Recombinaison et Instabilité Génétique, Institut Curie Centre de Recherche, CNRS UMR3244, Université Pierre et Marie Curie, 26 rue d'Ulm, 75248 Paris Cedex 05, France.
Nucleic Acids Res. 2010 Jul;38(13):4337-48. doi: 10.1093/nar/gkq136. Epub 2010 Mar 11.
G-quadruplexes are nucleic acid secondary structures for which many biological roles have been proposed but whose existence in vivo has remained elusive. To assess their formation, highly specific G-quadruplex ligands are needed. Here, we tested Phen-DC(3) and Phen-DC(6), two recently released ligands of the bisquinolinium class. In vitro, both compounds exhibit high affinity for the G4 formed by the human minisatellite CEB1 and inhibit efficiently their unwinding by the yeast Pif1 helicase. In vivo, both compounds rapidly induced recombination-dependent rearrangements of CEB1 inserted in the Saccharomyces cerevisiae genome, but did not affect the stability of other tandem repeats lacking G-quadruplex forming sequences. The rearrangements yielded simple-deletion, double-deletion or complex reshuffling of the polymorphic motif units, mimicking the phenotype of the Pif1 inactivation. Treatment of Pif1-deficient cells with the Phen-DC compounds further increased CEB1 instability, revealing additional G4 formation per cell. In sharp contrast, the commonly used N-methyl-mesoporphyrin IX G-quadruplex ligand did not affect CEB1 stability. Altogether, these results demonstrate that the Phen-DC bisquinolinium compounds are potent molecular tools for probing the formation of G-quadruplexes in vivo, interfere with their processing and elucidate their biological roles.
G-四链体是核酸的二级结构,人们提出了许多与它有关的生物学功能,但它在体内的存在仍然难以捉摸。为了评估其形成,需要高特异性的 G-四链体配体。在这里,我们测试了 Phen-DC(3)和 Phen-DC(6),这两种双喹啉类化合物是最近发布的。在体外,这两种化合物都对由人类微卫星 CEB1 形成的 G4 具有高亲和力,并有效地抑制了酵母 Pif1 解旋酶对其解旋。在体内,这两种化合物都能迅速诱导插入酿酒酵母基因组中的 CEB1 发生依赖重组的重排,但不影响其他缺乏 G-四链体形成序列的串联重复的稳定性。重排产生了简单缺失、双缺失或复杂的多态性基元单位重排,模拟了 Pif1 失活的表型。用 Phen-DC 化合物处理 Pif1 缺陷细胞进一步增加了 CEB1 的不稳定性,表明每个细胞中形成了更多的 G-四链体。相比之下,常用的 N-甲基-甲卟啉 IX G-四链体配体并不影响 CEB1 的稳定性。总之,这些结果表明,Phen-DC 双喹啉类化合物是探测体内 G-四链体形成、干扰其加工和阐明其生物学功能的有效分子工具。