Instituto de Biología Molecular y Celular de Rosario (IBR), Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET) - Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario (UNR), Ocampo y Esmeralda, S2000EZP, Rosario, Argentina.
Institut de Pharmacologie et Biologie Structurale, UMR5089 CNRS-Université de Toulouse, Equipe Labellisée Ligue Nationale contre le Cancer 2018, 31077, Toulouse, France.
Nucleic Acids Res. 2019 Sep 5;47(15):7901-7913. doi: 10.1093/nar/gkz527.
Guanine-rich DNA strands can fold into non-canonical four-stranded secondary structures named G-quadruplexes (G4). Experimental evidences suggest that G4-DNA surrounding transcription start sites act as cis-regulatory elements by either stimulating or inhibiting gene transcription. Therefore, proteins able to target and regulate specific G4 formation/unfolding are crucial for G4-mediated transcriptional control. Here we present data revealing that CNBP acts in vitro as a G4-unfolding protein over a tetramolecular G4 formed by the TG4T oligonucleotide, as well as over the G4 folded in the promoters of several oncogenes. CNBP depletion in cellulo led to a reduction in the transcription of endogenous KRAS, suggesting a regulatory role of CNBP in relieving the transcriptional abrogation due to G4 formation. CNBP activity was also assayed over the evolutionary conserved G4 enhancing the transcription of NOGGIN (NOG) developmental gene. CNBP unfolded in vitro NOG G4 and experiments performed in cellulo and in vivo in developing zebrafish showed a repressive role of CNBP on the transcription of this gene by G4 unwinding. Our results shed light on the mechanisms underlying CNBP way of action, as well as reinforce the notion about the existence and function of G4s in whole living organisms.
富含鸟嘌呤的 DNA 链可以折叠成非经典的四链二级结构,称为 G-四链体 (G4)。实验证据表明,位于转录起始位点周围的 G4-DNA 可以作为顺式调控元件,通过刺激或抑制基因转录来发挥作用。因此,能够靶向和调节特定 G4 形成/解折叠的蛋白质对于 G4 介导的转录调控至关重要。在这里,我们提供的数据表明,CNBP 在体外可以作为一种 G4 解折叠蛋白,作用于由 TG4T 寡核苷酸形成的四聚体 G4,以及作用于几个癌基因启动子中折叠的 G4。细胞内的 CNBP 耗竭导致内源性 KRAS 的转录减少,表明 CNBP 在缓解由于 G4 形成导致的转录阻断方面发挥调节作用。还在进化上保守的 G4 上测定了 CNBP 的活性,增强了发育基因 NOGGIN (NOG) 的转录。在体外展开的 NOG G4 上进行的实验以及在发育中的斑马鱼中进行的细胞内和体内实验表明,CNBP 通过 G4 解旋对该基因的转录具有抑制作用。我们的结果阐明了 CNBP 作用机制的基础,同时也加强了关于整个生物体中 G4 的存在和功能的概念。