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A Simplified and Versatile System for the Simultaneous Expression of Multiple siRNAs in Mammalian Cells Using Gibson DNA Assembly

机译:使用吉布森DNA组装的哺乳动物细胞中多个siRNA同时表达的简化和多功能系统。

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摘要

RNA interference (RNAi) denotes sequence-specific mRNA degradation induced by short interfering double-stranded RNA (siRNA) and has become a revolutionary tool for functional annotation of mammalian genes, as well as for development of novel therapeutics. The practical applications of RNAi are usually achieved by expressing short hairpin RNAs (shRNAs) or siRNAs in cells. However, a major technical challenge is to simultaneously express multiple siRNAs to silence one or more genes. We previously developed pSOS system, in which siRNA duplexes are made from oligo templates driven by opposing U6 and H1 promoters. While effective, it is not equipped to express multiple siRNAs in a single vector. Gibson DNA Assembly (GDA) is an in vitro recombination system that has the capacity to assemble multiple overlapping DNA molecules in a single isothermal step. Here, we developed a GDA-based pSOK assembly system for constructing single vectors that express multiple siRNA sites. The assembly fragments were generated by PCR amplifications from the U6-H1 template vector pB2B. GDA assembly specificity was conferred by the overlapping unique siRNA sequences of insert fragments. To prove the technical feasibility, we constructed pSOK vectors that contain four siRNA sites and three siRNA sites targeting human and mouse β-catenin, respectively. The assembly reactions were efficient, and candidate clones were readily identified by PCR screening. Multiple β-catenin siRNAs effectively silenced endogenous β-catenin expression, inhibited Wnt3A-induced β-catenin/Tcf4 reporter activity and expression of Wnt/β-catenin downstream genes. Silencing β-catenin in mesenchymal stem cells inhibited Wnt3A-induced early osteogenic differentiation and significantly diminished synergistic osteogenic activity between BMP9 and Wnt3A in vitro and in vivo. These findings demonstrate that the GDA-based pSOK system has been proven simplistic, effective and versatile for simultaneous expression of multiple siRNAs. Thus, the reported pSOK system should be a valuable tool for gene function studies and development of novel therapeutics.
机译:RNA干扰(RNAi)表示由短干扰双链RNA(siRNA)诱导的序列特异性mRNA降解,已成为哺乳动物基因功能注释以及开发新疗法的革命性工具。 RNAi的实际应用通常是通过在细胞中表达短发夹RNA(shRNA)或siRNA来实现的。然而,一项主要的技术挑战是同时表达多种siRNA来沉默一个或多个基因。我们先前开发了pSOS系统,其中siRNA双链体是由反向U6和H1启动子驱动的寡核苷酸模板制成的。尽管有效,但尚不能在单个载体中表达多个siRNA。吉布森DNA组装(GDA)是一种体外重组系统,具有在单个等温步骤中组装多个重叠DNA分子的能力。在这里,我们开发了基于GDA的pSOK组装系统,用于构建表达多个siRNA位点的单个载体。通过U6-H1模板载体pB2B的PCR扩增产生装配片段。 GDA组装特异性是由插入片段的重叠独特siRNA序列赋予的。为了证明技术可行性,我们构建了pSOK载体,该载体包含分别靶向人和小鼠β-catenin的四个siRNA位点和三个siRNA位点。组装反应是有效的,并且候选克隆易于通过PCR筛选来鉴定。多个β-cateninsiRNA有效沉默内源性β-catenin表达,抑制Wnt3A诱导的β-catenin/ Tcf4报告基因活性和Wnt /β-catenin下游基因的表达。在间充质干细胞中沉默β-catenin可抑制Wnt3A诱导的早期成骨分化,并显着降低体内外BMP9和Wnt3A之间的协同成骨活性。这些发现表明,基于GDA的pSOK系统已被证明可同时表达多种siRNA,具有简单,有效和通用性。因此,报道的pSOK系统应该是基因功能研究和新疗法开发的有价值的工具。

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