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Using Fluorescent Proteins to Visualize and Quantitate Chlamydia Vacuole Growth Dynamics in Living Cells
Published on: October 13, 2015
Type III secretion, contact-dependent model for the intracellular development of chlamydia
D P Wilson1, P Timms, D L S McElwain
1School of Mathematical Sciences, Queensland University of Technology, Brisbane, Australia. dp.wilson@unsw.edu.au
Abstract:
The medically significant genus Chlamydia is a class of obligate intracellular bacterial pathogens that replicate within vacuoles in host eukaryotic cells termed inclusions. Chlamydia's developmental cycle involves two forms; an infectious extracellular form, known as an elementary body (EB), and a non-infectious form, known as the reticulate body (RB), that replicates inside the vacuoles of the host cells. The RB surface is covered in projections that are in intimate contact with the inclusion membrane. Late in the developmental cycle, these reticulate bodies differentiate into the elementary body form. In this paper, we present a hypothesis for the modulation of these developmental events involving the contact-dependent type III secretion (TTS) system. TTS surface projections mediate intimate contact between the RB and the inclusion membrane. Below a certain number of projections, detachment of the RB provides a signal for late differentiation of RB into EB. We use data and develop a mathematical model investigating this hypothesis. If the hypothesis proves to be accurate, then we have shown that increasing the number of inclusions per host cell will increase the number of infectious progeny EB until some optimal number of inclusions. For more inclusions than this optimum, the infectious yield is reduced because of spatial restrictions. We also predict that a reduction in the number of projections on the surface of the RB (and as early as possible during development) will significantly reduce the burst size of infectious EB particles. Many of the results predicted by the model can be tested experimentally and may lead to the identification of potential targets for drug design.
Insights
Chlamydia bacteria use type III secretion (TTS) system projections to signal developmental changes. Reducing these projections may reduce infectious Chlamydia elementary body (EB) production, offering potential drug targets.
Area of Science:
- Microbiology
- Cell Biology
- Bacterial Pathogenesis
Background:
- Chlamydia are obligate intracellular bacterial pathogens.
- They cycle between infectious elementary bodies (EB) and replicative reticulate bodies (RB).
- RB surface projections interact with host cell inclusions.
Purpose of the Study:
- To hypothesize and model the role of type III secretion (TTS) system projections in Chlamydia development.
- To investigate how RB-inclusion membrane contact influences RB to EB differentiation.
- To identify potential drug targets for Chlamydia infections.
Main Methods:
- Development of a mathematical model based on experimental data.
- Hypothesis formulation regarding TTS system function in Chlamydia development.
- Analysis of RB surface projections and their impact on differentiation.
Main Results:
- A hypothesis linking TTS surface projections to RB differentiation into EB.
- Model predicts increased inclusions initially boost EB yield, then decrease it due to spatial limits.
- Reduced projections are predicted to significantly decrease infectious EB production.
Conclusions:
- The number of TTS projections on RBs may regulate differentiation into infectious EBs.
- Host cell inclusion number influences infectious progeny yield.
- The model provides testable predictions for Chlamydia drug development.
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