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Updated: Apr 11, 2026

Study of Phagolysosome Biogenesis in Live Macrophages
Published on: March 10, 2014
Klebsiella pneumoniae survives within macrophages by avoiding delivery to lysosomes
Victoria Cano1,2, Catalina March1,2, Jose Luis Insua3
1Laboratory Infection and Immunity, Fundació d'Investigació Sanitària de les Illes Balears (FISIB), Bunyola, Spain.
Abstract:
Klebsiella pneumoniae is an important cause of community-acquired and nosocomial pneumonia. Evidence indicates that Klebsiella might be able to persist intracellularly within a vacuolar compartment. This study was designed to investigate the interaction between Klebsiella and macrophages. Engulfment of K. pneumoniae was dependent on host cytoskeleton, cell plasma membrane lipid rafts and the activation of phosphoinositide 3-kinase (PI3K). Microscopy studies revealed that K. pneumoniae resides within a vacuolar compartment, the Klebsiella-containing vacuole (KCV), which traffics within vacuoles associated with the endocytic pathway. In contrast to UV-killed bacteria, the majority of live bacteria did not co-localize with markers of the lysosomal compartment. Our data suggest that K. pneumoniae triggers a programmed cell death in macrophages displaying features of apoptosis. Our efforts to identify the mechanism(s) whereby K. pneumoniae prevents the fusion of the lysosomes to the KCV uncovered the central role of the PI3K-Akt-Rab14 axis to control the phagosome maturation. Our data revealed that the capsule is dispensable for Klebsiella intracellular survival if bacteria were not opsonized. Furthermore, the environment found by Klebsiella within the KCV triggered the down-regulation of the expression of cps. Altogether, this study proves evidence that K. pneumoniae survives killing by macrophages by manipulating phagosome maturation that may contribute to Klebsiella pathogenesis.
Insights
Klebsiella pneumoniae evades macrophage killing by manipulating phagosome maturation within a specialized vacuole. This intracellular survival mechanism, involving the PI3K-Akt-Rab14 axis, may contribute to pneumonia pathogenesis.
Area of Science:
- Microbiology
- Cell Biology
- Immunology
Background:
- Klebsiella pneumoniae is a significant cause of pneumonia.
- Intracellular persistence within host cells is a potential survival strategy for K. pneumoniae.
Purpose of the Study:
- To investigate the interaction between K. pneumoniae and macrophages.
- To elucidate the mechanisms of intracellular survival and macrophage evasion by K. pneumoniae.
Main Methods:
- Macrophage engulfment assays.
- Confocal microscopy to track bacterial location within host cells.
- Biochemical assays to identify signaling pathways involved in phagosome maturation.
Main Results:
- K. pneumoniae resides in a unique vacuole (KCV) that avoids lysosomal fusion.
- The PI3K-Akt-Rab14 signaling axis is crucial for preventing phagosome maturation.
- K. pneumoniae induces apoptosis in macrophages.
- Bacterial capsule is not essential for intracellular survival in non-opsonized conditions.
Conclusions:
- K. pneumoniae survives macrophage killing by actively manipulating phagosome maturation.
- This manipulation involves the PI3K-Akt-Rab14 pathway and contributes to bacterial pathogenesis.
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