Department of Chemistry and Chemical Engineering Chemistry and Biochemistry, Chalmers University of Technology, SE-412 96, Gothenburg, Sweden.
Department of Chemistry and Molecular Biology, University of Gothenburg, SE-412 96, Gothenburg, Sweden.
Chempluschem. 2020 Feb;85(2):319-326. doi: 10.1002/cplu.201900712.
The fluorescent adenine analogue qAN4 was recently shown to possess promising photophysical properties, including a high brightness as a monomer. Here we report the synthesis of the phosphoramidite of qAN4 and its successful incorporation into DNA oligonucleotides using standard solid-phase synthesis. Circular dichroism and thermal melting studies indicate that the qAN4-modification has a stabilizing effect on the B-form of DNA. Moreover, qAN4 base-pairs selectively with thymine with mismatch penalties similar to those of mismatches of adenine. The low energy absorption band of qAN4 inside DNA has its peak around 358 nm and the emission in duplex DNA is partly quenched and blue-shifted (ca. 410 nm), compared to the monomeric form. The spectral properties of the fluorophore also show sensitivity to pH; a property that may find biological applications. Quantum yields in single-stranded DNA range from 1-29 % and in duplex DNA from 1-7 %. In combination with the absorptive properties, this gives an average brightness inside duplex DNA of 275 M cm , more than five times higher than the most used environment-sensitive fluorescent base analogue, 2-aminopurine. Finally, we show that qAN4 can be used to advantage as a donor for interbase FRET applications in combination with adenine analogue qA as an acceptor.
最近的研究表明,荧光腺嘌呤类似物 qAN4 具有有前景的光物理性质,包括作为单体的高亮度。在这里,我们报告了 qAN4 的磷酰胺的合成及其通过标准固相合成成功掺入 DNA 寡核苷酸。圆二色性和热融研究表明,qAN4 修饰对 DNA 的 B 型具有稳定作用。此外,qAN4 碱基与胸腺嘧啶选择性配对,错配罚分与腺嘌呤的错配罚分相似。qAN4 在 DNA 内部的低能量吸收带的峰值在 358nm 左右,与单体形式相比,在双链 DNA 中的发射部分被猝灭并且蓝移(约 410nm)。荧光团的光谱性质也对 pH 敏感;这一特性可能具有生物学应用。在单链 DNA 中的量子产率范围为 1-29%,在双链 DNA 中的量子产率范围为 1-7%。结合吸收特性,这使得双链 DNA 内部的平均亮度达到 275M cm ,比最常用的环境敏感荧光碱基类似物 2-氨基嘌呤高五倍以上。最后,我们表明 qAN4 可以与腺嘌呤类似物 qA 作为受体结合使用,作为用于碱基间 FRET 应用的供体具有优势。