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信使核糖核酸2.0:通过增强信使核糖核酸稳定性和翻译效率来促进基因表达

mRNA 2.0: Boosting Gene Expression Through Enhanced mRNA Stability and Translational Efficiency.

作者信息

Neves Dário, Vos Stefan, Blank Lars M, Ebert Birgitta E

机构信息

Institute of Applied Microbiology (iAMB), Aachen Biology and Biotechnology (ABBt), RWTH Aachen University, Aachen, Germany.

Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, Brisbane, QLD, Australia.

出版信息

Front Bioeng Biotechnol. 2020 Jan 24;7:458. doi: 10.3389/fbioe.2019.00458. eCollection 2019.

Abstract

High gene expression of enzymes partaking in recombinant production pathways is a desirable trait among cell factories belonging to all different kingdoms of life. High enzyme abundance is generally aimed for by utilizing strong promoters, which ramp up gene transcription and mRNA levels. Increased protein abundance can alternatively be achieved by optimizing the expression on the post-transcriptional level. Here, we evaluated protein synthesis with a previously proposed optimized gene expression architecture, in which mRNA stability and translation initiation are modulated by genetic parts such as self-cleaving ribozymes and a bicistronic design, which have initially been described to support the standardization of gene expression. The optimized gene expression architecture was tested in VLB120, a promising, novel microbial cell factory. The expression cassette was employed on a plasmid basis and after single genomic integration. We used three constitutive and two inducible promoters to drive the expression of two fluorescent reporter proteins and a short acetoin biosynthesis pathway. The performance was confronted with that of a traditional expression cassette harboring the same promoter and gene of interest but lacking the genetic parts for increased expression efficiency. The optimized expression cassette granted higher protein abundance independently of the expression basis or promoter used proving its value for applications requiring high protein abundance.

摘要

参与重组生产途径的酶的高基因表达是所有不同生命王国的细胞工厂所期望的特性。通常通过利用强大的启动子来提高酶的丰度,这些启动子可提高基因转录和mRNA水平。另外,通过在转录后水平上优化表达也可以提高蛋白质丰度。在此,我们用先前提出的优化基因表达结构评估了蛋白质合成,其中mRNA稳定性和翻译起始由诸如自我切割核酶和双顺反子设计等遗传元件调节,这些元件最初被描述为支持基因表达的标准化。在VLB120(一种有前景的新型微生物细胞工厂)中测试了优化的基因表达结构。表达盒以质粒为基础,并在单基因组整合后使用。我们使用了三个组成型启动子和两个诱导型启动子来驱动两种荧光报告蛋白和短乙酰乳酸生物合成途径的表达。将该性能与传统表达盒的性能进行了对比,传统表达盒具有相同的启动子和目的基因,但缺少用于提高表达效率的遗传元件。无论使用何种表达基础或启动子,优化的表达盒都能提供更高的蛋白质丰度,证明了其在需要高蛋白质丰度的应用中的价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bccc/6993053/107eacda4233/fbioe-07-00458-g0001.jpg

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