Department of Chemistry, College of Science, Huazhong Agricultural University, Wuhan, 430070, PR China.
Department of Chemistry, College of Science, Huazhong Agricultural University, Wuhan, 430070, PR China.
Anal Chim Acta. 2020 Oct 2;1132:93-100. doi: 10.1016/j.aca.2020.07.017. Epub 2020 Jul 24.
The development of highly sensitive fluorescence probes for telomeric multimeric G-quadruplexes has attracted extensive attention. However, few probes reported have exhibited selectivity for telomeric multimeric G-quadruplexes. Thus, it is challenging to design fluorescence probes with high specificity and selectivity for telomeric multimeric G-quadruplexes. This study employed a commercially available quinoline derivative BEPQ-1 as an effective switch-on sensor for telomeric multimeric G-quadruplexes. The fluorescence intensity enhanced more than 20 folds upon the addition of telomeric multimeric G-quadruplexes. This probe exhibited good selectivity and sensitivity for telomeric multimeric G-quadruplexes. And the detection limit of BEPQ-1 for the telomeric multimeric G-quadruplex TTA45 was calculated to be 0.11 μM. The distinctive feature of BEPQ-1 is the simple structure and small size. In the light of binding mode, BEPQ-1 could even simultaneously bind to the end two G-quartets of the two adjacent G-quadruplex units in telomeric multimeric G-quadruplex by π-π stacking. To our knowledge, this is the first simple-structure fluorescence probe for telomeric multimeric G-quadruplex. This finding might provide a strategy to design specific probes for telomeric multimeric G-quadruplexes and contribute to understand the structures and functions of G-quadruplexes in the telomere region.
用于端粒多聚体 G-四链体的高灵敏度荧光探针的开发引起了广泛关注。然而,报道的很少探针对端粒多聚体 G-四链体表现出选择性。因此,设计对端粒多聚体 G-四链体具有高特异性和选择性的荧光探针具有挑战性。本研究采用市售的喹啉衍生物 BEPQ-1 作为端粒多聚体 G-四链体的有效开启型传感器。加入端粒多聚体 G-四链体后,荧光强度增强了 20 多倍。该探针对端粒多聚体 G-四链体表现出良好的选择性和灵敏度。并且,BEPQ-1 对端粒多聚体 G-四链体 TTA45 的检测限计算为 0.11 μM。BEPQ-1 的独特之处在于其简单的结构和较小的尺寸。根据结合模式,BEPQ-1 甚至可以通过π-π 堆积同时结合到端粒多聚体 G-四链体中两个相邻 G-四链体单元的末端两个 G-四核苷酸。据我们所知,这是第一个用于端粒多聚体 G-四链体的简单结构荧光探针。这一发现可能为设计端粒多聚体 G-四链体的特异性探针提供了一种策略,并有助于理解端粒区域 G-四链体的结构和功能。