Laguerre Aurélien, Desbois Nicolas, Stefan Loic, Richard Philippe, Gros Claude P, Monchaud David
Institut de Chimie Moléculaire, Université de Bourgogne (ICMUB), CNRS UMR6302, Dijon (France).
ChemMedChem. 2014 Sep;9(9):2035-9. doi: 10.1002/cmdc.201300526. Epub 2014 Feb 12.
Secondary nucleic acid structures, such as DNA and RNA quadruplexes, are potential targets for cancer therapies. Ligands that interact with these targets could thus find application as anticancer agents. Synthetic G-quartets have recently found numerous applications, including use as bioinspired G-quadruplex ligands. Herein, the design, synthesis and preliminary biophysical evaluation of a new prototype multitarget G-quadruplex ligand, (PNA)PorphySQ, are reported, where peptidic nucleic acid guanine ((PNA)G) was incorporated in the porphyrin-templated synthetic G-quartet (PorphySQ). Using fluorescence resonance energy transfer (FRET)-melting experiments, PorphySQ was shown to possess enhanced quadruplex-interacting properties thanks to the presence of four positively charged (PNA)G residues that improve its electrostatic interactions with the binding site of both DNA and RNA quadruplexes (i.e., their negatively charged and accessible G-quartets), thereby making (PNA)PorphySQ an interesting prototype of a multitarget ligand. Both the chemical stability and water solubility of (PNA)PorphySQ are improved over the non-PNA derivative (PorphySQ), which are desirable properties for drug development, and while improvements remain to be made, this ligand is a promising lead for the further development of multitarget G-quadruplex ligands.
二级核酸结构,如DNA和RNA四链体,是癌症治疗的潜在靶点。与这些靶点相互作用的配体因此有望用作抗癌药物。合成G-四联体最近有许多应用,包括用作受生物启发的G-四链体配体。本文报道了一种新型多靶点G-四链体配体(PNA)PorphySQ的设计、合成及初步生物物理评价,其中肽核酸鸟嘌呤((PNA)G)被并入卟啉模板化合成G-四联体(PorphySQ)中。通过荧光共振能量转移(FRET)熔解实验表明,由于存在四个带正电荷的(PNA)G残基,PorphySQ具有增强的四链体相互作用特性,这些残基改善了其与DNA和RNA四链体结合位点(即其带负电荷且可及的G-四联体)的静电相互作用,从而使(PNA)PorphySQ成为一种有趣的多靶点配体原型。(PNA)PorphySQ的化学稳定性和水溶性均优于非PNA衍生物(PorphySQ),这是药物开发所需的特性,虽然仍有待改进,但该配体是进一步开发多靶点G-四链体配体的有前景的先导物。