z-logo
Premium
Yersinia pestis escapes entrapment in thrombi by targeting platelet function
Author(s) -
Palace Samantha G.,
Vitseva Olga,
Proulx Megan K.,
Freedman Jane E.,
Goguen Jon D.,
Koupenova Milka
Publication year - 2020
Publication title -
journal of thrombosis and haemostasis
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.947
H-Index - 178
eISSN - 1538-7836
pISSN - 1538-7933
DOI - 10.1111/jth.15065
Subject(s) - yersinia pestis , entrapment , yersinia , platelet , microbiology and biotechnology , medicine , chemistry , biology , immunology , bacteria , virulence , surgery , biochemistry , genetics , gene
Background Platelets are classically recognized for their role in hemostasis and thrombosis. Recent work has demonstrated that platelets can also execute a variety of immune functions. The dual prothrombotic and immunological roles of platelets suggest that they may pose a barrier to the replication or dissemination of extracellular bacteria. However, some bloodborne pathogens, such as the plague bacterium Yersinia pestis , routinely achieve high vascular titers that are necessary for pathogen transmission. Objectives It is not currently known how or if pathogens circumvent platelet barriers to bacterial dissemination and replication. We sought to determine whether extracellular bloodborne bacterial pathogens actively interfere with platelet function, using Y  pestis as a model system. Methods The interactions and morphological changes of human platelets with various genetically modified Y pestis strains were examined using aggregation assays, immunofluorescence, and scanning electron microscopy. Results Yersinia pestis directly destabilized platelet thrombi, preventing bacterial entrapment in fibrin/platelet clots. This activity was dependent on two well‐characterized bacterial virulence factors: the Y pestis plasminogen activator Pla, which stimulates host‐mediated fibrinolysis, and the bacterial type III secretion system (T3SS), which delivers bacterial proteins into the cytoplasm of targeted host cells to reduce or prevent effective immunological responses. Platelets intoxicated by the Y pestis T3SS were unable to respond to prothrombotic stimuli, and T3SS expression decreased the formation of neutrophil extracellular traps in platelet thrombi. Conclusions These findings are the first demonstration of a bacterial pathogen using its T3SS and an endogenous protease to manipulate platelet function and to escape entrapment in platelet thrombi.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here