Developing a Versatile Shotgun Cloning Strategy for Single-Vector-Based Multiplex Expression of Short Interfering RNAs (siRNAs) in Mammalian Cells

开发一种通用的单载体多重表达短干扰RNA(siRNA)的鸟枪法克隆策略在哺乳动物细胞中应用

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作者:Xi Wang,Chengfu Yuan,Bo Huang,Jiaming Fan,Yixiao Feng,Alexander J Li,Bo Zhang,Yan Lei,Zhenyu Ye,Ling Zhao,Daigui Cao,Lijuan Yang,Di Wu,Xian Chen,Bin Liu,William Wagstaff,Fang He,Xiaoxing Wu,Huaxiu Luo,Jing Zhang,Meng Zhang,Rex C Haydon,Hue H Luu,Michael J Lee,Jennifer Moriatis Wolf,Ailong Huang,Tong-Chuan He,Zongyue Zeng

Abstract

As an important post-transcriptional regulatory machinery mediated by ∼21nt short-interfering double-stranded RNA (siRNA), RNA interference (RNAi) is a powerful tool to delineate gene functions and develop therapeutics. However, effective RNAi-mediated silencing requires multiple siRNAs for given genes, a time-consuming process to accomplish. Here, we developed a user-friendly system for single-vector-based multiplex siRNA expression by exploiting the unique feature of restriction endonuclease BstXI. Specifically, we engineered a BstXI-based shotgun cloning (BSG) system, which consists of three entry vectors with siRNA expression units (SiEUs) flanked with distinct BstXI sites, and a retroviral destination vector for shotgun SiEU assembly. For proof-of-principle studies, we constructed multiplex siRNA vectors silencing β-catenin and/or Smad4 and assessed their functionalities in mesenchymal stem cells (MSCs). Pooled siRNA cassettes were effectively inserted into respective entry vectors in one-step, and shotgun seamless assembly of pooled BstXI-digested SiEU fragments into a retroviral destination vector followed. We found these multiplex siRNAs effectively silenced β-catenin and/or Smad4, and inhibited Wnt3A- or BMP9-specific reporters and downstream target expression in MSCs. Furthermore, multiplex silencing of β-catenin and/or Smad4 diminished Wnt3A and/or BMP9-induced osteogenic differentiation. Collectively, the BSG system is a user-friendly technology for single-vector-based multiplex siRNA expression to study gene functions and develop experimental therapeutics.

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