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Published on: March 5, 2018
An epistatic effect of apaf-1 and caspase-9 on chlamydial infection
Mohd Akhlakur Rahman1, Mutsunori Shirai, Md Abdul Aziz
1Department of Microbiology and Immunology, Yamaguchi University School of Medicine, 1-1-1, Minamikogushi, Ube, Yamaguchi, 755-8505, Japan.
Abstract:
Chlamydia is an obligate intracellular bacterial pathogen that replicates solely within a membrane-bound vacuole termed an inclusion. Chlamydia seems to perturb multiple cellular processes of the host, such as, rearrangement of the membrane trafficking system for its intracellular multiplication, and inhibition of host cell apoptosis for persistent infection. In an attempt to clarify host factor involvement in apoptosis regulation, we found that inhibition of Caspase-9 restricted, while Apaf-1 promoted, Chlamydia pneumoniae infection in HEp-2, HeLa, and mouse epithelial fibroblast (MEF) cells. These opposition contributions to the chlamydial infection were confirmed using caspase-9 (-/-) and apaf-1 (-/-) MEFs. Similar phenomena also appeared in the case of infection with Chlamydia trachomatis. Interestingly, caspase-9 in apaf-1 (-/-) MEFs was activated by chlamydial infection but during the infection caspase-3 was not activated. That is, caspase-9 was activated without support for multiplication and activation by Apaf-1, and the activated caspase-9 may be physically disconnected from the caspase cascade. This may be partially explained by the observation of caspase-9 accumulation within chlamydial inclusions. The sequestration of caspase-9 by chlamydia seems to result in apoptosis repression, which is crucial for the chlamydial development cycle. Because Apaf-1 shares domains with intracellular innate immune receptor NOD1, it may play a key role in the strategy to regulate chlamydial infection.
Insights
Chlamydia bacteria manipulate host cell apoptosis by sequestering Caspase-9 within inclusions, restricting its activation. Apaf-1 promotes infection, suggesting a role in regulating chlamydial persistence.
Area of Science:
- Microbiology
- Cell Biology
- Immunology
Background:
- Chlamydia are obligate intracellular bacteria requiring host cell manipulation for replication.
- Chlamydia disrupts host cellular processes, including membrane trafficking and apoptosis inhibition, to ensure persistent infection.
Purpose of the Study:
- To investigate the role of host factors, specifically Caspase-9 and Apaf-1, in regulating apoptosis during Chlamydia infection.
- To elucidate the mechanisms by which Chlamydia evades host cell death pathways.
Main Methods:
- Utilized HEp-2, HeLa, and mouse epithelial fibroblast (MEF) cell lines for infection studies.
- Employed caspase-9 knockout (KO) and Apaf-1 KO MEFs to assess the functions of these proteins.
- Confirmed findings with both Chlamydia pneumoniae and Chlamydia trachomatis infections.
Main Results:
- Inhibition of Caspase-9 restricted Chlamydia infection, while Apaf-1 promoted it.
- Caspase-9 activation occurred independently of Apaf-1 in KO cells, with caspase-3 remaining inactive.
- Chlamydia inclusions sequestered Caspase-9, correlating with apoptosis repression.
Conclusions:
- Chlamydia actively represses apoptosis by sequestering Caspase-9 within inclusions, facilitating its developmental cycle.
- Apaf-1's pro-chlamydial role and its structural similarity to NOD1 suggest a key involvement in innate immune regulation against Chlamydia.
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