Institute of Pharmaceutical Sciences, Department of Chemistry and Applied Biosciences, ETH Zurich, Vladimir-Prelog-Weg 4, 8093, Zurich.
Chemistry. 2021 Jul 12;27(39):10193-10200. doi: 10.1002/chem.202101171. Epub 2021 Jun 4.
MicroRNAs constitute a class of endogenous, non-coding RNAs that influence various processes within the cell. By base-pairing to partially-complementary sites located in the 3' untranslated region of target messenger RNAs, microRNAs participate in post-transcriptional regulation of the majority of human protein-coding genes. Their dysregulation has been related to many pathological processes and diseases. Thus, an in-depth understanding of the microRNA mechanisms of action is crucial. Here, we present a new concept of probe design to achieve an efficient and sequence-independent miRNA-mRNA cross-linking. The new strategy is based on the utilization of a controlled mixture of probes for a chosen miRNA, in which a trioxsalen moiety is introduced at the N -position of a selected cytidine through short oligoethylene glycol-based linkers. In vitro photo-cross-linking experiments with mini-libraries of probes for microRNAs of interest showed variable cross-linking efficiencies, demonstrating a general applicability of the presented approach.
MicroRNAs 是一类内源性非编码 RNA,能够影响细胞内的各种过程。通过与靶信使 RNA 3'非翻译区中部分互补的位点结合,MicroRNAs 参与了大多数人类编码蛋白基因的转录后调控。它们的失调与许多病理过程和疾病有关。因此,深入了解 MicroRNA 的作用机制至关重要。在这里,我们提出了一种新的探针设计概念,以实现高效且序列无关的 miRNA-mRNA 交联。该新策略基于对选定 miRNA 的探针混合物的利用,其中通过短的聚乙二醇基接头将三氧杂环丁烷部分引入选定胞嘧啶的 N 位。用感兴趣的 MicroRNAs 的小型探针文库进行的体外光交联实验显示了可变的交联效率,证明了所提出方法的通用性。