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首页> 外文期刊>ACS Omega >Denaturation of dsDNA Induced by Specific Major Groove Binding of Cadmium Ion to Thymine
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Denaturation of dsDNA Induced by Specific Major Groove Binding of Cadmium Ion to Thymine

机译:镉离子与胸腺嘧啶的特定主要沟槽结合诱导的dsDNA变性

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The toxicity of cadmium causes varying degrees of risk to organisms. The underlying mechanism has been conventionally attributed to Cd~(2+)-ion-induced oxidative stress. Here, we propose that the Cd~(2+) ion directly and stably binds with the thymine specifically in the major groove and causes denaturation of dsDNA. Using molecular dynamics simulations, it was found that the Cd~(2+) ion preferred to bind to the thymine exposed in the major groove. This then destroyed the hydrogen bonds between adenine and thymine, resulting in a mismatched structure of dsDNA. Our findings are expected to promote the understanding of cadmium-induced direct destruction of genomic stability and may also be helpful for the facilitation of the experimental detection of the binding sites.
机译:镉的毒性会给生物带来不同程度的风险。潜在的机理通常归因于Cd〜(2 +)-离子诱导的氧化应激。在这里,我们建议Cd〜(2+)离子直接和稳定地与胸腺嘧啶特异性地结合在大槽中,并导致dsDNA变性。使用分子动力学模拟发现,Cd〜(2+)离子更倾向于与暴露在主沟槽中的胸腺嘧啶结合。然后,这破坏了腺嘌呤和胸腺嘧啶之间的氢键,导致dsDNA结构错配。我们的发现有望促进对镉诱导的基因组稳定性直接破坏的了解,也可能有助于促进结合位点的实验检测。

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