Summers Peter A, Thomas Ajesh P, Kench Timothy, Vannier Jean-Baptiste, Kuimova Marina K, Vilar Ramon
Department of Chemistry, Molecular Sciences Research Hub, Imperial College London 82 Wood Lane, White City Campus W12 0BZ UK
Telomere Replication and Stability Group, Medical Research Council - London Institute of Medical Sciences London W12 0NN UK.
Chem Sci. 2021 Oct 15;12(43):14624-14634. doi: 10.1039/d1sc04567a. eCollection 2021 Nov 10.
The important role that G-quadruplex DNA (G4 DNA) structures play in regulating biological processes is becoming widely recognised. These structures have also been proposed to be attractive drug targets. Therefore, there has been significant interest in developing small molecules that can selectively bind to G4 DNA over other topologies. In this paper we investigate the interaction between DNA and helical compounds (helicenes) based on a central carbocation trisubstituted with aromatic rings. We show that the non-planar structure of these helicenes results in a significantly reduced affinity for dsDNA when compared to their planar analogues, whilst maintaining a high affinity for G4 DNA. Additionally, the right- and left-handed enantiomers of one of these helicenes recognise the chiral DNA environments of G4 and dsDNA differently. We show that upon DNA binding the helicenes display a fluorescence switch-on effect, which we have successfully used for cellular imaging in live and fixed U2OS cells, staining mitochondria and the nucleus, respectively.
G-四链体DNA(G4 DNA)结构在调节生物过程中所起的重要作用正得到广泛认可。这些结构也被认为是有吸引力的药物靶点。因此,人们对开发能够选择性结合G4 DNA而非其他拓扑结构的小分子产生了浓厚兴趣。在本文中,我们研究了基于中心碳正离子被芳环三取代的螺旋化合物(螺旋烯)与DNA之间的相互作用。我们表明,与平面类似物相比,这些螺旋烯的非平面结构导致其对双链DNA的亲和力显著降低,同时对G4 DNA保持高亲和力。此外,其中一种螺旋烯的右旋和左旋对映体对G4和双链DNA的手性DNA环境有不同的识别。我们表明,螺旋烯在与DNA结合时会表现出荧光开启效应,我们已成功将其用于活的和固定的U2OS细胞的细胞成像,分别对线粒体和细胞核进行染色。