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设计和优化短 DNA 序列,可作为 5' 融合伙伴,用于大肠杆菌中外源基因的高水平表达。

Design and optimization of short DNA sequences that can be used as 5' fusion partners for high-level expression of heterologous genes in Escherichia coli.

机构信息

Department of Biotechnology.

出版信息

Appl Environ Microbiol. 2013 Nov;79(21):6655-64. doi: 10.1128/AEM.01676-13. Epub 2013 Aug 23.

Abstract

The 5' terminal nucleotide sequence of a gene is often a bottleneck in recombinant protein production. The ifn-α2bS gene is poorly expressed in Escherichia coli unless a translocation signal sequence (pelB) is fused to the 5' end of the gene. A combined in silico and in vivo analysis reported here further indicates that the ifn-α2bS 5' coding sequence is suboptimal for efficient gene expression. ifn-α2bS therefore presents a suitable model gene for describing properties of 5' fusions promoting expression. We show that short DNA sequences corresponding to the 5' end of the highly expressed celB gene, whose protein product is cytosolic, can functionally replace pelB as a 5' fusion partner for efficient ifn-α2bS expression. celB fusions of various lengths (corresponding to a minimum of 8 codons) led to more than 7- and 60-fold stimulation of expression at the transcript and protein levels, respectively. Moreover, the presence of a celB-based fusion partner was found to moderately reduce the decay rate of the corresponding transcript. The 5' fusions thus appear to act by enhancing translation, and bound ribosomes may accordingly contribute to increased mRNA stability and reduced mRNA decay. However, other effects, such as altered protein stability, cannot be excluded. We also developed an experimental protocol that enabled us to identify improved variants of the celB fusion, and one of these (celBD11) could be used to additionally increase ifn-α2bS expression more than 4-fold at the protein level. Interestingly, celBD11 also stimulated greater protein production of three other medically important human genes than the wild-type celB fragment.

摘要

基因 5'端核苷酸序列通常是重组蛋白生产的瓶颈。除非干扰素-α2bS 基因的 5'端融合一个易位信号序列(pelB),否则该基因在大肠杆菌中表达水平很低。本文报道的一项计算机模拟和体内分析的综合研究进一步表明,干扰素-α2bS 的 5'编码序列不利于高效基因表达。因此,干扰素-α2bS 是一个适合的模型基因,可以用来描述促进表达的 5'融合序列的特性。我们证明,与细胞质蛋白产物 celB 基因 5'端对应的短 DNA 序列可以作为 pelB 的功能性替代物,有效地融合到干扰素-α2bS 基因的 5'端,促进其高效表达。不同长度的 celB 融合物(对应于至少 8 个密码子)分别在转录物和蛋白质水平上分别导致表达水平提高 7 倍和 60 倍以上。此外,发现存在 celB 融合伴侣可适度降低相应转录物的衰减率。因此,这些 5'融合似乎通过增强翻译起作用,并且结合的核糖体可能相应地有助于增加 mRNA 稳定性和减少 mRNA 衰减。然而,不能排除其他影响,例如改变蛋白质稳定性。我们还开发了一种实验方案,使我们能够鉴定出 celB 融合的改进变体,其中一种变体(celBD11)可在蛋白质水平上使干扰素-α2bS 的表达额外增加 4 倍以上。有趣的是,celBD11 还比野生型 celB 片段刺激三种其他医学上重要的人类基因的蛋白质产生增加更多。

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