Institut de Pharmacologie et Biologie Structurale, IPBS, Université de Toulouse, CNRS, UPS, Toulouse, France.
Equipe Labellisée Ligue Contre Le Cancer 2018, Toulouse, France.
Sci Rep. 2021 Jun 29;11(1):13469. doi: 10.1038/s41598-021-92806-8.
G-quadruplexes (G4) are non-canonical secondary structures consisting in stacked tetrads of hydrogen-bonded guanines bases. An essential feature of G4 is their intrinsic polymorphic nature, which is characterized by the equilibrium between several conformations (also called topologies) and the presence of different types of loops with variable lengths. In cells, G4 functions rely on protein or enzymatic factors that recognize and promote or resolve these structures. In order to characterize new G4-dependent mechanisms, extensive researches aimed at identifying new G4 binding proteins. Using G-rich single-stranded oligonucleotides that adopt non-controlled G4 conformations, a large number of G4-binding proteins have been identified in vitro, but their specificity towards G4 topology remained unknown. Constrained G4 structures are biomolecular objects based on the use of a rigid cyclic peptide scaffold as a template for directing the intramolecular assembly of the anchored oligonucleotides into a single and stabilized G4 topology. Here, using various constrained RNA or DNA G4 as baits in human cell extracts, we establish the topology preference of several well-known G4-interacting factors. Moreover, we identify new G4-interacting proteins such as the NELF complex involved in the RNA-Pol II pausing mechanism, and we show that it impacts the clastogenic effect of the G4-ligand pyridostatin.
四链体(G4)是由氢键结合的鸟嘌呤碱基堆叠而成的非经典二级结构。G4 的一个重要特征是其内在的多态性,这表现为几种构象(也称为拓扑结构)之间的平衡以及具有不同长度的不同类型环的存在。在细胞中,G4 的功能依赖于识别和促进或解决这些结构的蛋白质或酶因子。为了表征新的依赖 G4 的机制,广泛的研究旨在识别新的 G4 结合蛋白。使用采用非受控 G4 构象的富含 G 的单链寡核苷酸,已经在体外鉴定出大量 G4 结合蛋白,但它们对 G4 拓扑结构的特异性仍然未知。约束 G4 结构是基于使用刚性环状肽支架作为模板来指导锚定寡核苷酸在单个稳定 G4 拓扑结构中进行分子内组装的生物分子对象。在这里,我们使用各种约束的 RNA 或 DNA G4 作为诱饵在人细胞提取物中,我们确定了几个知名的 G4 相互作用因子的拓扑偏好。此外,我们鉴定了新的 G4 相互作用蛋白,如参与 RNA-Pol II 暂停机制的 NELF 复合物,并且我们表明它会影响 G4 配体吡啶并哒嗪的致裂效应。