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首页> 外文期刊>Nature Communications >Nanomechanical DNA resonators for sensing and structural analysis of DNA-ligand complexes
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Nanomechanical DNA resonators for sensing and structural analysis of DNA-ligand complexes

机译:纳米机械DNA共振器,用于DNA配体复合物的感测和结构分析

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The effect of direct or indirect binding of intercalant molecules on DNA structure is of fundamental importance in understanding the biological functioning of DNA. Here we report on self-suspended DNA nanobundles as ultrasensitive nanomechanical resonators for structural studies of DNA-ligand complexes. Such vibrating nanostructures represent the smallest mechanical resonator entirely composed of DNA. A correlative analysis between the mechanical and structural properties is exploited to study the intrinsic changes of double strand DNA, when interacting with different intercalant molecules (YOYO-1 and GelRed) and a chemotherapeutic drug (Cisplatin), at different concentrations. Possible implications of our findings are related to the study of interaction mechanism of a wide category of molecules with DNA, and to further applications in medicine, such as optimal titration of chemotherapeutic drugs and environmental studies for the detection of heavy metals in human serum.
机译:嵌入剂分子直接或间接结合对DNA结构的影响对于理解DNA的生物学功能至关重要。在这里,我们报道了自悬浮的DNA纳米束作为DNA配体复合物结构研究的超灵敏纳米机械共振器。这种振动的纳米结构代表了完全由DNA组成的最小的机械谐振器。利用机械和结构特性之间的相关分析来研究双链DNA在与不同浓度的不同嵌入分子(YOYO-1和GelRed)和化学治疗药物(顺铂)相互作用时的内在变化。我们发现的可能含义与广泛的分子与DNA相互作用机理的研究有关,并与药物的进一步应用有关,例如化学疗法药物的最佳滴定和用于检测人血清中重金属的环境研究。

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