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Stimulation of Cytoplasmic DNA Sensing Pathways In Vitro and In Vivo
Published on: September 18, 2014
Penaeus monodon Interferon Regulatory Factor (PmIRF) Activates IFNs and Antimicrobial Peptide Expression via a
Suthinee Soponpong1, Piti Amparyup2,3, Taro Kawai4
1Center of Excellence for Molecular Biology and Genomics of Shrimp, Department of Biochemistry, Faculty of Science, Chulalongkorn University, Bangkok, Thailand.
Abstract:
Interferon regulatory factors (IRFs) are transcription factors found in both vertebrates and invertebrates that were recently identified and found to play an important role in antiviral immunity in black tiger shrimp Penaeus monodon. In this study, we investigated the mechanism by which P. monodon IRF (PmIRF) regulates the immune-related genes downstream of the cytosolic DNA sensing pathway. Depletion of PmIRF by double-stranded RNA-mediated gene silencing significantly reduced the mRNA expression levels of the IFN-like factors PmVago1, PmVago4, and PmVago5 and antilipopolysaccharide factor 6 (ALFPm6) in shrimp. In human embryonic kidney (HEK293T) cells transfected with PmIRF or co-transfected with DEAD-box polypeptide (PmDDX41) and simulator of IFN genes (PmSTING) expression plasmids, the promoter activity of IFN-β, nuclear factor (NF-κB), and ALFPm6 was synergistically enhanced following stimulation with the nucleic acid mimics deoxyadenylic-deoxythymidylic acid sodium salt [poly(dA:dT)] and high molecular weight (HMW) polyinosinic-polycytidylic acid [poly(I:C)]. Both nucleic acid mimics also significantly induced PmSTING, PmIRF, and ALFPm6 gene expression. Co-immunoprecipitation experiments showed that PmIRF interacted with PmSTING in cells stimulated with poly(dA:dT). PmSTING, PmIRF, and PmDDX41 were localized in the cytoplasm of unstimulated HEK293T cells and PmIRF and PmDDX41 were translocated to the nucleus upon stimulation with the nucleic acid mimics while PmSTING remained in the cytoplasm. These results indicate that PmIRF transduces the pathogen signal via the PmDDX41-PmSTING DNA sensing pathway to induce downstream production of interferon-like molecules and antimicrobial peptides.
Insights
Interferon regulatory factors (IRFs) in shrimp regulate antiviral immunity by activating immune genes through the cytosolic DNA sensing pathway. This research clarifies how PmIRF interacts with PmSTING to trigger immune responses against pathogens.
Area of Science:
- * Invertebrate immunology
- * Molecular biology
- * Antiviral immunity
Background:
- * Interferon regulatory factors (IRFs) are crucial for antiviral immunity in vertebrates and invertebrates.
- * Black tiger shrimp (Penaeus monodon) possess IRFs involved in immune responses.
- * The precise mechanism of IRF-mediated immune gene regulation in shrimp requires further investigation.
Purpose of the Study:
- * To elucidate the regulatory mechanism of Penaeus monodon IRF (PmIRF) in immune gene expression.
- * To investigate the role of PmIRF in the cytosolic DNA sensing pathway.
- * To identify downstream immune-related genes regulated by PmIRF.
Main Methods:
- * Gene silencing using double-stranded RNA to deplete PmIRF in shrimp.
- * Reporter gene assays in HEK293T cells to assess promoter activity.
- * Co-immunoprecipitation and subcellular localization studies to analyze protein interactions and cellular distribution.
Main Results:
- * PmIRF depletion reduced mRNA levels of PmVago1, PmVago4, PmVago5, and ALF_Pm6.
- * Nucleic acid mimics [poly(dA:dT) and poly(I:C)] enhanced promoter activity of IFN-β, NF-κB, and ALF_Pm6, and induced PmSTING, PmIRF, and ALF_Pm6 expression.
- * PmIRF interacted with PmSTING upon poly(dA:dT) stimulation; PmIRF and PmDDX41 translocated to the nucleus, while PmSTING remained in the cytoplasm.
Conclusions:
- * PmIRF plays a key role in antiviral immunity in shrimp.
- * The PmDDX41-PmSTING pathway is involved in sensing cytosolic DNA.
- * PmIRF acts as a crucial signal transducer in this pathway, inducing interferon-like molecules and antimicrobial peptides.
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