Boutimah-Hamoudi Fatima, Leforestier Erwan, Sénamaud-Beaufort Catherine, Nielsen Peter E, Giovannangeli Carine, Saison-Behmoaras Tula Ester
INSERM, U565, Acides nucléiques: dynamique, ciblage et fonctions biologiques, 57 rue Cuvier, CP26, Paris Cedex 05, F-75231, France.
Nucleic Acids Res. 2007;35(12):3907-17. doi: 10.1093/nar/gkm374. Epub 2007 May 30.
DNA and RNA oligomers that contain stretches of guanines can associate to form stable secondary structures including G-quadruplexes. Our study shows that the (UUAAAAGAAAAGGGGGGAU) RNA sequence, from the human immunodeficiency virus type 1 (HIV-1 polypurine tract or PPT sequence) forms in vitro a stable folded structure involving the G-run. We have investigated the ability of pyrimidine peptide nucleic acid (PNA) oligomers targeted to the PPT sequence to invade the folded RNA and exhibit biological activity at the translation level in vitro and in cells. We find that PNAs can form stable complexes even with the structured PPT RNA target at neutral pH. We show that T-rich PNAs, namely the tridecamer-I PNA (C4T4CT4) forms triplex structures whereas the C-rich tridecamer-II PNA (TC6T4CT) likely forms a duplex with the target RNA. Interestingly, we find that both C-rich and T-rich PNAs arrested in vitro translation elongation specifically at the PPT target site. Finally, we show that T-rich and C-rich tridecamer PNAs that have been identified as efficient and specific blockers of translation elongation in vitro, specifically inhibit translation in streptolysin-O permeabilized cells where the PPT target sequence has been introduced upstream the reporter luciferase gene.
含有鸟嘌呤片段的DNA和RNA寡聚物可以结合形成包括G-四链体在内的稳定二级结构。我们的研究表明,来自人类免疫缺陷病毒1型(HIV-1多嘌呤序列或PPT序列)的(UUAAAAGAAAAGGGGGGAU)RNA序列在体外形成了一种涉及G链的稳定折叠结构。我们研究了靶向PPT序列的嘧啶肽核酸(PNA)寡聚物侵入折叠RNA并在体外和细胞内翻译水平上表现出生物活性的能力。我们发现,即使在中性pH值下,PNA与结构化的PPT RNA靶标也能形成稳定的复合物。我们发现富含T的PNA,即十三聚体-I PNA(C4T4CT4)形成三链体结构,而富含C的十三聚体-II PNA(TC6T4CT)可能与靶标RNA形成双链体。有趣的是,我们发现富含C和富含T的PNA在体外翻译延伸过程中都能特异性地在PPT靶位点处停滞。最后,我们表明,已被确定为体外翻译延伸有效且特异性阻断剂的富含T和富含C的十三聚体PNA,在已将PPT靶序列引入报告荧光素酶基因上游的链球菌溶血素-O通透细胞中特异性抑制翻译。