Johnson Ryan E, Murray Makay T, Bycraft Lucas J, Wetmore Stacey D, Manderville Richard A
Department of Chemistry & Toxicology, University of Guelph Guelph Ontario N1G 2W1 Canada
Department of Chemistry & Biochemistry, University of Lethbridge Lethbridge Alberta T1K 3M4 Canada.
Chem Sci. 2023 Apr 11;14(18):4832-4844. doi: 10.1039/d3sc00772c. eCollection 2023 May 10.
Fluorescent molecular rotors (FMRs) are critical tools for probing nucleic acid structure and function. Many valuable FMRs have been incorporated into oligonucleotides, although the methods of doing so can be cumbersome. Development of synthetically simple, high yielding modular methods to fine-tune dye performance is crucial to expand the biotechnological applications of oligonucleotides. Herein, we report the utility of 6-hydroxy-indanone (6HI) with a glycol backbone to serve as a handle for on-strand aldehyde capture as a modular aldol approach for site-specific insertion of internal FMR chalcones. Aldol reactions with aromatic aldehydes containing N-donors proceed in high yield to create modified DNA oligonucleotides, which in the duplex match the stability of the fully paired canonical B-form with strong stacking interactions between the planar probe and the flanking base pairs, as evidenced by molecular dynamics (MD) simulations. The FMR chalcones possess remarkable quantum yields ( up to 76%) in duplex DNA, coupled with large Stokes shifts (Δ up to 155 nm), light-up emissions ( up to 60-fold) that span the visible region ( 518-680 nm) with brightness up to 17 480 cm M. The library also contains a FRET pair and dual emission probes, suitable for ratiometric sensing. The ease of aldol insertion coupled with the excellent performance of the FMR chalcones permits their future wide-spread use.
荧光分子转子(FMRs)是探测核酸结构和功能的关键工具。许多有价值的FMRs已被整合到寡核苷酸中,尽管这样做的方法可能很繁琐。开发合成简单、高产率的模块化方法来微调染料性能对于扩大寡核苷酸的生物技术应用至关重要。在此,我们报道了具有二醇主链的6-羟基茚满酮(6HI)作为链上醛捕获的手柄,作为一种用于位点特异性插入内部FMR查耳酮的模块化羟醛方法的实用性。与含氮供体的芳香醛的羟醛反应以高产率进行,生成修饰的DNA寡核苷酸,在双链体中,其与完全配对的经典B型的稳定性相匹配,平面探针与侧翼碱基对之间具有强烈的堆积相互作用,分子动力学(MD)模拟证明了这一点。FMR查耳酮在双链DNA中具有显著的量子产率(高达76%),同时具有大的斯托克斯位移(Δ高达155 nm)、发光发射(高达60倍),其跨越可见光区域(518 - 680 nm),亮度高达17480 cm M。该文库还包含一个FRET对和双发射探针,适用于比率传感。羟醛插入的简便性与FMR查耳酮的优异性能使其未来能够广泛应用。