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利用鼠类感染作为模型系统,采用四环素阻遏蛋白调控的抑制技术在可基因工程改造的细菌中鉴定条件性基因沉默。

TetR Regulated Repression Technology to Identify Conditional Gene Silencing in Genetically Engineerable Bacteria Using Murine Infections as Model System.

作者信息

Zingl Franz G, Mitterer Fabian, Thapa Himadri B, Schild Stefan

机构信息

Institute of Molecular Biosciences, University of Graz, 8010 Graz, Austria.

BioTechMed Graz, 8010 Graz, Austria.

出版信息

Bio Protoc. 2020 Oct 5;10(19):e3774. doi: 10.21769/BioProtoc.3774.

Abstract

Investigation of bacterial gene regulation upon environmental changes is still a challenging task. For example, , a pathogen of the human gastrointestinal tract, faces diverse transient conditions in different compartments upon oral ingestion. Genetic reporter systems have been demonstrated to be extremely powerful tools to unravel gene regulation events in complex conditions, but so far focused mainly on gene induction. Herein, we describe the TetR-controlled recombination-based expression technology TRIVET, which allows detection of gene silencing events. TRIVET resembles a modified variant of the expression technology (IVET) as well as recombination-based expression technology (RIVET), which were used to identify conditional gene induction in several bacteria during host colonization. Like its predecessors, TRIVET is a single cell based reporter system, which allows the analysis of bacterial gene repression in a spatiotemporal manner via phenotypical changes in the resistance profile. Briefly, a promoterless (encoding the transcriptional repressor TetR) can be integrated randomly into the bacterial genome via transposon mutagenesis or site-specific downstream of a promoter of interest via homologous recombination. Reduction of transcriptional expression of TetR results in a de-repression of the TetR-controlled resolvase TnpR, which in turn leads to excision of an antibiotic resistance cassette (also known as res-cassette) and altered resistance profile observable via streaking on ampicillin and kanamycin plates. This alteration can then be quantified as the ratio between resistant and non-resistant isolates. Furthermore, the newly introduced second reporter gene, a promoterless (encoding the alkaline phosphatase PhoA) offers an additional validation step of the results via an independent colorimetric assay to measure enzyme activity. The protocol presented herein also offers an approach to identify the gene locus in case of the random screen for gene repression as well as a quantification of the conditional repression of a gene of interest. Although the current protocol is established for gene repression during host colonization, it can likely be adapted to study gene silencing under various conditions faced by a bacterium.

摘要

研究细菌在环境变化时的基因调控仍然是一项具有挑战性的任务。例如,作为人类胃肠道病原体,在经口摄入后会在不同腔室面临多种短暂条件。遗传报告系统已被证明是揭示复杂条件下基因调控事件的极其强大的工具,但迄今为止主要集中在基因诱导方面。在此,我们描述了基于TetR控制的重组表达技术TRIVET,它能够检测基因沉默事件。TRIVET类似于表达技术(IVET)以及基于重组的表达技术(RIVET)的一种改良变体,IVET和RIVET曾被用于在宿主定殖期间鉴定几种细菌中的条件性基因诱导。与它的前身一样,TRIVET是一个基于单细胞的报告系统,它允许通过抗性谱的表型变化以时空方式分析细菌基因抑制。简而言之,一个无启动子的(编码转录阻遏物TetR)可以通过转座子诱变随机整合到细菌基因组中,或者通过同源重组在感兴趣的启动子的位点特异性下游整合。TetR转录表达的降低导致TetR控制的解离酶TnpR的去抑制,这进而导致抗生素抗性盒(也称为res盒)的切除以及通过在氨苄青霉素和卡那霉素平板上划线可观察到的抗性谱改变。然后可以将这种改变量化为抗性和非抗性分离株之间的比率。此外,新引入的第二个报告基因,一个无启动子的(编码碱性磷酸酶PhoA)通过独立的比色测定法测量酶活性,为结果提供了额外的验证步骤。本文介绍的方案还提供了一种在随机筛选基因抑制的情况下鉴定基因座以及定量感兴趣基因的条件性抑制的方法。尽管当前方案是针对宿主定殖期间的基因抑制建立的,但它可能适用于研究细菌在各种条件下面临的基因沉默。

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