Related Experiment Videos
The late chlamydial inclusion membrane is not derived from the endocytic pathway and is relatively deficient in host
T Taraska1, D M Ward, R S Ajioka
1Department of Pharmacology and Psychiatry, Veterans Administration Medical Center, Salt Lake City, Utah, USA.
Abstract:
Chlamydiae are obligate intracellular parasites which multiply within infected cells in a membrane-bound structure termed an inclusion. Newly internalized bacteria are surrounded by host plasma membrane; however, the source of membrane for the expansion of the inclusion is unknown. To determine if the membrane for the mature inclusion was derived by fusion with cellular organelles, we stained infected cells with fluorescent or electron-dense markers specific for organelles and examined inclusions for those markers. We observed no evidence for the presence of endoplasmic reticulum, Golgi, late endosomal, or lysosomal proteins in the inclusion. These data suggest that the expansion of the inclusion membrane, beginning 24 h postinoculation, does not occur by the addition of host proteins resulting from either de novo host synthesis or by fusion with preexisting membranes. To determine the source of the expanding inclusion membrane, antibodies were produced against isolated membranes from Chlamydia-infected mouse cells. The antibodies were demonstrated to be solely against Chlamydia-specified proteins by both immunoprecipitation of [35S]methionine-labeled extracts and Western blotting (immunoblotting). Techniques were used to semipermeabilize Chlamydia-infected cells without disrupting the permeability of the inclusion, allowing antibodies access to the outer surface of the inclusion membrane. Immunofluorescent staining demonstrated a ring-like fluorescence around inclusions in semipermeabilized cells, whereas Triton X-100-permeabilized cells showed staining throughout the inclusion. These studies demonstrate that the inclusion membrane is made up, in part, of Chlamydia-specified proteins and not of existing host membrane proteins.
Insights
The Chlamydia inclusion membrane expands using parasite-specified proteins, not host organelles. This finding clarifies how these obligate intracellular bacteria grow within host cells.
Area of Science:
- Microbiology
- Cell Biology
- Infectious Diseases
Background:
- Chlamydiae are obligate intracellular parasites that replicate within a host-derived vacuole called an inclusion.
- The origin of the inclusion membrane, crucial for bacterial growth, remains largely unknown.
Purpose of the Study:
- To investigate the source of the inclusion membrane during Chlamydia infection.
- To determine if the inclusion membrane is derived from host cellular organelles or synthesized by the bacteria.
Main Methods:
- Infected cells were stained with organelle-specific markers to examine inclusion membranes.
- Antibodies against Chlamydia-infected cell membranes were generated and tested.
- Semipermeabilization techniques and immunofluorescent staining were employed to analyze inclusion membrane composition.
Main Results:
- No evidence of host endoplasmic reticulum, Golgi, late endosomal, or lysosomal proteins was found in the inclusion membrane.
- Antibodies raised against infected cell membranes recognized Chlamydia-specific proteins.
- Immunofluorescence revealed Chlamydia-specified proteins on the inclusion membrane surface.
Conclusions:
- The Chlamydia inclusion membrane is not formed by fusion with host organelles.
- The expanding inclusion membrane is composed, in part, of proteins synthesized by Chlamydia itself.