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Development and Characterization of a Subtilin-Regulated Expression System in Bacillus subtilis: Strict Control of Gene Expression by Addition of Subtilin

机译:枯草芽孢杆菌中枯草杆菌调节表达系统的开发和表征:通过添加枯草杆菌蛋白酶严格控制基因表达

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摘要

A system for subtilin-regulated gene expression (SURE) in Bacillus subtilis that is based on the regulatory module involved in cell-density-dependent control of the production of subtilin is described. An integration vector for introduction of the essential sensor-regulator couple spaRK into the amyE locus of the B. subtilis chromosome and a B. subtilis 168-derived production host in which the spaRK genes were functionally introduced were constructed. Furthermore, several expression plasmids harboring the subtilin-inducible wild-type spaS promoter or a mutated derivative of this promoter were constructed, which facilitated both transcriptional and translational promoter-gene fusions. Functional characterization of both spaS promoters and the cognate expression host could be performed by controlled overproduction of the β-glucuronidase (GusA) and green fluorescent protein (GFP) reporters. Both spaS promoters exhibited very low levels of basal expression, while extremely high levels of expression were observed upon induction with subtilin. Moreover, the level of expression depended directly on the amount of inducer (subtilin) used. The wild-type spaS promoter appeared to be more strictly controlled by the addition of subtilin, while the highest levels of expression were obtained when the mutated spaS promoter was used. Induction by subtilin led to 110- and 80-fold increases in GusA activity for the spaS promoter and its mutant derivative, respectively. Since the SURE system has attractive functional characteristics, including promoter silence under noninducing conditions and a controlled and high level of expression upon induction, and since it is not subject to catabolite control, we anticipate that it can provide a suitable expression system for various scientific and industrial applications.
机译:描述了一种用于枯草芽孢杆菌中枯草蛋白酶调节基因表达(SURE)的系统,该系统基于参与枯草杆菌素生产的细胞密度依赖性控制的调节模块。构建用于将必需的传感器-调节子对spaRK引入枯草芽孢杆菌染色体的amyE基因座中的整合载体,以及功能上引入了spaRK基因的枯草芽孢杆菌168衍生的生产宿主。此外,构建了具有枯草杆菌蛋白酶诱导的野生型spaS启动子或该启动子的突变衍生物的几种表达质粒,其促进了转录和翻译启动子-基因融合。 spaS启动子和同源表达宿主的功能表征可以通过控制过量生产的β-葡萄糖醛酸苷酶(GusA)和绿色荧光蛋白(GFP)报告基因来进行。两个spaS启动子均显示出极低水平的基础表达,而在用枯草杆菌蛋白酶诱导后观察到极高水平的表达。而且,表达水平直接取决于所使用的诱导物(枯草杆菌蛋白酶)的量。野生型spaS启动子似乎通过添加枯草杆菌蛋白酶得到更严格的控制,而当使用突变的spaS启动子时,表达水平最高。枯草杆菌蛋白酶的诱导分别导致针对spaS启动子及其突变体衍生物的GusA活性增加了110倍和80倍。由于SURE系统具有诱人的功能特性,包括非诱导条件下的启动子沉默以及诱导时可控的高水平表达,并且由于它不受分解代谢物的控制,因此我们希望它可以为各种科学和技术提供合适的表达系统。工业应用。

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