He Jiening, Huang Lian, Qiu Huiling, Li Jiexuan, Luo Lan, Li Yanjiao, Tian Shengli, Kang Kang, Luo Jun, Liu Lin, Gou Deming
Shenzhen Key Laboratory of Microbial Genetic Engineering, Shenzhen Key Laboratory of Marine Bioresource and Eco-environmental Science, College of Life Sciences, Shenzhen University, Nanhai Ave 3688, Shenzhen, 518060 Guangdong China.
Department of Physiology, Shenzhen University Health Science Center, Shenzhen University, Shenzhen, 518060 Guangdong China.
Cell Biosci. 2015 Dec 8;5:67. doi: 10.1186/s13578-015-0058-2. eCollection 2015.
RNA interference (RNAi) is a robust tool for inhibiting specific gene expression, but it is limited by the uncertain efficiency of siRNA or shRNA constructs. It has been shown that the overexpression of ARGONAUTE 2 (AGO2) protein increases silencing efficiency. However, the key elements required for AGO2-mediated enhancement of gene silencing in lentiviral vector has not been well studied.
To explore the application of AGO2-based shRNA system in mammalian cells, we designed shRNA vectors targeting the EGFP reporter gene and evaluated the effects of various factors on silencing efficiency including stem length, loop sequence, antisense location as well as the ratio between AGO2 and shRNA. We found that 19 ~ 21-bp stem and 6- or 9-nt loop structure in the sense-loop-antisense (S-L-AS) orientation was an optimal design in the AGO2-shRNA system. Then, we constructed a single lentiviral vector co-expressing shRNA and AGO2 and demonstrated that the simultaneous expression of shRNA and AGO2 can achieve robust silencing of exogenous DsRed2 and endogenous ID1 and P65 genes. However, the titers of packaged lentivirus from constitutive expression of AGO2 vector were extremely low, severely limiting its broad application. For the first time, we demonstrated that the problem can be significantly improved by using the inducible expression of AGO2 lentiviral system.
We reported a novel lentiviral vector with an optimal design of shRNA and inducible AGO2 overexpression which provides a new tool for RNAi research.
RNA干扰(RNAi)是抑制特定基因表达的一种强大工具,但它受到小干扰RNA(siRNA)或短发夹RNA(shRNA)构建体效率不确定的限制。已有研究表明,AGO2蛋白的过表达可提高沉默效率。然而,慢病毒载体中AGO2介导的基因沉默增强所需的关键元件尚未得到充分研究。
为了探索基于AGO2的shRNA系统在哺乳动物细胞中的应用,我们设计了靶向EGFP报告基因的shRNA载体,并评估了各种因素对沉默效率的影响,包括茎长度、环序列、反义链位置以及AGO2与shRNA之间的比例。我们发现,在正义-环-反义(S-L-AS)方向上,19~21bp的茎和6或9nt的环结构是AGO2-shRNA系统的最佳设计。然后,我们构建了一个共表达shRNA和AGO2的单一慢病毒载体,并证明shRNA和AGO2的同时表达可实现对外源DsRed2以及内源ID1和P65基因的有效沉默。然而,AGO2载体组成型表达包装的慢病毒滴度极低,严重限制了其广泛应用。我们首次证明,使用AGO2慢病毒诱导表达系统可显著改善这一问题。
我们报道了一种新型慢病毒载体,其shRNA设计优化且AGO2可诱导过表达,为RNAi研究提供了一种新工具。