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Modulating Heterologous Gene Expression with Portable mRNA-Stabilizing 5 '-UTR Sequences

机译:用便携式mRNA稳定5'-utr序列调节异源基因表达

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RNA half-lives are frequently perceived as depending on too many variables, and transcript stability is generally missed as a checkpoint amenable to manipulation in synthetic designs. In this work, the contribution of mRNA stability to heterologous protein production levels in E. coli has been inspected. To this end, we capitalized on the wealth of information available on intrinsic mRNA stability determinants, four of which were formatted as portable modules consisting of 5'-untranslated regions (UTRs). The cognate DNA sequences were then assembled in a genetic frame in which mRNA stability endowed by the UTRs was the only variable to run expression of sfGFP. Reporter output and Northern blot-based measurements of absolute mRNA half-lives revealed that such UTRs were found to keep intact their ability to modulate transcript stability when excised from their natural context and placed as the upstream region of the reporter gene. By keeping transcription fixed and combining different UTRs with a constant ribosomal binding site, we showed that mRNA decay can be made the limiting constituent of the overall gene expression flow. Moreover, the data indicated that manipulating mRNA stability had little effect on expression noise in the corresponding population. Finally, augmented heterologous expression brought about by mRNA stability did not make cells more vulnerable to resource-consuming stresses. The tangible result of this work was a collection of well-characterized mRNA-stabilizing sequences that can be composed along with other expression signals in any construct following the assembly rules of the Standard European Vector Architecture (SEVA) format.
机译:RNA半衰期经常被认为,根据太多变量,并且通常错过转录稳定性作为综合设计中的操纵检查点。在这项工作中,已经检查了MRNA稳定性在大肠杆菌中对异源蛋白质产生水平的贡献。为此,我们利用了内在mRNA稳定性决定因素的大量信息,其中4种被格式化为由5'-Wonsralsated地区(UTRS)组成的便携式模块。然后组装在遗传框中,其中由UTR赋予的mRNA稳定性是唯一用于运行SFGFP的表达的变量。记者输出和绝对mRNA半衰期的北方印迹测量显示,发现这种UTRS被发现在从其自然背景下切除并作为报告基因的上游区域时,保持其调节转录物稳定性的能力。通过将转录固定并将不同的UTR与恒定的核糖体结合位点保持,我们表明MRNA衰减可以使整个基因表达流动的限制成分。此外,数据表明,操纵mRNA稳定性对相应群体中的表达噪声几乎没有影响。最后,通过mRNA稳定引起的增强异源表达不会使细胞更容易受到资源消耗的应力。这项工作的有形结果是具有良好表征的mRNA稳定序列的集合,其可以在标准欧洲矢量架构(SEVA)格式的装配规则之后的任何构造中与其他表达信号一起组成。

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