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Investigation of the binding modes between AIE-active molecules and dsDNA by single molecule force spectroscopy

机译:调查之间的绑定模式AIE-active分子和dsDNA单分子力光谱学

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AIE (aggregation-induced emission)-active molecules hold promise for the labeling of biomolecules as well as living cells. The study of the binding modes of such molecules to biomolecules, such as nucleic acids and proteins, will shed light on a deeper understanding of the mechanisms of molecular interactions and eventually facilitate the design/preparation of new AIE-active bioprobes. Herein, we studied the binding modes of double-stranded DNA (dsDNA) with two types of synthetic AIE-active molecules, namely, tetraphenylethene-derived dicationic compounds (cis-TPEDPy and trans-TPEDPy) and anthracene-derived dicationic compounds (DSAI and DSABr-C6) using single molecule force spectroscopy (SMFS) and circular dichroism (CD) spectroscopy. The experimental data indicate that DSAI can strongly intercalate into DNA base pairs, while DSABr-C6 is unable to intercalate into DNA due to the steric hindrance of the alkyl side chains. Cis-TPEDPy and trans-TPEDPy can also intercalate into DNA base pairs, but the binding shows strong ionic strength dependence. Multiple binding modes of TPEDPy with dsDNA have been discussed. In addition, the electrostatic interaction enhanced intercalation of cis-TPEDPy with dsDNA has also been revealed.
机译:AIE aggregation-induced发射活动分子标记的承诺生物分子以及活细胞。的绑定模式这样的分子核酸和蛋白质等生物分子,阐明一个更深的了解吗分子相互作用和机制最终促进设计/准备新AIE-active bioprobes。绑定模式的双链DNA (dsDNA)两种类型的合成AIE-active分子,也就是说,tetraphenylethene-derived dicationic化合物(cis-TPEDPy和trans-TPEDPy)(DSAI和anthracene-derived dicationic化合物DSABr-C6)使用单分子的力量光谱学(smf)和圆二色性(CD)光谱学。DSAI可以强烈地插入到DNA基础对,虽然DSABr-C6无法插入在DNA由于位阻的烷基侧链。插入到DNA碱基对,但是绑定显示了很强的离子强度依赖。绑定模式的TPEDPy dsDNA进行了讨论。互动增强cis-TPEDPy夹层与dsDNA也被显示。

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