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Identification of Host Pathways Targeted by Bacterial Effector Proteins using Yeast Toxicity and Suppressor Screens
Published on: October 25, 2019
The Chlamydia pneumoniae inclusion membrane protein Cpn0308 interacts with host protein ACBD3
Liang Ma1,2,3, Xiao-Hui Jia1,2, Zhe Gao1,2
1Pathogen Biology and Immunology Research Institute, Hebei North University, Zhangjiakou, Hebei, China.
Abstract:
Chlamydia pneumoniae is an obligate intracellular bacterium of eukaryotic cells characterized by a unique biphasic life cycle; its biosynthesis and replication must occur within a cytoplasmic vacuole or inclusion. Certain inclusion membrane proteins have been demonstrated to mediate the interactions between intra-inclusion chlamydial organisms and the host cell. It has been demonstrated previously that the C. pneumoniae-encoded Cpn0308 localizes to the inclusion membrane; however, its function remains unknown. In the current study, a yeast two-hybrid assay was conducted to screen Cpn0308 as a bait against a HeLa cell cDNA library, revealing its binding to the host protein acyl-coenzyme A binding domain-containing 3 (ACBD3). The interaction between Cpn0308 and ACBD3 was confirmed through co-immunoprecipitation and GST (Glutathione S-transferase) pull-down assays. The two proteins were also co-localized in HeLa cells co-expressing Cpn0308 and ACBD3, as well as in C. pneumoniae-infected cells, as observed under confocal fluorescence microscopy. Given that ACBD3 plays a crucial role in maintaining host cell lipid homeostasis and its Golgi dynamic domain is responsible for interacting with Cpn0308, we hypothesize that the Cpn0308-ACBD3 interaction may facilitate C. pneumoniae's acquisition of host lipids, thereby benefiting chlamydial survival. This study lays a foundation for further elucidating the mechanisms of Cpn0308-mediated C. pneumoniae pathogenesis.IMPORTANCEThe biosynthesis and replication of Chlamydia pneumoniae (Cpn) must occur within the cytoplasmic vacuoles or inclusions of host cells. Inclusion bodies play a crucial role in mediating the interactions between Cpn and host cells. Cpn0308 is localized to the inclusion membrane; however, its function is unknown. In this study, Cpn0308 was found to bind to host protein acyl-coenzyme A binding domain-containing 3 (ACBD3) through some standard approaches. Co-localization of the two proteins was observed in both original HeLa cells and Cpn-infected HeLa cells. ACBD3 plays a significant role in maintaining lipid homeostasis in host cells; we speculate that the Cpn0308-ACBD3 interaction may facilitate the acquisition of host lipids by C. pneumoniae, thereby enhancing chlamydial survival.
Insights
Chlamydia pneumoniae protein Cpn0308 binds to host protein ACBD3, which is involved in lipid homeostasis. This interaction may help the bacteria acquire host lipids for survival and pathogenesis.
Area of Science:
- Microbiology
- Cell Biology
- Bacterial Pathogenesis
Background:
- Chlamydia pneumoniae is an obligate intracellular bacterium requiring host cell vacuoles for replication.
- Inclusion membrane proteins mediate interactions between Chlamydia and host cells.
- The function of C. pneumoniae inclusion membrane protein Cpn0308 is currently unknown.
Purpose of the Study:
- To investigate the function of Cpn0308 by identifying its host cell binding partners.
- To elucidate the role of Cpn0308 in Chlamydia pneumoniae pathogenesis.
Main Methods:
- Yeast two-hybrid assay to screen for Cpn0308 interacting proteins.
- Co-immunoprecipitation and GST pull-down assays to confirm protein interactions.
- Confocal fluorescence microscopy to observe co-localization of proteins in host cells.
Main Results:
- Cpn0308 was found to bind to the host protein acyl-coenzyme A binding domain-containing 3 (ACBD3).
- The interaction between Cpn0308 and ACBD3 was confirmed using biochemical assays.
- Cpn0308 and ACBD3 were observed to co-localize in both uninfected and C. pneumoniae-infected HeLa cells.
Conclusions:
- The Cpn0308-ACBD3 interaction suggests a mechanism for Chlamydia pneumoniae to hijack host lipid metabolism.
- This interaction may facilitate the acquisition of host lipids, aiding bacterial survival and replication.
- Further research into Cpn0308 is crucial for understanding C. pneumoniae pathogenesis.
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