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Isolation of Salmonella typhimurium-containing Phagosomes from Macrophages
Published on: October 25, 2017
Antiprotease inactivation by Salmonella enterica released from infected macrophages
Kaarina Lähteenmäki1, Päivi Kyllönen, Lotta Partanen
1General Microbiology, Faculty of Biosciences, University of Helsinki, Helsinki, Finland. Kaarina.Lahteenmaki@helsinku.fi
Abstract:
The mammalian serine protease plasmin, which has an important role in extracellular matrix degradation during cell migration, is regulated by the plasma antiprotease alpha(2)-antiplasmin (alpha(2)AP). The surface protease PgtE of Salmonella enterica serovar Typhimurium proteolytically inactivated alpha(2)AP. PgtE also activates the plasma zymogen plasminogen to plasmin, and bacteria expressing PgtE promoted degradation of extracellular matrix laminin in the presence of plasminogen and alpha(2)AP. alpha(2)AP inactivation was detected with the rough derivative of S. enterica 14028, but not with the smooth wild-type strain, suggesting that the O-antigen of lipopolysaccharide prevented contact of PgtE with the substrate molecule. After growth of S. enterica 14028 in murine J774A.1 macrophage-like cells, the infected cell lysate as well as bacteria from isolated Salmonella-containing vacuoles (SCVs) cleaved alpha(2)AP. Bacteria from SCVs produced an elevated level of PgtE and had a reduced O-antigen chain length. The lysate from S. enterica 14028-infected macrophages promoted formation of plasmin in the presence of alpha(2)AP, whereas plasmin formation by lysates from uninfected macrophages, or from macrophages infected with the pgtE-negative derivative of 14028, was inhibited by alpha(2)AP. Salmonella disseminates in the host within macrophages, which utilize plasmin for migration through tissue barriers. The results suggest that intracellular enhancement of PgtE activity in Salmonella may promote macrophage-associated proteolysis and cellular migration by altering the balance between host plasmin and alpha(2)AP.
Insights
Salmonella Typhimurium
Area of Science:
- Microbiology
- Biochemistry
- Cell Biology
Background:
- Plasmin facilitates extracellular matrix degradation and cell migration.
- Alpha(2)-antiplasmin (alpha(2)AP) regulates plasmin activity.
- Salmonella Typhimurium utilizes host macrophages for dissemination.
Purpose of the Study:
- To investigate the role of Salmonella Typhimurium surface protease PgtE in modulating host plasmin-alpha(2)AP balance.
- To understand how PgtE affects bacterial dissemination within macrophages.
Main Methods:
- Investigated PgtE's activity on alpha(2)AP and plasminogen.
- Assessed extracellular matrix degradation by PgtE-expressing bacteria.
- Analyzed PgtE expression and O-antigen length in intracellular Salmonella.
- Examined plasmin formation in infected macrophage lysates.
Main Results:
- PgtE inactivated alpha(2)AP and activated plasminogen, promoting laminin degradation.
- Rough Salmonella strains showed PgtE activity, unlike smooth strains due to O-antigen interference.
- Intracellular Salmonella within macrophages exhibited enhanced PgtE activity and reduced O-antigen length.
- Infected macrophages promoted plasmin formation, while controls showed alpha(2)AP inhibition.
Conclusions:
- Salmonella PgtE can disrupt host plasmin regulation by inactivating alpha(2)AP.
- Intracellular Salmonella enhances PgtE activity, potentially aiding macrophage migration via proteolysis.
- PgtE contributes to Salmonella pathogenesis by manipulating host cell functions.

