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Gold Nanoparticle-Assisted AFM Study of DNA Damage and Repair

机译:黄金纳米粒子辅助AFM研究DNA损伤和修复

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The purpose of this research is to investigate gold nanoparticles as a potential scaffold for the characterization of DNA damage and repair using atomic force microscopy (AFM) techniques. The procedure consists of functionalizing the surface of gold nanoparticles with DNA which are then immobilized onto amine modified silicon or glass surfaces. Our objective is to examine various lesions in individual DNA molecules and follow in the AFM their direct reversal by DNA repair enzymes. In order to achieve this goal DNA repair proteins such as photolyase (repairs UV damaged thymine dimers in DNA using blue-light energy) is used as damage markers and imaged in complexes with DNA by AFM in order to locate and identify the damage sites. Force spectroscopy measurements will determine the mechanical fingerprints of various types of DNA damage caused by UV and gamma radiation and directly follow damage reversal in the presence of the repair activities. AFM images will be further compared with in vitro photoreactivation assay results.
机译:本研究的目的是研究金纳米颗粒作为潜在支架,用于使用原子力显微镜(AFM)技术表征DNA损伤和修复。该方法包括用DNA官能化金纳米颗粒的表面,然后将其固定在胺改性硅或玻璃表面上。我们的目的是检查单个DNA分子中的各种病变,并通过DNA修复酶直接逆转逆转。为了实现该目的,DNA修复蛋白如光解酶(使用蓝光能量在DNA中修复UV受损胸腺嘧啶二聚体)用作损伤标记物并通过AFM与DNA复合物成像,以定位和识别损伤部位。力光谱测量将确定由UV和γ辐射引起的各种类型的DNA损伤的机械指纹,并且在修复活动的存在下直接追踪逆转。将与体外光敏性测定结果进一步比较AFM图像。

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