Related Experiment Videos
Legionella pneumophila pathogesesis: a fateful journey from amoebae to macrophages
1Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor, Michigan 48109, USA. mswanson@umich.edu,bhammer@umich.edu
Abstract:
Legionella pneumophila first commanded attention in 1976, when investigators from the Centers for Disease Control and Prevention identified it as the culprit in a massive outbreak of pneumonia that struck individuals attending an American Legion convention (). It is now clear that this gram-negative bacterium flourishes naturally in fresh water as a parasite of amoebae, but it can also replicate within alveolar macrophages. L. pneumophila pathogenesis is discussed using the following model as a framework. When ingested by phagocytes, stationary-phase L. pneumophila bacteria establish phagosomes which are completely isolated from the endosomal pathway but are surrounded by endoplasmic reticulum. Within this protected vacuole, L. pneumophila converts to a replicative form that is acid tolerant but no longer expresses several virulence traits, including factors that block membrane fusion. As a consequence, the pathogen vacuoles merge with lysosomes, which provide a nutrient-rich replication niche. Once the amino acid supply is depleted, progeny accumulate the second messenger guanosine 3',5'-bispyrophosphate (ppGpp), which coordinates entry into the stationary phase with expression of traits that promote transmission to a new phagocyte. A number of factors contribute to L. pneumophila virulence, including type II and type IV secretion systems, a pore-forming toxin, type IV pili, flagella, and numerous other factors currently under investigation. Because of its resemblance to certain aspects of Mycobacterium, Toxoplasma, Leishmania, and Coxiella pathogenesis, a detailed description of the mechanism used by L. pneumophila to manipulate and exploit phagocyte membrane traffic may suggest novel strategies for treating a variety of infectious diseases. Knowledge of L. pneumophila ecology may also inform efforts to combat the emergence of new opportunistic macrophage pathogens.
Insights
Legionella pneumophila, a bacterium causing pneumonia, replicates within amoebae and human macrophages. Its pathogenesis involves manipulating host cell pathways, offering insights into treating infectious diseases.
Area of Science:
- Microbiology
- Pathogenesis
- Infectious Diseases
Background:
- Legionella pneumophila identified in 1976 pneumonia outbreak.
- Naturally occurs in freshwater, parasitic to amoebae.
- Replicates within human alveolar macrophages.
Purpose of the Study:
- Describe L. pneumophila pathogenesis using a model.
- Detail the bacterium's manipulation of phagocyte membrane traffic.
- Explore implications for treating infectious diseases and emerging pathogens.
Main Methods:
- Phagosome-lysosome interaction analysis.
- Bacterial replication and virulence factor expression study.
- Investigation of host-pathogen interactions.
Main Results:
- Stationary-phase bacteria form isolated phagosomes.
- Phagosomes acquire endoplasmic reticulum and fuse with lysosomes.
- Replicative form uses lysosomes for nutrient-rich replication.
- Guano sine 3',5'-bispyrophosphate (ppGpp) signals stationary phase entry and transmission.
Conclusions:
- L. pneumophila manipulates host cell membrane traffic for replication.
- Understanding pathogenesis may reveal novel treatment strategies.
- Insights into L. pneumophila ecology can combat emerging pathogens.