Interfaculty Institute of Microbiology and Infection Medicine (IMIT), University of Tübingen, Tübingen, Germany.
Partner-site Tübingen, German Center for Infection Research (DZIF), Tübingen, Germany.
Mol Microbiol. 2020 Jun;113(6):1240-1254. doi: 10.1111/mmi.14490. Epub 2020 Mar 4.
The elucidation of the molecular mechanisms of secretion through bacterial protein secretion systems is impeded by a shortage of assays to quantitatively assess secretion kinetics. Also the analysis of the biological role of these secretion systems as well as the identification of inhibitors targeting these systems would greatly benefit from the availability of a simple, quick and quantitative assay to monitor principle secretion and injection into host cells. Here, we present a versatile solution to this need, utilizing the small and very bright NanoLuc luciferase to assess the function of the type III secretion system encoded by Salmonella pathogenicity island 1. Type III secretion substrate-NanoLuc fusions are readily secreted into the culture supernatant, where they can be quantified by luminometry after removal of bacteria. The NanoLuc-based secretion assay features a very high signal-to-noise ratio and sensitivity down to the nanolitre scale. The assay enables monitoring of secretion kinetics and is adaptable to a high throughput screening format in 384-well microplates. We further developed a split NanoLuc-based assay that enables the real-time monitoring of type III secretion-dependent injection of effector-HiBiT fusions into host cells stably expressing the complementing NanoLuc-LgBiT.
通过细菌蛋白分泌系统阐明分泌的分子机制受到缺乏定量评估分泌动力学的测定方法的阻碍。此外,这些分泌系统的生物学作用的分析以及针对这些系统的抑制剂的鉴定将极大地受益于一种简单、快速和定量的测定方法,以监测主要的分泌和注入宿主细胞。在这里,我们提出了一种通用的解决方案,利用小巧而非常明亮的 NanoLuc 荧光素酶来评估沙门氏菌致病性岛 1 编码的 III 型分泌系统的功能。III 型分泌底物-NanoLuc 融合物很容易分泌到培养上清液中,在去除细菌后可以通过发光计进行定量。基于 NanoLuc 的分泌测定具有非常高的信噪比和灵敏度,可达纳升级。该测定法可用于监测分泌动力学,并可适应 384 孔微孔板中的高通量筛选格式。我们进一步开发了一种基于分割 NanoLuc 的测定法,该测定法可实时监测依赖 III 型分泌的效应物-HiBiT 融合物注入稳定表达互补 NanoLuc-LgBiT 的宿主细胞。