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The Peptidyl-prolyl cis-trans isomerase A (Cyclophilin A)–Interferon regulatory factor 9 (IRF9) interface is a critical protein-protein interaction (PPI) that regulates the innate immune response, specifically the Type I and Type III interferon (IFN) signaling pathways. Peptidyl-prolyl cis-trans isomerase A, commonly known as Cyclophilin A, acts as a molecular chaperone that binds to Interferon regulatory factor 9 to facilitate its stability and promote its translocation into the nucleus upon IFN stimulation (Sun et al., 2014, Journal of Virology). Within the nucleus, Interferon regulatory factor 9 is a vital component of the ISGF3 complex, which drives the transcription of interferon-stimulated genes (ISGs) necessary for an effective antiviral response (UniProt P62937, Q00610). While Peptidyl-prolyl cis-trans isomerase A is frequently hijacked by viruses such as Hepatitis C (HCV) and HIV-1 to assist in their replication cycles, its interaction with Interferon regulatory factor 9 is a key component of the host's own defense mechanism (PubMed 24501000). Drugs that target Peptidyl-prolyl cis-trans isomerase A, such as the immunosuppressant Cyclosporine A and non-immunosuppressive analogs like Alisporivir, disrupt this interface, thereby modulating the cellular antiviral state and IFN-mediated gene expression (NIH/PubChem). Targeting this specific PPI is of therapeutic interest for treating chronic viral infections and autoimmune conditions where interferon signaling is pathologically elevated.
Inhibition of the protein-protein interaction between Peptidyl-prolyl cis-trans isomerase A and Interferon regulatory factor 9, which prevents the nuclear translocation of the ISGF3 transcription factor complex and reduces the induction of interferon-stimulated genes.
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