Zenke Kosuke, Okinaka Yasushi
Graduate School of Integrated Sciences for Life, Hiroshima University, Higashihiroshima, Hiroshima 739-8528, Japan.
Biol Methods Protoc. 2022 May 17;7(1):bpac011. doi: 10.1093/biomethods/bpac011. eCollection 2022.
In spite of the growing attention given to medaka () as an excellent vertebrate model, an effective gene knockdown system has not yet been established using cultured cells of this fish species. In this study, a gene knockdown system using short interfering RNA (siRNA) in medaka cell lines was established through the optimization of transfection conditions. By extensive screening of several medaka cell lines and transfection reagents, OLHNI-2 cells and X-tremeGENE siRNA Transfection Reagent were selected as the best combination to achieve high transfection efficiency of siRNA without cytotoxic effect. Knockdown conditions were then refined using the endogenous heat shock protein 90 (Hsp90) genes as the siRNA targets. Among the parameters tested, cell density, serum concentration in the culture medium, and duration of transfection improved knockdown efficiency, where the target mRNA in cells transfected with each of the siRNAs was reduced from 12.0% to 26.7% of the control level. Our results indicate that the established knockdown system using siRNA is a promising tool for functional analysis of medaka genes .
尽管青鳉作为一种优秀的脊椎动物模型越来越受到关注,但尚未利用该鱼类的培养细胞建立有效的基因敲低系统。在本研究中,通过优化转染条件,在青鳉细胞系中建立了使用小干扰RNA(siRNA)的基因敲低系统。通过对几种青鳉细胞系和转染试剂进行广泛筛选,选择OLHNI-2细胞和X-tremeGENE siRNA转染试剂作为最佳组合,以实现siRNA的高转染效率且无细胞毒性作用。然后以内源性热休克蛋白90(Hsp90)基因作为siRNA靶标来优化敲低条件。在所测试的参数中,细胞密度、培养基中的血清浓度和转染持续时间提高了敲低效率,用每种siRNA转染的细胞中的靶标mRNA降低至对照水平的12.0%至26.7%。我们的结果表明,所建立的使用siRNA的敲低系统是用于青鳉基因功能分析的一种有前景的工具。