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AIP56, an AB toxin secreted by Photobacterium damselae subsp. piscicida, has tropism for myeloid cells

Freitas, I. L.; Macedo, F.; Oliveira, L.; Oliveira, P.; do Vale, A.; dos Santos, N. M. S.

2024-11-15 immunology
10.1101/2024.11.12.623249 bioRxiv
Show abstract

The AB-type toxin AIP56 is a key virulence factor of Photobacterium damselae subsp. piscicida (Phdp), inducing apoptosis in fish immune cells. The discovery of AIP56-like and AIP56-related toxins in diverse organisms, including human-associated Vibrio strains, highlights the evolutionary conservation of this toxin family, suggesting that AIP56 and its homologs may share conserved receptors across species. These toxins have potential for biotechnological applications, such as therapeutic protein delivery and immune modulation. Herein, the cell specificity of AIP56 for immune cells in sea bass, mice, and humans was characterized. Whether AIP56 interacts directly or indirectly with sea bass neutrophils was never investigated and it was shown that only a small population of sea bass neutrophils internalized AIP56, indicating that most of the neutrophilic destruction during Phdp infection and/or AIP56 intoxication does not result from the direct toxicity of the toxin. Moreover, the cellular tropism of AIP56 for myeloid cells was observed in the three species, including its preference for macrophages. Further, mouse and human M0 and M2-like macrophages internalized more toxin than M1-like macrophages. Despite the limited interaction of lymphoid cells with AIP56, mouse B1-cells were able to internalize the toxin, possibly due to its myeloid features. These findings are relevant for both pathogenicity and biomedical contexts.

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