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首页> 外文期刊>Applied and Environmental Microbiology >Adaptation of the Nisin-Controlled Expression System in Lactobacillus plantarum: a Tool To Study In Vivo Biological Effects
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Adaptation of the Nisin-Controlled Expression System in Lactobacillus plantarum: a Tool To Study In Vivo Biological Effects

机译:乳链菌中乳链菌肽控制的表达系统的适应:研究体内生物学效应的工具。

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The potential of lactic acid bacteria as live vehicles for the production and delivery of therapeutic molecules is being actively investigated today. For future applications it is essential to be able to establish dose-response curves for the targeted biological effect and thus to control the production of a heterologous biopeptide by a live lactobacillus. We therefore implemented in Lactobacillus plantarum NCIMB8826 the powerful nisin-controlled expression (NICE) system based on the autoregulatory properties of the bacteriocin nisin, which is produced by Lactococcus lactis. The original two-plasmid NICE system turned out to be poorly suited toL. plantarum. In order to obtain a stable and reproducible nisin dose-dependent synthesis of a reporter protein (β-glucuronidase) or a model antigen (the C subunit of the tetanus toxin, TTFC), the lactococcal nisRK regulatory genes were integrated into the chromosome of L. plantarum NCIMB8826. Moreover, recombinant L. plantarum producing increasing amounts of TTFC was used to establish a dose-response curve after subcutaneous administration to mice. The induced serum immunoglobulin G response was correlated with the dose of antigen delivered by the live lactobacilli.
机译:如今,正在积极研究乳酸菌作为生产和输送治疗性分子的活载体的潜力。对于将来的应用,至关重要的是能够建立针对目标生物学效应的剂量反应曲线,从而控制活乳杆菌生产异源生物肽的能力。因此,我们在乳酸乳球菌产生的细菌素乳酸链球菌素的自动调节特性的基础上,在植物乳杆菌NCIMB8826中实现了功能强大的乳酸链球菌素控制表达(NICE)系统。原来的两质粒NICE系统证明不适用于L。车前草。为了获得稳定和可重现的乳链菌肽剂量依赖性合成报告蛋白(β-葡萄糖醛酸苷酶)或模型抗原(破伤风毒素的C亚基,TTFC),将乳球菌nisRK调控基因整合到L染色体中植物园NCIMB8826。此外,在向小鼠皮下给药后,使用产生增加量的TTFC的重组植物乳杆菌来建立剂量-反应曲线。诱导的血清免疫球蛋白G应答与活乳杆菌传递的抗原剂量相关。

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