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Acetoacetate enhancement of glucose mediated DNA glycation

机译:乙酰丙酸酯增强葡萄糖介导的DNA糖糖

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摘要

Acetoacetate (AA) is a ketone body, which generates reactive oxygen species (ROS). ROS production is impacted by the formation of covalent bonds between amino groups of biomacromolecules and reducing sugars (glycation). Glycation can damage DNA by causing strand breaks, mutations, and changes in gene expression. DNA damage could contribute to the pathogenesis of various diseases, including neurological disorders, complications of diabetes, and aging. Here we studied the enhancement of glucose-mediated DNA glycation by AA for the first time. The effect of AA on the structural changes, Amadori and advanced glycation end products (AGEs) formation of DNA incubated with glucose for 4 weeks were investigated using various techniques. These included UV–Vis, circular dichroism (CD) and fluorescence spectroscopy, and agarose gel electrophoresis. The results of UV–Vis and fluorescence spectroscopy confirmed that AA increased the DNA-AGE formation. The NBT test showed that AA also increased Amadori product formation of glycated DNA. Based on the CD and agarose gel electrophoresis results, the structural changes of glycated DNA was increased in the presence of AA. The chemiluminescence results indicated that AA increased ROS formation. Thus AA has an activator role in DNA glycation, which could enhance the adverse effects of glycation under high glucose conditions.
机译:乙酰乙酸盐(AA)是酮体,其产生反应性氧(ROS)。 ROS生产受到生物调整和还原糖(糖化)的氨基之间的共价键的形成。通过引起链断裂,突变和基因表达的变化,可以损伤DNA。 DNA损伤可能有助于各种疾病的发病机制,包括神经系统疾病,糖尿病并发症和老化。在这里,我们首次研究了AA的增强葡萄糖介导的DNA糖化。使用各种技术研究了AA对结构变化,Amadori和先进的糖糖末端产物(年龄)形成DNA的影响4周的DNA的形成。这些包括UV-Vis,圆形二色性(CD)和荧光光谱和琼脂糖凝胶电泳。 UV-Vis和荧光光谱的结果证实AA增加了DNA时期的形成。 NBT试验表明,AA也增加了糖化DNA的Amadori产物形成。基于CD和琼脂糖凝胶电泳结果,在AA的存在下增加了糖化DNA的结构变化。化学发光结果表明AA增加了ROS形成。因此,AA具有在DNA糖糖中的活化剂作用,这可以在高葡萄糖条件下提高糖化的不利影响。

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