Department of Biophysics, Bose Institute, Kolkata, India.
Bioorganic Chemistry Laboratory, New Chemistry Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Bengaluru, India.
PLoS One. 2020 Sep 17;15(9):e0239145. doi: 10.1371/journal.pone.0239145. eCollection 2020.
Turn-on fluorescent probes show enhanced emission upon DNA binding, advocating their importance in imaging cellular DNA. We have probed the DNA binding mode of thiazole-coumarin (TC) conjugate, a recently reported hemicyanine-based turn-on red fluorescent probe, using a number of biophysical techniques and a series of short oligonucleotides. TC exhibited increased fluorescence anisotropy and decreased absorbance (~50%) at low [DNA]/[TC] ratio. Although the observed hypochromicity and the saturating value of [DNA base pair]:[TC] ratio is consistent with a previous study that suggested intercalation to be the DNA binding mode of TC, a distinctly different and previously unreported binding mode was observed at higher ratios of [DNA]:[TC]. With further addition of DNA, only oligonucleotides containing AnTn or (AT)n stretches showed further change-decreased hypochromicity, red shifted absorption peaks and concomitant fluorescence enhancement, saturating at about 1:1 [DNA]: [TC]. 1H-NMR chemical shift perturbation patterns and H1'-H6/H8 NOE cross-peaks of the 1:1 complex indicated minor groove binding by TC. ITC showed the 1:1 DNA binding event to be endothermic (ΔH° ~ 2 kcal/mol) and entropy driven (ΔS° ~ 32 cal/mol/K). Taken together, the experimental data suggest a dual DNA binding mode by TC. At low [DNA]/[TC] ratio, the dominant mode is intercalation. This switches to minor groove binding at higher [DNA]/[TC], only for sequences containing AnTn or (AT)n stretches. Turn-on fluorescence results only in the previously unreported minor groove bound state. Our results allow a better understanding of DNA-ligand interaction for the newly reported turn-on probe TC.
开环荧光探针与 DNA 结合后会增强发射,这表明它们在细胞 DNA 成像中具有重要作用。我们使用多种生物物理技术和一系列短寡核苷酸研究了噻唑-香豆素(TC)缀合物的 DNA 结合模式,该缀合物是最近报道的基于半花青的开环红色荧光探针。TC 在低 [DNA]/[TC] 比下表现出荧光各向异性增加和吸光度降低(约 50%)。尽管观察到的减色性和 [DNA 碱基对]:[TC] 比的饱和值与先前研究一致,该研究表明 TC 的 DNA 结合模式是嵌入,但在更高的 [DNA]:[TC] 比下观察到明显不同且以前未报道的结合模式。随着 DNA 的进一步加入,只有含有 AnTn 或(AT)n 链段的寡核苷酸显示出进一步的变化——减色性降低,吸收峰红移,伴随荧光增强,在约 1:1 [DNA]: [TC] 时饱和。1H-NMR 化学位移扰动模式和 1:1 复合物的 H1'-H6/H8 NOE 交叉峰表明 TC 通过小沟结合。ITC 表明 1:1 DNA 结合事件是吸热的(ΔH°2 kcal/mol)和熵驱动的(ΔS°32 cal/mol/K)。综合实验数据表明,TC 具有双重 DNA 结合模式。在低 [DNA]/[TC] 比下,主要模式是嵌入。这种模式在更高的 [DNA]/[TC] 下切换到小沟结合,仅针对含有 AnTn 或(AT)n 链段的序列。开环荧光仅导致以前未报道的小沟结合状态。我们的结果使我们能够更好地理解新报道的开环探针 TC 的 DNA-配体相互作用。