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Interaction of pathogenic bacteria with rabbit appendix M cells: bacterial motility is a key feature in vivo
Marta Marchetti1, Jean Claude Sirard, Philippe Sansonetti
1Laboratory of Lympho-epithelial Interactions, Department of Cell Biology and Infection, Pasteur Institute, 25-28, rue du Docteur Roux, 75724 Paris cedex 15, France. marta.marchetti@curie.fr
Abstract:
Rabbit appendix consists mainly of lymphoid follicles (LF) covered by M cells, the specialized antigen-sampling cells of the mucosal immune system, and surrounded by glandular epithelium. Until now, these M cells have been characterized morphologically and histologically by using cellular markers. Here, the adhesion and transport of pathogenic bacteria were investigated to assess the function of M cells of the appendix. We used the enteroinvasive motile Salmonella typhimurium and the rabbit enteropathogenic non-motile Escherichia coli RDEC-1, which are known to target specifically rabbit M cells of Peyer's patches (PPs). We found that S. typhimurium efficiently attached and was transported through appendix M cells in vivo. In contrast to S. typhimurium, RDEC-1 targeted M cells only ex vivo, when bacteria were allowed to have direct contact with the surface of the follicle. The difference in interaction of the two bacteria with appendix M cells led us to investigate whether this could be correlated with the lack of motility of RDEC-1. We used an aflagellate mutant of S. typhimurium and found that it had the same infection phenotype as RDEC-1. Gene complementation restored the efficiency of infection to that of S. typhimurium wild-type strain. In conclusion, we show that M cells of the appendix display features of the canonical M cells of PP, since they efficiently sample luminal pathogenic bacteria. However, due to the morphology of the appendix, motile bacteria appear to be more potent in their interactions with appendix M cells.
Insights
Rabbit appendix M cells sample pathogenic bacteria, similar to Peyer's patches. Motility is crucial for efficient bacterial adhesion and transport through appendix M cells, influencing mucosal immunity.
Area of Science:
- Immunology
- Microbiology
- Gastroenterology
Background:
- Rabbit appendix contains M cells, specialized for antigen sampling in the mucosal immune system.
- Previous M cell characterization relied on morphology and cellular markers.
- The functional role of appendix M cells in pathogen interaction was largely unexplored.
Purpose of the Study:
- To investigate the functional role of rabbit appendix M cells in pathogen adhesion and transport.
- To compare the interaction of motile and non-motile bacteria with appendix M cells.
- To determine the influence of bacterial motility on M cell targeting.
Main Methods:
- In vivo and ex vivo studies using enteroinvasive Salmonella typhimurium (motile) and Escherichia coli RDEC-1 (non-motile).
- Utilized an aflagellate S. typhimurium mutant to assess the role of motility.
- Employed gene complementation to restore motility and observe infection phenotype changes.
Main Results:
- Salmonella typhimurium efficiently adhered to and was transported through appendix M cells in vivo.
- Escherichia coli RDEC-1 primarily targeted M cells ex vivo, requiring direct contact.
- A non-motile S. typhimurium mutant exhibited similar targeting limitations as RDEC-1, which were reversed by gene complementation.
Conclusions:
- Appendix M cells function similarly to Peyer's patch M cells in sampling luminal pathogens.
- Bacterial motility significantly enhances interaction and transport by appendix M cells.
- Appendix morphology favors interactions with motile bacteria, impacting mucosal immune responses.
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