The mechanism of killing and exiting the protozoan host Acanthamoeba polyphaga by Legionella pneumophila
- 1 February 2000
- journal article
- research article
- Published by Wiley in Environmental Microbiology
- Vol. 2 (1) , 79-90
- https://doi.org/10.1046/j.1462-2920.2000.00076.x
Abstract
The ability of Legionella pneumophila to cause legionnaires' disease is dependent on its capacity to replicate within cells in the alveolar spaces. The bacteria kill mammalian cells in two phases: induction of apoptosis during the early stages of infection, followed by an independent and rapid necrosis during later stages of the infection, mediated by a pore-forming activity. In the environment, L. pneumophila is a parasite of protozoa. The molecular mechanisms by which L. pneumophila kills the protozoan cells, after their exploitation for intracellular proliferation, are not known. In an effort to decipher these mechanisms, we have examined induction of both apoptosis and necrosis in the protozoan Acanthamoeba polyphaga upon infection by L. pneumophila. Our data show that, although A. polyphaga undergoes apoptosis following treatment with actinomycin D, L. pneumophila does not induce apoptosis in these cells. Instead, intracellular L. pneumophila induces necrotic death in A. polyphaga, which is mediated by the pore-forming activity. Mutants of L. pneumophila defective in expression of the pore-forming activity are indistinguishable from the parental strain in intracellular replication within A. polyphaga. The parental strain bacteria cause necrosis-mediated lysis of all the A. polyphaga cells within 48 h after infection, and all the intracellular bacteria are released into the tissue culture medium. In contrast, all cells infected by the mutants remain intact, and the intracellular bacteria are ‘trapped’ within A. polyphaga after the termination of intracellular replication. Failure to exit the host cell after termination of intracellular replication results in a gradual decline in the viability of the mutant strain bacteria within A. polyphaga starting 48 h after infection. Our data show that the pore-forming activity of L. pneumophila is not required for intracellular bacterial replication within A. polyphaga but is required for killing and exiting the protozoan host upon termination of intracellular replication.Keywords
This publication has 35 references indexed in Scilit:
- Identification of Putative Cytoskeletal Protein Homologues in the Protozoan Host Hartmannella vermiformis as Substrates for Induced Tyrosine Phosphatase Activity upon Attachment to the Legionnaires' Disease Bacterium, Legionella pneumophila The Journal of Experimental Medicine, 1998
- Identification of a Gal/GalNAc Lectin in the Protozoan Hartmannella vermiformis as a Potential Receptor for Attachment and Invasion by the Legionnaires' Disease BacteriumThe Journal of Experimental Medicine, 1997
- Phylogenetic diversity of intra-amoebal legionellae as revealed by 16S rRNA gene sequence comparisonMicrobiology, 1996
- Early redistribution of plasma membrane phosphatidylserine is a general feature of apoptosis regardless of the initiating stimulus: inhibition by overexpression of Bcl-2 and Abl.The Journal of Experimental Medicine, 1995
- Apoptosis in the Pathogenesis and Treatment of DiseaseScience, 1995
- ApoptosisImmunology Today, 1993
- Programmed nuclear death: Apoptotic-like degradation of specific nuclei in conjugating TetrahymenaDevelopmental Biology, 1992
- Direct amplification and sequencing of the 16S ribosomal DNA of an intracellular Legionella species recovered by amoebal enrichment from the sputum of a patient with pneumoniaFEMS Microbiology Letters, 1991
- The Legionnaires' disease bacterium (Legionella pneumophila) inhibits phagosome-lysosome fusion in human monocytes.The Journal of Experimental Medicine, 1983
- Legionella pneumophila in cooling water systems: Report of a survey of cooling towers in London and a pilot trial of selected biocidesEpidemiology and Infection, 1982