cole1样质粒复制对重组基因表达的调控。

Manel Camps
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引用次数: 81

摘要

cole1样质粒是最常用的重组蛋白表达载体。ColE1质粒的复制受到反义RNA机制的严格控制,该机制是高度动态的,将质粒代谢负担调整到宿主的生理状态。在诱导重组蛋白表达时,由于非生理水平的表达和重组蛋白的氨基酸组成经常偏倚,质粒的稳态被打乱。质粒复制的失调是质粒表达系统崩溃的主要原因,因为代谢负担(由于平均拷贝数的增加)和产生无质粒细胞的可能性(由于拷贝数变化的增加)同时增加。共同驻留质粒的调控元件之间的干扰对质粒稳定性(质粒不相容)产生相当的影响。调节质粒拷贝数用于重组基因表达的目的是在保持表达系统稳定性的同时获得高基因剂量。在这里,我提出了针对质粒复制优化重组基因表达的策略。具体来说,我回顾了旨在调节反义调控系统的方法(以及它们对质粒不相容的影响)和涉及调节宿主因子、r环形成和重组基因表达时间的创新策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Modulation of ColE1-like plasmid replication for recombinant gene expression.

Modulation of ColE1-like plasmid replication for recombinant gene expression.

Modulation of ColE1-like plasmid replication for recombinant gene expression.

Modulation of ColE1-like plasmid replication for recombinant gene expression.

ColE1-like plasmids constitute the most popular vectors for recombinant protein expression. ColE1 plasmid replication is tightly controlled by an antisense RNA mechanism that is highly dynamic, tuning plasmid metabolic burden to the physiological state of the host. Plasmid homeostasis is upset upon induction of recombinant protein expression because of non-physiological levels of expression and because of the frequently biased amino acid composition of recombinant proteins. Disregulation of plasmid replication is the main cause of collapse of plasmid-based expression systems because of a simultaneous increase in the metabolic burden (due to increased average copy number) and in the probability of generation of plasmid-free cells (due to increased copy number variation). Interference between regulatory elements of co-resident plasmids causes comparable effects on plasmid stability (plasmid incompatibility). Modulating plasmid copy number for recombinant gene expression aims at achieving a high gene dosage while preserving the stability of the expression system. Here I present strategies targeting plasmid replication for optimizing recombinant gene expression. Specifically, I review approaches aimed at modulating the antisense regulatory system (as well as their implications for plasmid incompatibility) and innovative strategies involving modulation of host factors, of R-loop formation, and of the timing of recombinant gene expression.

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