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Single Cell Measurements of Vacuolar Rupture Caused by Intracellular Pathogens
Published on: June 12, 2013
Bacterial Pathogenesis: Assessment of Intracellular Positioning of Pathogen-Containing Vacuoles During Infection
Farah Nasser1,2, Mosopefoluwa T Oke1,2,3, Sara Knezevic1,2,3
1Department of Biochemistry, Microbiology and Immunology, University of Ottawa, Ottawa, Ontario, Canada.
Abstract:
Intracellular bacterial pathogens implement a diverse array of strategies to target host cells and establish infection. For vacuolar pathogens, the process of pathogen-containing vacuole movement within host cells, termed intracellular trafficking, is central to both pathogen survival and infection progression. Typically a process mediated by secreted virulence factors that manipulate the host cytoskeletal machinery, internalized pathogen-containing vacuoles traffic to the site of replication to establish a unique replicative niche, and if applicable, traffic back toward the host cell periphery for cell-to-cell spread. As such, the intracellular positioning of pathogen-containing vacuoles represents a fundamental measure of infection progression. Here, we describe a fluorescence microscopy-based method to quantitatively assess bacterial intracellular positioning, using Salmonella enterica serovar Typhimurium infection of epithelial cells as a model. This experimental approach can be modified to study infection in diverse host cell types, and with a broad array of pathogens. The system can also be adapted to examine the kinetics of infection, identify secreted virulence factors that mediate host trafficking, investigate host factors that are targeted by the pathogen for trafficking, and assess functional domains within a virulence factor responsible for mediating the phenotype. Collectively, these tools can provide fundamental insight into the pathogenesis of a diverse array of intracellular bacterial pathogens, and new host factors that are hijacked to mediate infection. © 2024 The Authors. Current Protocols published by Wiley Periodicals LLC. Basic Protocol 1: Culture and preparation of host cells Alternate Protocol: Culture and preparation of host cells to assess host factor contribution to bacterial positioning Basic Protocol 2: Infection of epithelial cells with S. Typhimurium Basic Protocol 3: Fluorescence staining for analysis of bacterial positioning Basic Protocol 4: Fluorescence microscopy analysis of bacterial positioning.
Insights
This study introduces a fluorescence microscopy method to track bacterial positioning within host cells, crucial for understanding pathogen survival and spread. This technique aids in studying intracellular bacterial infections and identifying virulence factors.
Area of Science:
- Microbiology
- Cell Biology
- Pathogenesis
Background:
- Intracellular bacterial pathogens utilize diverse strategies to infect host cells.
- Pathogen-vacuole trafficking within host cells is essential for survival, replication, and spread.
- Understanding bacterial intracellular positioning is key to deciphering infection dynamics.
Purpose of the Study:
- To develop and present a quantitative fluorescence microscopy method for assessing bacterial intracellular positioning.
- To utilize Salmonella enterica serovar Typhimurium in epithelial cells as a model system.
- To provide adaptable tools for studying various intracellular pathogens and host-pathogen interactions.
Main Methods:
- Development of a fluorescence microscopy-based protocol for quantitative analysis of bacterial positioning.
- Utilizing Salmonella enterica serovar Typhimurium infection model in epithelial cells.
- Adaptable protocols for host cell preparation, infection, staining, and microscopy analysis.
Main Results:
- A robust method for quantitatively assessing bacterial intracellular positioning was established.
- The method allows for detailed analysis of pathogen-vacuole trafficking dynamics.
- The approach is versatile and applicable to diverse host cell types and pathogens.
Conclusions:
- The developed fluorescence microscopy method provides fundamental insights into intracellular bacterial pathogenesis.
- This technique facilitates the identification of virulence factors mediating host trafficking.
- It enables the investigation of host factors hijacked by pathogens and functional domains of virulence factors.
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