Center for Gene Therapy, The Research Institute at Nationwide Children's Hospital, Columbus, Ohio, 43205, USA.
BMC Biotechnol. 2011 Nov 16;11:107. doi: 10.1186/1472-6750-11-107.
RNA interference (RNAi) is a conserved gene silencing mechanism mediated by small inhibitory microRNAs (miRNAs).Promoter-driven miRNA expression vectors have emerged as important tools for delivering natural or artificially designed miRNAs to eukaryotic cells and organisms. Such systems can be used to query the normal or pathogenic functions of natural miRNAs or messenger RNAs, or to therapeutically silence disease genes.
As with any molecular cloning procedure, building miRNA-based expression constructs requires a time investment and some molecular biology skills. To improve efficiency and accelerate the construction process, we developed a method to rapidly generate miRNA expression vectors using recombinases instead of more traditional cut-and-paste molecular cloning techniques. In addition to streamlining the construction process, our cloning strategy provides vectors with added versatility. In our system, miRNAs can be constitutively expressed from the U6 promoter, or inducibly expressed by Cre recombinase. We also engineered a built-in mechanism to destroy the vector with Flp recombinase, if desired. Finally, to further simplify the construction process, we developed a software package that automates the prediction and design of optimal miRNA sequences using our system.
We designed and tested a modular system to rapidly clone miRNA expression cassettes. Our strategy reduces the hands-on time required to successfully generate effective constructs, and can be implemented in labs with minimal molecular cloning expertise. This versatile system provides options that permit constitutive or inducible miRNA expression, depending upon the needs of the end user. As such, it has utility for basic or translational applications.
RNA 干扰(RNAi)是一种由小抑制性 microRNAs(miRNAs)介导的保守基因沉默机制。启动子驱动的 miRNA 表达载体已成为将天然或人工设计的 miRNAs 递送到真核细胞和生物体中的重要工具。此类系统可用于查询天然 miRNAs 或信使 RNA 的正常或致病功能,或用于治疗性沉默疾病基因。
与任何分子克隆程序一样,构建基于 miRNA 的表达构建体需要投入时间和一些分子生物学技能。为了提高效率并加速构建过程,我们开发了一种使用重组酶而不是更传统的切割和粘贴分子克隆技术快速生成 miRNA 表达载体的方法。除了简化构建过程外,我们的克隆策略还提供了更多的多功能性。在我们的系统中,miRNAs 可以从 U6 启动子组成性表达,也可以由 Cre 重组酶诱导表达。我们还设计了一种内置机制,如果需要,可以用 Flp 重组酶破坏载体。最后,为了进一步简化构建过程,我们开发了一个软件包,该软件包使用我们的系统自动预测和设计最佳 miRNA 序列。
我们设计并测试了一种用于快速克隆 miRNA 表达盒的模块化系统。我们的策略减少了成功生成有效构建体所需的实际操作时间,并且可以在分子克隆专业知识最少的实验室中实施。这种多功能系统提供了根据最终用户的需求选择组成型或诱导型 miRNA 表达的选项。因此,它具有基础或转化应用的实用性。