Laboratoire d'Optique et Biosciences, Ecole Polytechnique, CNRS, Inserm, Institut Polytechnique de Paris, 91128 Palaiseau, France.
CNRS UMR9187, INSERM U1196, Université Paris-Saclay, F-91405 Orsay, France.
Nucleic Acids Res. 2022 Sep 9;50(16):e93. doi: 10.1093/nar/gkac465.
Algorithms have been widely used to predict G-quadruplexes (G4s)-prone sequences. However, an experimental validation of these predictions is generally required. We previously reported a high-throughput technique to evidence G4 formation in vitro called FRET-MC. This method, while convenient and reproducible, has one known weakness: its inability to pin point G4 motifs of low thermal stability. As such quadruplexes may still be biologically relevant if formed at physiological temperature, we wanted to develop an independent assay to overcome this limitation. To this aim, we introduced an isothermal version of the competition assay, called iso-FRET, based on a duplex-quadruplex competition and a well-characterized bis-quinolinium G4 ligand, PhenDC3. G4-forming competitors act as decoys for PhenDC3, lowering its ability to stabilize the G4-forming motif reporter oligonucleotide conjugated to a fluorescence quencher (37Q). The decrease in available G4 ligand concentration restores the ability of 37Q to hybridize to its FAM-labeled short complementary C-rich strand (F22), leading to a decrease in fluorescence signal. In contrast, when no G4-forming competitor is present, PhenDC3 remains available to stabilize the 37Q quadruplex, preventing the formation of the F22 + 37Q complex. Iso-FRET was first applied to a reference panel of 70 sequences, and then used to investigate 23 different viral sequences.
算法已被广泛用于预测 G-四链体(G4)倾向序列。然而,通常需要对这些预测进行实验验证。我们之前报道了一种称为 FRET-MC 的高通量体外检测 G4 形成的技术。虽然这种方法方便且可重复,但有一个已知的弱点:它无法确定低热稳定性的 G4 基序。由于这些四联体在生理温度下形成时仍可能具有生物学相关性,因此我们希望开发一种独立的测定方法来克服这一限制。为此,我们引入了一种基于双链-四链体竞争的等温竞争测定法,称为 iso-FRET,并使用了一种经过充分表征的双喹啉 G4 配体 PhenDC3。形成 G4 的竞争物充当 PhenDC3 的诱饵,降低其稳定与荧光猝灭剂(37Q)连接的 G4 形成基序报告寡核苷酸的能力。可用 G4 配体浓度的降低恢复了 37Q 与与其 FAM 标记的短互补 C 丰富链(F22)杂交的能力,导致荧光信号降低。相比之下,当不存在形成 G4 的竞争物时,PhenDC3 仍然可用于稳定 37Q 四联体,从而阻止 F22 + 37Q 复合物的形成。Iso-FRET 首先应用于 70 个序列的参考面板,然后用于研究 23 种不同的病毒序列。