Domljanovic Ivana, Taskova Maria, Miranda Pâmella, Weber Gerald, Astakhova Kira
Department of Chemistry, Technical University of Denmark, 206-207 Kongens, 2800, Lyngby, Denmark.
Department of Oncology, Microbiology and Immunology, Faculty of Science and Medicine, University of Fribourg, Per 17, Chemin du Musée 18, CH-1700, Fribourg, Switzerland.
Commun Chem. 2020 Aug 11;3(1):111. doi: 10.1038/s42004-020-00362-5.
Detection of nucleic acids is crucial to the study of their basic properties and consequently to applying this knowledge to the determination of pathologies such as cancer. In this work, our goal is to determine new trends for creating diagnostic tools for cancer driver mutations. Herein, we study a library of natural and modified oligonucleotide duplexes by a combination of optical and theoretical methods. We report a profound effect of additives on the duplexes, including nucleic acids as an active crowder. Unpredictably and inconsistent with DNA+LNA/RNA duplexes, locked nucleic acids contribute poorly to mismatch discrimination in the DNA+LNA/DNA duplexes. We develop a theoretical framework that explains poor mismatch discrimination in KRAS oncogene. We implement our findings in a bead-bait genotyping assay to detect mutated human cancer RNA. The performance of rationally designed probes in this assay is superior to the LNA-primer polymerase chain reaction, and it agrees with sequencing data.
核酸的检测对于研究其基本特性至关重要,因此对于将这些知识应用于癌症等病理学的诊断也至关重要。在这项工作中,我们的目标是确定创建癌症驱动基因突变诊断工具的新趋势。在此,我们通过光学和理论方法相结合的方式研究了天然和修饰的寡核苷酸双链体文库。我们报道了添加剂对双链体的深远影响,包括核酸作为一种活性拥挤剂。不可预测的是,与DNA+LNA/RNA双链体不同,锁核酸对DNA+LNA/DNA双链体中的错配识别贡献很小。我们开发了一个理论框架来解释KRAS癌基因中错配识别不佳的现象。我们将我们的发现应用于一种磁珠诱饵基因分型检测中,以检测突变的人类癌症RNA。在该检测中,合理设计的探针的性能优于LNA引物聚合酶链反应,并且与测序数据一致。