Institute of Molecular Science, Shanxi University, Taiyuan 030006, PR China.
Institute of Molecular Science, Shanxi University, Taiyuan 030006, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2022 Feb 15;267(Pt 1):120518. doi: 10.1016/j.saa.2021.120518. Epub 2021 Oct 19.
Studies on small molecule fluorescent probes for detecting G-quadruplexes DNA have bring about an extensive attention in recent years. In this paper, we designed and synthesized three benzothiazole derivatives named 2a-2c under moderate reaction conditions and investigated their interactions with DNA (single-stranded, duplex, i-motif and G-quadruplex) and distribution in living cell. Three compounds present a large Stokes shift (∼90 nm) and a weak red fluorescence emission, and they exhibit a good selectivity and sensitive turn-on fluorescence response for the promoter G-quadruplex DNA (bcl-2, c-myc and c-kit 2) and mitochondria G-quadruplex (KSS). The affinity of 2a and 2b with N-alkyl side chain group to DNA is stronger than that of 2c with an anion group, therefore, they also increase the stability of the G-quadruplex structure. 2b induces the conformational change of both bcl-2 and KSS G-quadruplexes, while all compounds induce the folding of bcl-2 from the coiled structure to the hybrid G-qrudruplex. Three compounds interact with the G-quadruplex DNA mainly by end-stacking mode. Furthermore, MTT assays and confocal fluorescence images show that these compounds can enter the living HepG2 cells with low cytotoxicity. 2a-2c are mainly located in the mitochondrion and interacted with mitochondria G-quadruplex DNA, while only weak fluorescence can be found in cell nucleus. In a word, 2a-2c can be implied in image of G-quadruplex DNA in living cells.
近年来,用于检测 G-四链体 DNA 的小分子荧光探针的研究引起了广泛关注。在本文中,我们在温和的反应条件下设计并合成了三种苯并噻唑衍生物,命名为 2a-2c,并研究了它们与 DNA(单链、双链、i- 型和 G-四链体)的相互作用以及在活细胞中的分布。三种化合物具有较大的斯托克斯位移(∼90nm)和较弱的红色荧光发射,它们对启动子 G-四链体 DNA(bcl-2、c-myc 和 c-kit 2)和线粒体 G-四链体(KSS)表现出良好的选择性和灵敏的开环荧光响应。2a 和 2b 与 N-烷基侧链基团对 DNA 的亲和力强于带有阴离子基团的 2c,因此,它们也增加了 G-四链体结构的稳定性。2b 诱导 bcl-2 和 KSS G-四链体的构象变化,而所有化合物都诱导 bcl-2 从卷曲结构折叠成杂交 G-qrudruplex。三种化合物主要通过末端堆积模式与 G-四链体 DNA 相互作用。此外,MTT 测定和共聚焦荧光图像表明,这些化合物可以以低细胞毒性进入活 HepG2 细胞。2a-2c 主要位于线粒体中,并与线粒体 G-四链体 DNA 相互作用,而在细胞核中只能发现较弱的荧光。总之,2a-2c 可以被用来对活细胞中的 G-四链体 DNA 进行成像。