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In vivo Liver Endocytosis Followed by Purification of Liver Cells by Liver Perfusion
Published on: November 10, 2011
Intermedilysin is essential for the invasion of hepatoma HepG2 cells by Streptococcus intermedius
Akiko Sukeno1, Hideaki Nagamune, Robert A Whiley
1Department of Biological Science and Technology, Faculty of Engineering, The University of Tokushima, Japan.
Abstract:
Streptococcus intermedius causes endogenous infections leading to abscesses. This species produces intermedilysin (ILY), a human-specific cytolysin. Because of the significant correlation between higher ILY production levels by S. intermedius and deep-seated abscesses, we constructed ily knockout mutant UNS38 B3 and complementation strain UNS38 B3R1 in order to investigate the role of ILY in deep-seated infections. Strain UNS38 reduced the viability of human liver cell line HepG2 at infection but not of rat liver cell line BRL3A. Isogenic mutant strain UNS38 B3 was not cytotoxic in either cell line. Quantification of S. intermedius revealed that in infected HepG2 cells UNS38 but not UNS38 B3 increased intracellularly concomitantly with increasing cell damage. This difference between UNS38 and UNS38 B3 was not observed with UNS38 B3R1. Invasion and proliferation in BRL3A cells was not observed. Masking UNS38 or UNS38 B3R1 with ILY antibody drastically decreased adherence and invasion of HepG2. Moreover, coating strain UNS38 B3 with ILY partially restored adherence to HepG2 but without subsequent bacterial growth. At 1 day post-infection, many intact UNS38 were detected in the damaged phagosomes of HepG2 with bacterial proliferation observed in the cytoplasm of dead HepG2 after an additional 2 day incubation. These results indicate that surface-bound ILY on S. intermedius is an important factor for invasion of human cells by this bacterium and that secretion of ILY within host cells is essential for subsequent host cell death. These data strongly implicate ILY as an important factor in the pathogenesis of abscesses in vivo by this streptococcus.
Insights
Intermedilysin (ILY) produced by Streptococcus intermedius is key for invading human cells and causing abscesses. Blocking ILY significantly reduces bacterial invasion and host cell damage, highlighting its role in pathogenesis.
Area of Science:
- Microbiology
- Pathogenesis
- Bacterial Cytotoxins
Background:
- Streptococcus intermedius is a pathogen causing endogenous infections and abscesses.
- Intermedilysin (ILY) is a human-specific cytolysin produced by S. intermedius.
- Higher ILY production correlates with deep-seated abscesses.
Purpose of the Study:
- To investigate the role of intermedilysin (ILY) in the pathogenesis of deep-seated abscesses caused by Streptococcus intermedius.
- To construct and analyze an ily knockout mutant (UNS38 B3) and a complementation strain (UNS38 B3R1).
Main Methods:
- Construction of ily knockout and complementation strains of S. intermedius.
- In vitro infection assays using human (HepG2) and rat (BRL3A) liver cell lines.
- Assessment of bacterial adherence, invasion, intracellular replication, and cytotoxicity.
- Use of ILY antibodies to block or restore bacterial adherence and invasion.
Main Results:
- Wild-type S. intermedius (UNS38) reduced HepG2 cell viability and increased intracellularly, correlating with cell damage.
- The ily knockout mutant (UNS38 B3) showed no cytotoxicity and reduced intracellular increase.
- Blocking ILY with antibodies drastically decreased adherence and invasion of HepG2 cells.
- Coating the mutant with ILY partially restored adherence but not bacterial growth.
- ILY is crucial for S. intermedius invasion of human cells and subsequent host cell death.
Conclusions:
- Surface-bound ILY is essential for Streptococcus intermedius invasion of human cells.
- Secretion of ILY within host cells is critical for inducing host cell death.
- ILY is a significant virulence factor in the pathogenesis of S. intermedius-induced abscesses.
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