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Single plasmid systems for inducible dual protein expression and for CRISPR-Cas9/CRISPRi gene regulation in lactic acid bacterium Lactococcus lactis

机译:用于诱导型双蛋白表达的单粒质粒系统和用于乳酸菌乳酸乳酸乳酸乳酸乳酸乳酸乳酸乳酸的CRAP-CAS9 / CRISPRI基因调控

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Lactococcus lactis is a food-grade lactic acid bacterium that is used in the dairy industry as a cell factory and as a host for recombinant protein expression. The nisin-controlled inducible expression (NICE) system is frequently applied in L. lactis; however new tools for its genetic modification are highly desirable. In this work NICE was adapted for dual protein expression. Plasmid pNZDual, that contains two nisin promoters and multiple cloning sites (MCSs), and pNZPolycist, that contains a single nisin promoter and two MCSs separated by the ribosome binding site, were constructed. Genes for the infrared fluorescent protein and for the human IgG-binding DARPin were cloned in all possible combinations to assess the protein yield. The dual promoter plasmid pNZDual enabled balanced expression of the two model proteins. It was exploited for the development of a single-plasmid inducible CRISPR-Cas9 system (pNZCRISPR) by using a nisin promoter, first to drive Cas9 expression and, secondly, to drive single guide RNA transcription. sgRNAs against htrA and ermR directed Cas9 against genomic or plasmid DNA and caused changes in bacterial growth and survival. Replacing Cas9 by dCas9 enabled CRISPR interference-mediated silencing of the upp gene. The present study introduces a new series of plasmids for advanced genetic modification of lactic acid bacterium L. lactis.
机译:乳酸乳酸乳酸乳酸乳酸菌是一种食品级乳酸菌,用于乳制品作为细胞工厂,作为重组蛋白表达的宿主。 NISIN控制的诱导型表达(漂亮)系统经常在L.乳酸中施用;然而,对其遗传修改的新工具非常可取。在这项工作中,很好适用于双蛋白表达。构建含有两个Nisin启动子和多个克隆位点(MCS)的质粒pnzdual,其含有单个NISIN启动子和由核糖体结合位点分离的两个MCS的PNZPolycist。在所有可能的组合中克隆了红外荧光蛋白和用于人IgG结合Darpin的基因以评估蛋白质产率。双启动子质粒pnzdual能够平衡两种模型蛋白的表达。通过使用Nisin启动子首先驱动Cas9表达和第二,以驱动单个引导RNA转录来开发单质粒诱导CRAP-CAS9系统(PNZCRISPR)的开发。 SGRNA对抗HTRA和ERMR针对基因组或质粒DNA的CAS9,并导致细菌生长和存活的变化。通过DCAS9替换CAS9使能CRISPR干扰介导的UPP基因的沉默。本研究介绍了一种新的一系列质粒,用于乳酸菌L.乳酸的先进遗传修饰。

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