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Optimized expression and purification of biophysical quantities of the Lac repressor and Lac repressor regulatory domain

机译:Lac阻遏物和Lac阻遏物调节域的生物物理量的优化表达和纯化

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摘要

The recombinant production of Lac repressor (LacI) in E. coli is complicated by its ubiquitous use as a regulatory element in commercially-available expression vectors and host strains. While LacI-regulated expression systems are often used to produce recombinant LacI, the product can be heterogeneous and unsuitable for some studies. Alternative approaches include using unregulated vectors which typically suffer from low yield or vectors with promoters induced by metabolically active sugars which can dilute isotope labels necessary for certain biophysical studies. Here, an optimized expression system and isolation protocol for producing various constructs of LacI is introduced which eliminates these complications. The expression vector is an adaptation of the pASK backbone wherein expression of the lacI gene is regulated by an anhydrotetracyline inducible tetA promoter and the host strain lacks the lacI gene. Typical yields in highly deuterated minimal medium are nearly 2-fold greater than those previously reported. Notably, the new expression system is also able to produce the isolated regulatory domain of LacI without co-expression of the full-length protein and without any defects in cell viability, eliminating the inconvenient requirement for strict monitoring of cell densities during pre-culturing. Typical yields in highly deuterated minimal medium are significantly greater than those previously reported. Characterization by solution NMR shows that LacI constructs produced using this expression system are highly homogenous and functionally active.
机译:大肠杆菌中Lac阻遏物(LacI)的重组生产因其在商业上可用的表达载体和宿主菌株中普遍用作调节元件而变得复杂。尽管通常使用LacI调控的表达系统来生产重组LacI,但该产品可能是异质的,不适合某些研究。替代方法包括使用通常产量低的不受调控的载体或具有由代谢活性糖诱导的启动子的载体,所述代谢活性糖可以稀释某些生物物理研究所必需的同位素标记。在这里,介绍了一种用于生产各种LacI构建体的优化表达系统和分离方案,可消除这些并发症。表达载体是对pASK骨架的适应,其中lacI基因的表达受脱水四氢筒诱导的tetA启动子调节,并且宿主菌株缺乏lacI基因。在高度氘化的基本培养基中的典型产量比以前报道的产量高近2倍。值得注意的是,新的表达系统还能够产生分离的LacI调节结构域,而无需全长蛋白的共表达,并且在细胞生存力上没有任何缺陷,从而消除了在预培养过程中严格监控细胞密度的不便之处。在高度氘化的基本培养基中的典型产量显着高于先前报道的产量。通过溶液NMR表征表明,使用该表达系统产生的LacI构建体是高度均一的并且具有功能活性。

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