Carvalho Josué, Lopes-Nunes Jéssica, Campello Maria Paula Cabral, Paulo António, Milici Janice, Meyers Craig, Mergny Jean-Louis, Salgado Gilmar F, Queiroz João A, Cruz Carla
CICS-UBI - Centro de Investigação em Ciências da Saúde, Universidade da Beira Interior, Covilhã, Portugal.
Centro de Ciências e Tecnologias Nucleares, Instituto Superior Técnico, Universidade de Lisboa, Bobadela LRS, Portugal.
Nucleic Acid Ther. 2021 Feb;31(1):68-81. doi: 10.1089/nat.2020.0869. Epub 2020 Oct 29.
Herein, we report, for the first time, the screening of several ligands in terms of their ability to bind and stabilize G-quadruplexes (G4) found in seven human Papillomavirus (HPV) genomes. Using a variety of biophysical assays, HPV G-quadruplexes were shown to possess a high degree of structural polymorphism upon ligand binding, which may have an impact on transcription, replication, and viral protein production. A sequence found in high-risk HPV16 genotype folds into multiple non-canonical DNA structures; it was converted into a major G4 conformation upon interaction with a well-characterized highly selective G4 ligand, PhenDC3, which may have an impact on the viral infection. Likewise, HPV57 and 58, which fold into multiple G4 structures, were found to form single stable complexes in the presence of two other G4 ligands, C and pyridostatin, respectively. In addition, one of the selected compounds, the acridine derivative C, demonstrated a significant antiviral effect in HPV18-infected organotypic raft cultures. Altogether, these results indicate that targeting HPV G4s may be an alternative route for the development of novel antiviral therapies.
在此,我们首次报道了对几种配体结合和稳定七种人乳头瘤病毒(HPV)基因组中发现的G-四链体(G4)能力的筛选。使用多种生物物理分析方法,研究表明HPV G-四链体在结合配体后具有高度的结构多态性,这可能对转录、复制和病毒蛋白产生有影响。在高危HPV16基因型中发现的一个序列可折叠成多种非经典DNA结构;与一种特征明确的高选择性G4配体PhenDC3相互作用后,它转变为主要的G4构象,这可能对病毒感染有影响。同样,HPV57和58可折叠成多种G4结构,分别在另外两种G4配体C和吡啶氨菌素存在的情况下形成单一稳定复合物。此外,所选化合物之一吖啶衍生物C在HPV18感染的器官型筏式培养物中显示出显著的抗病毒作用。总之,这些结果表明靶向HPV G4s可能是开发新型抗病毒疗法的一条替代途径。