Department of Chemistry and Center for NanoScience, Ludwig-Maximilians-Universität München, Butenandtstr. 5-13, 81377 München, Germany.
Department of Chemistry, Ludwig-Maximilians-Universität München, Würmtalstraße 201, 81377 München, Germany.
ACS Nano. 2024 Jan 16;18(2):1496-1503. doi: 10.1021/acsnano.3c08451. Epub 2023 Dec 29.
We develop a DNA origami-based internal kinetic referencing system with a colocalized reference and target molecule to provide increased sensitivity and robustness for transient binding kinetics. To showcase this, we investigate the subtle changes in binding strength of DNA oligonucleotide hybrids induced by cytosine modifications. These cytosine modifications, especially 5-methylcytosine but also its oxidized derivatives, have been increasingly studied in the context of epigenetics. Recently revealed correlations of epigenetic modifications and disease also render them interesting biomarkers for early diagnosis. Internal kinetic referencing allows us to probe and compare the influence of the different epigenetic cytosine modifications on the strengths of 7-nucleotide long DNA hybrids with one or two modified nucleotides by single-molecule imaging of their transient binding, revealing subtle differences in binding times. Interestingly, the influence of epigenetic modifications depends on their position in the DNA strand, and in the case of two modifications, effects are additive. The sensitivity of the assay indicates its potential for the direct detection of epigenetic disease markers.
我们开发了一种基于 DNA 折纸的内动力学参照系统,该系统具有共定位的参照和靶分子,可提高瞬时结合动力学的灵敏度和稳健性。为了展示这一点,我们研究了由胞嘧啶修饰引起的 DNA 寡核苷酸杂交体结合强度的细微变化。这些胞嘧啶修饰,特别是 5-甲基胞嘧啶及其氧化衍生物,在表观遗传学背景下的研究越来越多。最近发现的表观遗传修饰与疾病的相关性也使它们成为早期诊断的有趣生物标志物。内动力学参照使我们能够通过瞬时结合的单分子成像来探测和比较不同表观遗传胞嘧啶修饰对具有一个或两个修饰核苷酸的 7 个核苷酸长 DNA 杂交体的强度的影响,从而揭示结合时间的细微差异。有趣的是,表观遗传修饰的影响取决于它们在 DNA 链中的位置,并且在存在两个修饰的情况下,其影响是累加的。该测定法的灵敏度表明其具有直接检测表观遗传疾病标志物的潜力。