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A phosphodiesterase CpdB in Yersinia pseudotuberculosis degrades CDNs to inhibit innate immune response
Xiao Wang1, Xinwei Hao1, Yuqing Yang1
1State Key Laboratory for Crop Stress Resistance and High-Efficiency Production, Shaanxi Key Laboratory of Agricultural and Environmental Microbiology, College of Life Sciences, Northwest A&F University, Yangling, Shaanxi 712100, China.
Abstract:
Yersinia pseudotuberculosis (Yptb) is a pathogenic gram-negative bacterium that can colonize the intestines of different animals. Its infection leads to the activation of the host's innate immunity. Both host and bacterial-derived cyclic dinucleotides (CDNs) could activate the innate immune response of host cells. In bacteria, CDNs like c-di-AMP, c-di-GMP, or 3'3'-cGAMP can be hydrolyzed by different hydrolases. Recent studies showed that the degradation of those second messengers helps the pathogen evade immune detection. In this study, we identified a hydrolase, YPK_3776, namely CpdB in Yptb. CpdB is predicted to bind bacterial-derived c-di-AMP, c-di-GMP, 3'3'-cGAMP and host-derived 2'3'-cGAMP. Surprisingly, by using high-performance liquid chromatography (HPLC), we found that CpdB could only degrade bacterial-derived CDNs but not host-derived 2'3'-cGAMP. In addition, CpdB has 2'3'-cNMP activity. Consistently, the Yptb mutant lacking the cpdB gene exhibited a higher level of intracellular c-di-GMP. Furthermore, the ∆cpdB mutant elicited stronger innate immune responses during Yptb infection in macrophages, suggesting CpdB enables Yptb to evade host immune surveillance. Furthermore, CpdB inhibited the Yptb-induced innate immune response in a STING-dependent manner. Finally, we showed the ∆cpdB infection in mice model exhibited in lower bacterial burden, as compared to wild-type strain infection, indicating CpdB is important for bacterial survival in the host. Together, we identified a cyclic dinucleotide hydrolase CpdB in Yptb that could degrade bacterial-derived CDNs which help the pathogen to evade immune detection via the STING pathway.
Insights
Yersinia pseudotuberculosis uses CpdB, a cyclic dinucleotide hydrolase, to degrade bacterial molecules, evading host immune detection via the STING pathway. This finding is crucial for understanding bacterial survival and developing new treatments.
Area of Science:
- Microbiology
- Immunology
- Biochemistry
Background:
- Yersinia pseudotuberculosis (Yptb) is a pathogen that activates host innate immunity.
- Cyclic dinucleotides (CDNs) from both host and bacteria can trigger immune responses.
- Bacterial hydrolases degrade CDNs, aiding pathogens in immune evasion.
Purpose of the Study:
- To identify and characterize a novel hydrolase in Yptb involved in immune evasion.
- To investigate the substrate specificity and activity of the identified hydrolase, CpdB.
- To elucidate the role of CpdB in Yptb's interaction with the host immune system, particularly the STING pathway.
Main Methods:
- High-performance liquid chromatography (HPLC) to determine CpdB's degradation activity.
- Construction and analysis of a Yptb mutant lacking the cpdB gene (∆cpdB).
- In vitro assays using macrophages and in vivo studies using a mouse model to assess immune response and bacterial burden.
Main Results:
- CpdB specifically degrades bacterial CDNs (c-di-AMP, c-di-GMP, 3'3'-cGAMP) but not host-derived 2'3'-cGAMP.
- The ∆cpdB mutant showed increased intracellular c-di-GMP levels and elicited stronger innate immune responses.
- CpdB inhibited Yptb-induced innate immunity in a STING-dependent manner.
- Mice infected with ∆cpdB exhibited lower bacterial burden compared to wild-type Yptb.
Conclusions:
- CpdB is a Yptb cyclic dinucleotide hydrolase essential for evading host immune surveillance.
- Degradation of bacterial CDNs by CpdB dampens the STING-mediated innate immune response.
- CpdB plays a significant role in Yptb's survival and pathogenesis within the host.
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