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Published on: January 30, 2020
Chlamydia trachomatis TmeA promotes pedestal formation through N-WASP and TOCA-1 interactions
Alix McCullough1, C A Jabeena1, Brianna Steiert1,2
1Department of Microbiology and Immunology, University of Iowa Carver College of Medicine, Iowa City, IA, USA.
Abstract:
Chlamydia trachomatis (C.t.) is the causative agent of several human diseases, including the sexually transmitted infection chlamydia and eye infection trachoma. As an obligate intracellular bacterial pathogen, invasion is essential for establishing infection and subsequent pathogenesis. To facilitate invasion, C.t. secretes effector proteins through its type III secretion system (T3SS). These effectors facilitate bacterial entry by manipulating multiple pathways involved in host actin cytoskeletal regulation. Previous studies have demonstrated that the T3SS effector protein TmeA is crucial for C.t. invasion, as it recruits and activates N-WASP. This interaction leads to recruitment and activation of the Arp2/3 complex, promoting cytoskeletal rearrangements at the invasion site to facilitate C.t. uptake. In this study, we define the role of the N-WASP CRIB domain in mediating this interaction, showing that TmeA acts as a functional mimic of Cdc42 in activating N-WASP. Additionally, we identified TOCA-1 as another host protein that directly interacts with TmeA. In other bacterial pathogens, notably Enterohemorrhagic E. coli, N-WASP and TOCA-1 are hijacked to mediate pedestal formation. Using siRNA to knockdown N-WASP and TOCA-1, followed by transmission electron microscopic, we observed that both N-WASP and TOCA-1 are important for in C.t.-mediated pedestal formation. Collectively, these findings reveal a unique mechanism of TmeA-mediated invasion, where direct interactions with N-WASP and TOCA-1 facilitate pedestal formation.
Insights
Chlamydia trachomatis uses its T3SS effector TmeA to invade host cells by mimicking Cdc42 and activating N-WASP. TmeA also interacts with TOCA-1, both crucial for bacterial pedestal formation during invasion.
Area of Science:
- Microbiology
- Cell Biology
- Infectious Diseases
Background:
- Chlamydia trachomatis (C.t.) is an obligate intracellular bacterium causing human diseases like chlamydia and trachoma.
- Bacterial invasion, crucial for pathogenesis, is facilitated by C.t.'s type III secretion system (T3SS) effectors that manipulate host actin regulation.
Purpose of the Study:
- To elucidate the role of the N-WASP CRIB domain in TmeA-mediated C.t. invasion.
- To identify and characterize other host factors involved in TmeA-mediated invasion and pedestal formation.
Main Methods:
- Biochemical assays to define TmeA's interaction with N-WASP and TOCA-1.
- siRNA-mediated knockdown of N-WASP and TOCA-1.
- Transmission electron microscopy to visualize C.t.-induced pedestal formation.
Main Results:
- TmeA directly interacts with N-WASP, mimicking Cdc42 to activate N-WASP and subsequently the Arp2/3 complex.
- TmeA also directly interacts with the host protein TOCA-1.
- Both N-WASP and TOCA-1 are essential for C.t.-mediated pedestal formation, a process critical for bacterial invasion.
Conclusions:
- TmeA employs a unique invasion mechanism by directly engaging N-WASP and TOCA-1.
- This interaction facilitates actin-driven pedestal formation, enhancing C.t. entry into host cells.
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