甜味剂的致癌性潜在危害和设计和涂抹新的和更安全的人造甜味剂。

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