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Lighting up left-handed Z-DNA: photoluminescent carbon dots induce DNA B to Z transition and perform DNA logic operations

机译:点亮左手Z-DNA:光致发光碳点诱导DNA B到Z的过渡并执行DNA逻辑操作

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摘要

Left-handed Z-DNA has been identified as a transient structure occurred during transcription. DNA B-Z transition has attracted much attention because of not only Z-DNA biological importance but also their relation to disease and DNA nanotechnology. Recently, photoluminescent carbon dots, especially highly luminescent nitrogen-doped carbon dots, have attracted much attention on their applications to bioimaging and gene/drug delivery because of carbon dots with low toxicity, highly stable photoluminescence and controllable surface function. However, it is still unknown whether carbon dots can influence DNA conformation or structural transition, such as B-Z transition. Herein, based on our previous series work on DNA interactions with carbon nanotubes, we report the first example that photoluminescent carbon dots can induce right-handed B-DNA to left-handed Z-DNA under physiological salt conditions with sequence and conformation selectivity. Further studies indicate that carbon dots would bind to DNA major groove with GC preference. Inspired by carbon dots lighting up Z-DNA and DNA nanotechnology, several types of DNA logic gates have been designed and constructed based on fluorescence resonance energy transfer between photoluminescent carbon dots and DNA intercalators.
机译:左手Z-DNA已被确定为转录过程中发生的瞬时结构。 DNA B-Z过渡不仅引起Z-DNA生物学重要性,而且还与疾病和DNA纳米技术有关,因此备受关注。近来,由于碳点具有低毒性,高度稳定的光致发光和可控制的表面功能,因此光致发光的碳点,尤其是高度发光的氮掺杂碳点,已将其在生物成像和基因/药物递送中的应用引起了很多关注。但是,碳点是否会影响DNA构象或结构转变(例如B-Z转变)仍然未知。在本文中,基于我们先前关于DNA与碳纳米管相互作用的系列研究,我们报道了第一个例子,即光致发光碳点可以在生理盐条件下以序列和构象选择性诱导右旋B-DNA向左旋Z-DNA。进一步的研究表明,碳点将结合GC偏好与DNA主沟结合。受照亮Z-DNA和DNA纳米技术的碳点的启发,基于光致发光碳点和DNA嵌入剂之间的荧光共振能量转移,已经设计和构建了几种类型的DNA逻辑门。

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