优化外显子跳转核糖开关及其在控制哺乳动物细胞命运中的应用

IF 3.7 2区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS ACS Synthetic Biology Pub Date : 2024-09-24 DOI:10.1021/acssynbio.4c0029510.1021/acssynbio.4c00295
Yoko Nomura, Narae Kim, Bochen Zhu, Muhammad Hamzah, Haifeng Zhang and Yohei Yokobayashi*, 
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引用次数: 0

摘要

哺乳动物核糖开关可通过 RNA-小分子相互作用调节转基因的表达,在医学和生物技术领域具有广阔的应用前景,因为它们不涉及可诱发免疫原反应的蛋白质因子,也不依赖于专门设计的启动子。然而,由于缺乏可用作核糖开关的细胞渗透性低毒小分子和同源适配体,以及哺乳动物核糖开关的开关性能一般,限制了它们的应用。在这项研究中,我们系统地优化了一种核糖开关的设计,这种核糖开关通过与 ASP2905 结合的 RNA 类似物来调节外显子的跳过。我们研究了两种设计策略,以调节阻断 5′剪接位点的适配体基干的稳定性,从而微调核糖开关的特性。此外,我们还利用优化后的核糖开关生成了小鼠胚胎干细胞系和人类胚胎肾细胞系,前者可通过激活 Myod1 的表达,化学诱导细胞分化为肌原细胞;后者可通过激活 BAX 的表达,诱导细胞凋亡。这些结果表明,哺乳动物细胞中的转基因可通过严格的化学调控来控制其表型,而无需外源蛋白因子。
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Optimization of Exon-Skipping Riboswitches and Their Applications to Control Mammalian Cell Fate

Mammalian riboswitches that can regulate transgene expression via RNA–small molecule interaction have promising applications in medicine and biotechnology, as they involve no protein factors that can induce immunogenic reactions and are not dependent on specially engineered promoters. However, the lack of cell-permeable and low-toxicity small molecules and cognate aptamers that can be exploited as riboswitches and the modest switching performance of mammalian riboswitches have limited their applications. In this study, we systematically optimized the design of a riboswitch that regulates exon skipping via an RNA aptamer that binds ASP2905. We examined two design strategies to modulate the stability of the aptamer base stem that blocks the 5′ splice site to fine-tune the riboswitch characteristics. Furthermore, an optimized riboswitch was used to generate a mouse embryonic stem cell line that can be chemically induced to differentiate into myogenic cells by activating Myod1 expression and a human embryonic kidney cell line that can be induced to trigger apoptosis by activating BAX expression. The results demonstrate the tight chemical regulation of transgenes in mammalian cells to control their phenotype without exogenous protein factors.

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来源期刊
CiteScore
8.00
自引率
10.60%
发文量
380
审稿时长
6-12 weeks
期刊介绍: The journal is particularly interested in studies on the design and synthesis of new genetic circuits and gene products; computational methods in the design of systems; and integrative applied approaches to understanding disease and metabolism. Topics may include, but are not limited to: Design and optimization of genetic systems Genetic circuit design and their principles for their organization into programs Computational methods to aid the design of genetic systems Experimental methods to quantify genetic parts, circuits, and metabolic fluxes Genetic parts libraries: their creation, analysis, and ontological representation Protein engineering including computational design Metabolic engineering and cellular manufacturing, including biomass conversion Natural product access, engineering, and production Creative and innovative applications of cellular programming Medical applications, tissue engineering, and the programming of therapeutic cells Minimal cell design and construction Genomics and genome replacement strategies Viral engineering Automated and robotic assembly platforms for synthetic biology DNA synthesis methodologies Metagenomics and synthetic metagenomic analysis Bioinformatics applied to gene discovery, chemoinformatics, and pathway construction Gene optimization Methods for genome-scale measurements of transcription and metabolomics Systems biology and methods to integrate multiple data sources in vitro and cell-free synthetic biology and molecular programming Nucleic acid engineering.
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