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A NanoLuc luciferase-based assay enabling the real-time analysis of protein secretion and injection by bacterial type III secretion systems
- Source :
- Molecular microbiology, England
- Publication Year :
- 2019
- Publisher :
- Cold Spring Harbor Laboratory, 2019.
-
Abstract
- The elucidation of the molecular mechanisms of secretion through bacterial protein secretion systems is impeded by a lack 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 secretion and injection through the type III secretion system encoded bySalmonellapathogenicity island 1. The NanoLuc-based secretion assay features a very high signal-to-noise ratio and sensitivity down to the nanoliter scale. The assay enables monitoring of secretion kinetics and is adaptable to a high throughput screening format in 384-well microplates. We further developed NanoLuc and split-NanoLuc-based assays that enable the monitoring of type III secretion-dependent injection of effector proteins into host cells.ImportanceThe ability to secrete proteins to the bacterial cell surface, to the extracellular environment, or even into target cells is one of the foundations of interbacterial as well as pathogen-host interaction. While great progress has been made in elucidating assembly and structure of secretion systems, our understanding of their secretion mechanism often lags behind, not last because of the challenge to quantitatively assess secretion function. Here, we developed a luciferase-based assay to enable the simple, quick, quantitative, and high throughput-compatible assessment of secretion and injection through virulence-associated type III secretion systems. The assay allows detection of minute amounts of secreted substrate proteins either in the supernatant of the bacterial culture or within eukaryotic host cells. It thus provides an enabling technology to elucidate the mechanisms of secretion and injection of type III secretion systems and is likely adaptable to assay secretion through other bacterial secretion systems.
- Subjects :
- effector proteins
Microbiology
Type three secretion system
03 medical and health sciences
protein injection
Bacterial Proteins
Secretion assay
Salmonella
protein secretion
Extracellular
Type III Secretion Systems
Luciferase
Secretion
Luciferases
Molecular Biology
030304 developmental biology
0303 health sciences
biology
Chemistry
Effector
030306 microbiology
biology.organism_classification
Pathogenicity island
High-Throughput Screening Assays
Cell biology
Protein Transport
Type III secretion system
Secretory protein
Luminescent Measurements
Bacteria
Function (biology)
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Molecular microbiology, England
- Accession number :
- edsair.doi.dedup.....198a26fdaa8da76e9ede92defd405087
- Full Text :
- https://doi.org/10.1101/745471