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Published on: June 30, 2023
Peptidase Inhibitor 15 (PI15) Regulates Chlamydial CPAF Activity
Bhupesh K Prusty1, Suvagata R Chowdhury1, Nitish Gulve1
1Biocenter, Chair of Microbiology, University of Würzburg, Würzburg, Germany.
Abstract:
Obligate intracellular pathogenic Chlamydia trachomatis express several serine proteases whose roles in chlamydial development and pathogenicity are not completely understood. The chlamydial protease CPAF is expressed during the replicative phase of the chlamydial developmental cycle and is secreted into the lumen of the Chlamydia-containing vacuole called inclusion. How the secreted protease is activated in the inclusion lumen is currently not fully understood. We have identified human serine peptidase inhibitor PI15 as a potential host factor involved in the regulation of CPAF activation. Silencing expression as well as over expression of PI15 affected normal development of Chlamydia. PI15 was transported into the chlamydial inclusion lumen where it co-localized with CPAF aggregates. We show that PI15 binds to the CPAF zymogen and potentially induces CPAF protease activity at low concentrations. However, at high concentrations PI15 inhibits CPAF activity possibly by blocking its protease domain. Our findings shed light on a new aspect of chlamydial host co-evolution which involves the recruitment of host cell proteins into the inclusion to control the activation of bacterial proteases like CPAF that are important for the normal development of Chlamydia.
Insights
The human protein PI15 regulates the activation of Chlamydia trachomatis protease CPAF within host cells. PI15
Area of Science:
- Microbiology
- Cell Biology
- Host-Pathogen Interactions
Background:
- * *Chlamydia trachomatis* is an obligate intracellular bacterium with poorly understood developmental and pathogenic mechanisms.
- * Serine proteases, like CPAF, are crucial for *Chlamydia* development but their activation in the host vacuole remains unclear.
Purpose of the Study:
- * To investigate the role of host factors in regulating the chlamydial protease CPAF activation.
- * To identify and characterize the function of PI15 in the *Chlamydia* developmental cycle.
Main Methods:
- * Gene silencing and overexpression of PI15 in host cells.
- * Co-localization studies of PI15 and CPAF within the inclusion.
- * In vitro binding assays and protease activity measurements.
Main Results:
- * PI15 is transported into the *Chlamydia*-containing vacuole and co-localizes with CPAF.
- * PI15 binds to the CPAF zymogen, inducing its activity at low concentrations.
- * High concentrations of PI15 inhibit CPAF activity by blocking its protease domain.
Conclusions:
- * PI15 acts as a dual regulator of CPAF activity, influencing *Chlamydia* development.
- * This highlights a novel host-pathogen co-evolution mechanism involving host protein recruitment to control bacterial protease activation.
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