Takata Ryohei, Makado Gouki, Kitamura Ayaka, Watanabe Hajime, Wada Tadashi
a Nucleic Acid Regulation (Yoshindo) Joint Research Laboratory and.
b Bioenvironmental Science , Department of Biotechnology, Osaka University , Suita, Osaka , Japan.
RNA Biol. 2016;13(3):279-89. doi: 10.1080/15476286.2015.1119364. Epub 2016 Feb 18.
Nuclear factor κB (NFκB), which is composed of the RelA and p50 subunits, binds to NFκB response elements (NREs) and stimulates the transcription of inflammation-related genes. Here, locked nucleic acid (LNA) antisense oligonucleotides (ASOs) complementary to the termini of the 3'- and 5'-untranslated regions (UTRs) of the RelA mRNA were generated; these molecules were named 3'-LNA and 5'-LNA, respectively. To evaluate their effects on NFκB activity, HeLa cells were co-transfected with the LNA ASOs and a luciferase reporter gene carrying an NRE. Transfection of the cells with 3'-LNA reduced NFκB activity by 30-40%, without affecting RelA mRNA accumulation. Concomitant transfection of HeLa cells with 5'-LNA and 3'-LNA resulted in a 70% reduction in NFκB activity. Furthermore, partial poly(A) tail shortening occurred in LNA ASO-transfected cells. We also employed triethylene glycol as a spacer to link 5'-LNA and 3'-LNA. Reporter gene assays showed that the spacer-linked LNA ASO reduced NFκB activity similarly to a combination of 5'-LNA and 3'-LNA. In addition, an in vitro translation assay revealed that spacer-linked LNA ASOs inhibited the translation of a target mRNA in a specific manner. In summary, this study describes a novel antisense method capturing the target mRNA at independent positions.
由RelA和p50亚基组成的核因子κB(NFκB)与NFκB反应元件(NRE)结合,并刺激炎症相关基因的转录。在此,生成了与RelA mRNA的3'-和5'-非翻译区(UTR)末端互补的锁核酸(LNA)反义寡核苷酸(ASO);这些分子分别命名为3'-LNA和5'-LNA。为了评估它们对NFκB活性的影响,将HeLa细胞与LNA ASO和携带NRE的荧光素酶报告基因共转染。用3'-LNA转染细胞可使NFκB活性降低30-40%,而不影响RelA mRNA的积累。将HeLa细胞同时用5'-LNA和3'-LNA转染,可使NFκB活性降低70%。此外,在LNA ASO转染的细胞中发生了部分聚(A)尾缩短。我们还使用三甘醇作为间隔物连接5'-LNA和3'-LNA。报告基因检测表明,间隔物连接的LNA ASO降低NFκB活性的方式与5'-LNA和3'-LNA的组合相似。此外,体外翻译检测表明,间隔物连接的LNA ASO以特定方式抑制靶mRNA的翻译。总之,本研究描述了一种在独立位置捕获靶mRNA的新型反义方法。