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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Spectroscopic analysis of tylosin adsorption on extracellular DNA reveals its interaction mechanism
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Spectroscopic analysis of tylosin adsorption on extracellular DNA reveals its interaction mechanism

机译:细胞外DNA对钛素吸附的光谱分析显示其相互作用机制

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摘要

Extracellular DNA (eDNA), which is commonly detected in aquatic and terrestrial environments, may be involved in gene transfer, increases in genetic diversity, and evolution. However, it has been reported that some small organic molecules or heavy metal ions can influence the transformation of DNA and even destroy its structure. We previously found that tylosin (TYL, a kind of antibiotic) is adsorbed onto salmon sperm DNA in a mixed solution. However, it is not clear whether this antibiotic affects the structure of DNA, and the mechanism of their interaction needs to be clarified. Therefore, we investigated the adsorption of TYL on different concentrations of salmon sperm DNA using agarose gel electrophoresis, ultraviolet-visible (UV-vis) spectroscopy, fluorescence spectroscopy, and surface enhanced Raman spectroscopy (SERS) to elucidate the interaction mechanism between TYL and DNA. The results showed that the adsorption of TYL decreased with increased concentrations of DNA. The electrophoresis band of pristine DNA was at 5000 bps. The brightness of the DNA band decreased with the TYL concentration and their incubation time. As the concentration of TYL increased, the fluorescence absorption intensity of DNA decreased significantly. Redshift and hyperchromicity were observed in the UV-vis adsorption spectrum with the presence of TYL in DNA solution, and they weakened as the DNA concentration increased. The Raman spectrum intensities of characteristic peaks in the mixed solution were weaker than that of pure TYL solution, and the peak intensity increased with increasing DNA concentration. Even a part of TYL characteristic peaks disappeared in the mixed solution. These results indicated that the pyran and macrolide of TYL might intercalate into the base pair plane of DNA. In addition, electrostatic attraction between TYL and DNA and interactions among TYL molecules may also play a role in the interaction mechanism. However, the double helix structure of DNA was not su
机译:通常检测到水生和陆地环境中的细胞外DNA(EDNA)可能参与基因转移,增加遗传多样性和进化。然而,据报道,一些小有机分子或重金属离子可以影响DNA的转化,甚至破坏其结构。我们以前发现替汀(Tylin,一种抗生素)被吸附在混合溶液中的鲑鱼精子DNA上。然而,目前尚不清楚这种抗生素是否影响DNA的结构,并且需要澄清它们的相互作用的机制。因此,我们研究了使用琼脂糖凝胶电泳,紫外 - 可见(UV-Vis)光谱,荧光光谱和表面增强的拉曼光谱(SERS)对不同浓度的鲑鱼精子DNA的吸附,以阐明Tyl和DNA之间的相互作用机制。结果表明,随着DNA的浓度增加,致抗原的吸附降低。原始DNA的电泳带以5000 bps。 DNA带的亮度随着浓度的浓度和孵育时间而降低。随着浓度的增加,DNA的荧光吸收强度显着降低。在UV-Vis吸附光谱中观察到红移和高变量性,在DNA溶液中存在,它们随着DNA浓度的增加而削弱。混合溶液中特征峰的拉曼光谱强度弱于纯催化剂溶液,峰强度随着DNA浓度的增加而增加。即使是泰国特征峰的一部分也消失在混合溶液中。这些结果表明,Tyl的吡喃和大胶质剂可以嵌入到DNA的基对平面中。此外,塔尔和DNA之间的静电吸引和薄膜分子之间的相互作用也可能在相互作用机制中起作用。然而,DNA的双螺旋结构不是苏

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