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Identification of Host Pathways Targeted by Bacterial Effector Proteins using Yeast Toxicity and Suppressor Screens
Published on: October 25, 2019
A Functional Yeast-Based Screen Identifies the Host Microtubule Cytoskeleton as a Target of Numerous Chlamydia
Carolin Wevers1, Mona Höhler1, Abel R Alcázar-Román1
1Eukaryotic Microbiology, Institute of Functional Microbial Genomics, Heinrich-Heine-University, 40225 Düsseldorf, Germany.
Abstract:
Bacterial pathogens have evolved intricate ways to manipulate the host to support infection. Here, we systematically assessed the importance of the microtubule cytoskeleton for infection by Chlamydiae, which are obligate intracellular bacteria that are of great importance for human health. The elimination of microtubules in human HEp-2 cells prior to C. pneumoniae infection profoundly attenuated the infection efficiency, demonstrating the need for microtubules for the early infection processes. To identify microtubule-modulating C. pneumoniae proteins, a screen in the model yeast Schizosaccharomyces pombe was performed. Unexpectedly, among 116 selected chlamydial proteins, more than 10%, namely, 13 proteins, massively altered the yeast interphase microtubule cytoskeleton. With two exceptions, these proteins were predicted to be inclusion membrane proteins. As proof of principle, we selected the conserved CPn0443 protein, which caused massive microtubule instability in yeast, for further analysis. CPn0443 bound and bundled microtubules in vitro and co-localized partially with microtubules in vivo in yeast and human cells. Furthermore, CPn0443-transfected U2OS cells had a significantly reduced infection rate by C. pneumoniae EBs. Thus, our yeast screen identified numerous proteins encoded using the highly reduced C. pneumoniae genome that modulated microtubule dynamics. Hijacking of the host microtubule cytoskeleton must be a vital part of chlamydial infection.
Insights
Chlamydia pneumoniae requires host microtubules for infection. Researchers identified bacterial proteins that disrupt microtubule dynamics, revealing a key mechanism for chlamydial pathogenesis.
Area of Science:
- Microbiology
- Cell Biology
- Biochemistry
Background:
- Bacterial pathogens manipulate host cells for infection.
- Chlamydiae are obligate intracellular bacteria significant to human health.
- The role of the microtubule cytoskeleton in Chlamydia infection was unclear.
Purpose of the Study:
- To investigate the importance of microtubules for Chlamydia infection.
- To identify Chlamydia pneumoniae proteins that modulate microtubule dynamics.
Main Methods:
- Human HEp-2 cells were used to assess infection efficiency after microtubule elimination.
- A screen in yeast (Schizosaccharomyces pombe) identified bacterial proteins affecting microtubules.
- The protein CPn0443 was further analyzed for its interaction with microtubules in vitro and in vivo.
Main Results:
- Microtubule elimination significantly reduced Chlamydia pneumoniae infection.
- 13 out of 116 tested C. pneumoniae proteins altered yeast microtubule cytoskeleton.
- CPn0443 protein destabilized microtubules, bound and bundled them, and reduced infection rates in human cells.
Conclusions:
- Microtubules are essential for early Chlamydia pneumoniae infection processes.
- Chlamydiae utilize numerous proteins to hijack the host microtubule cytoskeleton.
- The CPn0443 protein is a key effector that manipulates microtubule dynamics during infection.
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