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Updated: Jul 15, 2026

High-throughput Assay to Phenotype Salmonella enterica Typhimurium Association, Invasion, and Replication in Macrophages
Published on: August 11, 2014
Structural investigation on SPI-6-associated Salmonella typhimurium VirG-like stress protein that promotes pathogen
Shilpa Ray1, Nishant Kumar Pandey1,2, Gajraj Singh Kushwaha2,3
1School of Biotechnology, Kalinga Institute of Industrial Technology (KIIT), Deemed to be University, Bhubaneswar, India.
Abstract:
Enteric microbial pathogenesis, remarkably a complex process, is achieved by virulence factors encoded by genes located within regions of the bacterial genome termed pathogenicity islands. Salmonella pathogenicity islands (SPI) encodes proteins, that are essential virulence determinants for pathogen colonization and virulence. In addition to the well-characterized SPI-1 and SPI-2 proteins, which are required for bacterial invasion and intracellular replication, respectively, SPI-6 (formerly known as Salmonella enterica centisome 7 island [SCI]) encoding proteins are also known to play pivotal role in Salmonella pathogenesis. However, the underlying molecular mechanism of these proteins remained elusive. To gain molecular insights into SPI-6-associated proteins, in this study, a SPI-6 Salmonella typhimurium VirG-like protein (STV) is characterized using interdisciplinary experimental approaches including X-ray crystallography, nuclear magnetic resonance (NMR) spectroscopy and infection assays. The high-resolution crystal structure, determined by the single-wavelength anomalous dispersion (SAD) method, reveals that STV belongs to the LTxxQ motif family. Solution-state NMR spectroscopy studies reveal that STV form a dimer involving interconnected helices. Interestingly, functional studies show that STV influence pathogen persistence inside macrophages in vitro at later stages of infection. Altogether, our findings suggest that STV, a member of the LTxxQ stress protein family, modulates bacterial survival mechanism in macrophages through SPI-1 and SPI-2 genes, respectively.
Insights
Salmonella pathogenicity islands (SPI) are crucial for bacterial virulence. This study characterizes a SPI-6 protein (STV), revealing its role in Salmonella persistence within macrophages.
Area of Science:
- Microbiology
- Molecular Biology
- Structural Biology
Background:
- Bacterial pathogenesis relies on virulence factors encoded by pathogenicity islands.
- Salmonella pathogenicity islands (SPI) are key genetic elements for bacterial colonization and virulence.
- SPI-6 proteins play a role in Salmonella pathogenesis, but their molecular mechanisms are not fully understood.
Purpose of the Study:
- To elucidate the molecular mechanism of SPI-6-associated proteins in Salmonella pathogenesis.
- To characterize a VirG-like protein from SPI-6 (STV) in Salmonella typhimurium.
- To gain insights into the structural and functional roles of STV.
Main Methods:
- X-ray crystallography for high-resolution structure determination.
- Nuclear Magnetic Resonance (NMR) spectroscopy for solution-state structural analysis.
- Infection assays to evaluate functional roles during host-pathogen interaction.
Main Results:
- The crystal structure revealed STV belongs to the LTxxQ motif family.
- NMR studies indicated that STV forms a dimer through interconnected helices.
- Functional assays demonstrated STV influences Salmonella persistence in macrophages during later infection stages.
Conclusions:
- STV, an LTxxQ stress protein family member, is structurally characterized.
- STV modulates bacterial survival mechanisms within macrophages.
- STV's activity is linked to SPI-1 and SPI-2 genes, suggesting a regulatory role in Salmonella pathogenesis.
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