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Afipia felis induces uptake by macrophages directly into a nonendocytic compartment
A Luhrmann1, K Streker, A Schüttfort
1Microbiology, Biocenter of the University, Am Hubland, 97074 Würzburg, Germany.
Abstract:
Afipia felis is a Gram-negative bacterium that causes some cases of human Cat Scratch Disease. A. felis can survive and multiply in several mammalian cell types, including macrophages, but the precise intracellular compartmentalization of A. felis-containing phagosomes is unknown. Here, we demonstrate that, in murine macrophages, most A. felis-containing phagosomes exclude lysosomal tracer loaded into macrophage lysosomes before, as well as endocytic tracer loaded after, establishment of an infection. Established Afipia-containing phagosomes possess neither early endosomal marker proteins [early endosome antigen 1 (EEA1), Rab5, transferrin receptor, trytophane aspartate containing coat protein (TACO)] nor late endosomal or lysosomal proteins [cathepsin D, beta-glucuronidase, vacuolar proton-pumping ATPase, rab7, mannose-6-phosphate receptor, vesicle-associated membrane protein 8, lysosome-associated membrane proteins LAMP-1 and LAMP-2]. Those bacteria that will be found in a nonendosomal compartment enter the macrophage via an EEA1-negative compartment, which remains negative for LAMP-1. The smaller subpopulation of afipiae whose phagosomes will be part of the endocytic system enters into an EEA1-positive compartment, which also subsequently acquires LAMP-1. Killing of Afipia or opsonization with immune antibodies leads to a strong increase in the percentage of A. felis-containing phagosomes that interact with the endocytic system. We conclude that most phagosomes containing A. felis are disconnected from the endosome-lysosome continuum, that their unusual compartmentalization is decided at uptake, and that this compartmentalization requires bacterial viability.
Insights
Afipia felis, a bacterium causing Cat Scratch Disease, resides in macrophage phagosomes that avoid the typical endosome-lysosome pathway. This unique compartmentalization is determined upon entry and requires live bacteria.
Area of Science:
- Microbiology
- Cell Biology
- Immunology
Background:
- Afipia felis is a Gram-negative bacterium responsible for Cat Scratch Disease.
- The bacterium infects macrophages, but its intracellular location within these cells is not well understood.
Purpose of the Study:
- To investigate the intracellular compartmentalization of Afipia felis within murine macrophages.
- To determine if A. felis phagosomes follow the conventional endosome-lysosome pathway.
Main Methods:
- Macrophages were infected with Afipia felis.
- Phagosomes were tracked using lysosomal and endocytic tracers.
- Phagosomes were analyzed for the presence of specific endosomal and lysosomal marker proteins (e.g., EEA1, Rab5, LAMP-1, cathepsin D).
Main Results:
- Most Afipia felis-containing phagosomes excluded lysosomal and endocytic tracers.
- These phagosomes lacked early endosomal markers (EEA1, Rab5) and late endosomal/lysosomal markers (LAMP-1, cathepsin D).
- Bacterial viability and opsonization influenced phagosome interaction with the endocytic system.
Conclusions:
- Afipia felis phagosomes are largely disconnected from the endosome-lysosome continuum.
- The phagosome's unusual compartmentalization is established during uptake and depends on bacterial viability.
- This evasion strategy may contribute to Afipia felis survival within macrophages.