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Nucleolin, a shuttle protein promoting infection of human monocytes by Francisella tularensis
Monique Barel1, Karin Meibom, Alain Charbit
1Université Paris Descartes, Faculté de Médecine Necker Enfants-Malades, Paris, France. monique.barel@inserm.fr
Background:
Francisella tularensis is a highly virulent facultative intracellular bacterium, disseminating in vivo mainly within host mononuclear phagocytes. After entry into macrophages, F. tularensis initially resides in a phagosomal compartment, whose maturation is then arrested. Bacteria escape rapidly into the cytoplasm, where they replicate freely. We recently demonstrated that nucleolin, an eukaryotic protein able to traffic from the nucleus to the cell surface, acted as a surface receptor for F. tularensis LVS on human monocyte-like THP-1 cells.
Methodology/Principal Findings:
Here, we followed the fate of nucleolin once F. tularensis has been endocytosed. We first confirmed by siRNA silencing experiments that expression of nucleolin protein was essential for binding of LVS on human macrophage-type THP-1 cells. We then showed that nucleolin co-localized with intracellular bacteria in the phagosomal compartment. Strikingly, in that compartment, nucleolin also co-localized with LAMP-1, a late endosomal marker. Co-immunoprecipation assays further demonstrated an interaction of nucleolin with LAMP-1. Co-localization of nucleolin with LVS was no longer detectable at 24 h when bacteria were multiplying in the cytoplasm. In contrast, with an iglC mutant of LVS, which remains trapped into the phagosomal compartment, or with inert particles, nucleolin/bacteria co-localization remained almost constant.
Conclusions/Significance:
We herein confirm the importance of nucleolin expression for LVS binding and its specificity as nucleolin is not involved in binding of another intracellular pathogen as L. monocytogenes or an inert particle. Association of nucleolin with F. tularensis during infection continues intracellularly after endocytosis of the bacteria. The present work therefore unravels for the first time the presence of nucleolin in the phagosomal compartment of macrophages.
Insights
Nucleolin is crucial for Francisella tularensis (F. tularensis) binding to macrophages and remains associated with the bacteria within the phagosome after entry. This protein
Area of Science:
- Microbiology
- Cell Biology
- Immunology
Background:
- Francisella tularensis (F. tularensis) is a virulent bacterium that infects host mononuclear phagocytes.
- F. tularensis resides in a phagosome after macrophage entry, with subsequent cytoplasmic escape and replication.
- Nucleolin, an eukaryotic protein, functions as a surface receptor for F. tularensis LVS on human THP-1 cells.
Purpose of the Study:
- To investigate the intracellular fate of nucleolin following F. tularensis endocytosis.
- To confirm the role of nucleolin in F. tularensis LVS binding to macrophages.
- To elucidate the interaction of nucleolin with intracellular bacterial compartments.
Main Methods:
- siRNA silencing to assess nucleolin expression.
- Confocal microscopy for co-localization studies (nucleolin, F. tularensis, LAMP-1).
- Co-immunoprecipitation assays to detect protein interactions.
Main Results:
- Nucleolin expression is essential for F. tularensis LVS binding to THP-1 cells.
- Nucleolin co-localizes with intracellular F. tularensis within the phagosome, including with the late endosomal marker LAMP-1.
- Nucleolin association diminishes as bacteria escape into the cytoplasm, but persists with phagosome-trapped mutants.
Conclusions:
- Nucleolin expression is critical for F. tularensis LVS binding and exhibits specificity, not mediating binding of L. monocytogenes or inert particles.
- Nucleolin remains associated with F. tularensis intracellularly post-endocytosis.
- This study reveals nucleolin's presence within the macrophage phagosomal compartment during F. tularensis infection.
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