Increased phagocytosis of Mycobacterium marinum mutants defective in lipooligosaccharide production a structure-activity relationship study

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Abstract

Mycobacterium marinum is a waterborne pathogen responsible for tuberculosis-like infections inectotherms and is an occasional opportunistic human pathogen. In the environment, M. marinum also interacts with amoebae, which may serve as a natural reservoir for this microorganism. However, the description of mycobacterial determinants in the early interaction with macrophagesoramoebae remains elusive. Lipooligosaccharides (LOSs) are cell surface-exposed glycolipids capable of modulating the host immune system, suggesting that they may be involved in the early interactions of M. marinum with macrophages. Herein, we addressed whether LOS composition affects the uptake of M. marinum by professional phagocytes. Mutants with various truncated LOS variants were generated, leading to the identification of several previously uncharacterized biosynthetic genes (wbbL2, MMAR-2321, and MMAR-2331). Biochemical and structural approaches allowed resolving the structures of LOS precursors accumulating in this set of mutants. These strains with structurally defined LOS profiles were then used to infect both macrophages and Acanthamoebae. An inverse correlation between LOS completeness and uptake of mycobacteriaby phagocytes was found, allowing the proposal of three mutant classes: class I (papA4), devoid of LOS and highly efficiently phagocytosed; class II, accumulating only early LOS intermediates (wbbL2 and MMAR-2331) and efficiently phagocytosed but less than class I mutants; class III, lacking LOS-IV (losA, MMAR-2319, and MMAR-2321) and phagocytosed similarly to the control strain. These results indicate that phagocytosis is conditioned by the LOS pattern and that the LOS pathway used by M. marinum in macrophages is conserved during infection of amoebae. © 2014 by The American Society for Biochemistry and Molecular Biology, Inc.

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Alibaud, L., Pawelczyk, J., Gannoun-Zaki, L., Singh, V. K., Rombouts, Y., Drancourt, M., … Kremer, L. (2014). Increased phagocytosis of Mycobacterium marinum mutants defective in lipooligosaccharide production a structure-activity relationship study. Journal of Biological Chemistry, 289(1), 215–228. https://doi.org/10.1074/jbc.M113.525550

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