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High-throughput identification of synthetic riboswitches by barcode-free amplicon-sequencing in human cells

机译:通过人细胞中的条形码扩增子测序的合成核糖开关的高通量鉴定

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Synthetic riboswitches mediating ligand-dependent RNA cleavage or splicing-modulation represent elegant tools to control gene expression in various applications, including next-generation gene therapy. However, due to the limited understanding of context-dependent structure-function relationships, the identification of functional riboswitches requires large-scale-screening of aptamer-effector-domain designs, which is hampered by the lack of suitable cellular high-throughput methods. Here we describe a fast and broadly applicable method to functionally screen complex riboswitch libraries (~1.8?×?10sup4/sup constructs) by cDNA-amplicon-sequencing in transiently transfected and stimulated human cells. The self-barcoding nature of each construct enables quantification of differential mRNA levels without additional pre-selection or cDNA-manipulation steps. We apply this method to engineer tetracycline- and guanine-responsive ON- and OFF-switches based on hammerhead, hepatitis-delta-virus and Twister ribozymes as well as U1-snRNP polyadenylation-dependent RNA devices. In summary, our method enables fast and efficient high-throughput riboswitch identification, thereby overcoming a major hurdle in the development cascade for therapeutically applicable gene switches.
机译:介导配体依赖性RNA裂解或剪接调节的合成核心开关代表了控制各种应用中基因表达的优雅工具,包括下一代基因治疗。然而,由于对依赖上下文结构函数关系的理解有限,功能性核糖开关的鉴定需要大规模筛选适体 - 效应域设计,其被缺乏合适的细胞高通量方法受到阻碍。在这里,我们通过CDNA - 扩增子测序在瞬时转染和刺激的人体细胞中,通过CDNA - 扩增子测序来描述一种快速和广泛适用的方法,以通过CDNA - 扩增子测序来用CDNA - 扩增序列筛选(〜1.8?×10 4-sup>构建体。每个构建体的自律条形码性质使得能够定量差分mRNA水平,而无需额外的预选或cDNA操纵步骤。我们将这种方法应用于基于锤头,肝炎δ-病毒和旋转核酶以及U1-SNRNP多腺苷酸化依赖性RNA器件的Tetracycline和uliNe-encooctive的开关和偏离开关。总之,我们的方法实现了快速高效的高通量Riboswitch识别,从而克服了用于治疗性基因交换机的显影级联中的主要障碍。

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