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Engineering Artificial Factors to Specifically Manipulate Alternative Splicing in Human Cells

机译:工程人工因素以专门操纵人类细胞中的选择性剪接。

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摘要

The processing of most eukaryotic RNAs is mediated by RNA Binding Proteins (RBPs) with modular configurations, including an RNA recognition module, which specifically binds the pre-mRNA target and an effector domain. Previously, we have taken advantage of the unique RNA binding mode of the PUF domain in human Pumilio 1 to generate a programmable RNA binding scaffold, which was used to engineer various artificial RBPs to manipulate RNA metabolism. Here, a detailed protocol is described to construct Engineered Splicing Factors (ESFs) that are specifically designed to modulate the alternative splicing of target genes. The protocol includes how to design and construct a customized PUF scaffold for a specific RNA target, how to construct an ESF expression plasmid by fusing a designer PUF domain and an effector domain, and how to use ESFs to manipulate the splicing of target genes. In the representative results of this method, we have also described the common assays of ESF activities using splicing reporters, the application of ESF in cultured human cells, and the subsequent effect of splicing changes. By following the detailed protocols in this report, it is possible to design and generate ESFs for the regulation of different types of Alternative Splicing (AS), providing a new strategy to study splicing regulation and the function of different splicing isoforms. Moreover, by fusing different functional domains with a designed PUF domain, researchers can engineer artificial factors that target specific RNAs to manipulate various steps of RNA processing.
机译:大多数真核RNA的加工是由具有模块化配置的RNA结合蛋白(RBP)介导的,包括RNA识别模块,该模块可特异性结合前mRNA靶标和效应子结构域。以前,我们利用人Pumilio 1中PUF域的独特RNA结合模式来生成可编程的RNA结合支架,该支架被用于工程化各种人工RBP以操纵RNA代谢。在这里,描述了一个详细的协议来构建工程化剪接因子(ESF),该因子被专门设计为调节靶基因的选择性剪接。该协议包括如何设计和构建针对特定RNA靶标的定制PUF支架,如何通过融合设计者PUF域和效应子域来构建ESF表达质粒以及如何使用ESF操纵靶基因的剪接。在此方法的代表性结果中,我们还描述了使用剪接报告基因的ESF活性的常用测定方法,ESF在培养的人细胞中的应用以及剪接变化的后续作用。通过遵循本报告中的详细协议,可以设计和生成用于调节不同类型的选择性剪接(AS)的ESF,从而为研究剪接调控和不同剪接同工型的功能提供了新的策略。此外,通过将不同的功能域与设计的PUF域融合,研究人员可以设计针对特定RNA的人工因子来操纵RNA处理的各个步骤。

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