Sosic Alice, Göttlich Richard, Fabris Dan, Gatto Barbara
Department of Pharmaceutical and Pharmacological Sciences, University of Padova, 35131 Padova, Italy.
Institute of Organic Chemistry, Justus Liebig University Giessen, 35392 Giessen, Germany.
Nucleic Acids Res. 2021 Jul 9;49(12):6660-6672. doi: 10.1093/nar/gkab468.
Elucidating the structure of RNA and RNA ensembles is essential to understand biological functions. In this work, we explored the previously uncharted reactivity of bis-chloropiperidines (B-CePs) towards RNA. We characterized at the molecular level the different adducts induced by the fast reacting compound B-CeP 1 with RNA. Following an approach based on solution thermal melting coupled with ESI mass spectrometry (STHEM-ESI), we proved the ability of B-CePs to induce inter-molecular cross-links between guanines in double stranded RNA. These results open the possibility of using B-CePs as structural probes for investigating higher-order structures, such as the kissing loop complex established by the dimerization initiation site (DIS) of the HIV-1 genome. We confirmed the potential of B-CePs to reveal the identity of RNA structures involved in long-range interactions, expecting to benefit the characterization of samples that are not readily amenable to traditional high-resolution techniques, and thus promoting the elucidation of pertinent RNA systems associated with old and new diseases.
阐明RNA及RNA集合体的结构对于理解其生物学功能至关重要。在这项工作中,我们探索了双氯哌啶(B-CePs)与RNA之间此前未被研究过的反应活性。我们在分子水平上表征了快速反应化合物B-CeP 1与RNA诱导产生的不同加合物。采用基于溶液热熔解结合电喷雾电离质谱(STHEM-ESI)的方法,我们证明了B-CePs能够诱导双链RNA中鸟嘌呤之间形成分子间交联。这些结果为将B-CePs用作结构探针来研究高阶结构(如由HIV-1基因组二聚化起始位点(DIS)形成的吻式环复合物)开辟了可能性。我们证实了B-CePs揭示参与长程相互作用的RNA结构身份的潜力,期望有益于那些不易用传统高分辨率技术分析的样品的表征,从而推动与新旧疾病相关的相关RNA系统的阐明。