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Hubing, V.

Publications and source records attributed to Hubing, V..

2 recordsLinked to original sources

The Co-Evolution of Jawed Vertebrates and Interferon Regulatory Factor 5 Generates Unique Inflammation and Innate Immunity

The emergence of jaws in early vertebrates introduced a novel feeding apparatus and potent oral defenses but also increased the risk of physical injury and pathogen exposure. Innate immunity and inflammation constitute the bodys first line of defense against invading microbes and tissue damage, aiming to eliminate threats and restore internal homeostasis. Interferon regulatory factor 5 (IRF5) plays a critical role in orchestrating innate immunity and inflammation by regulating the transcription of genes that encode type I interferons (IFNs) and pro-inflammatory cytokines. Despite this, the evolution of IRF5 has remained poorly understood. We have identified the IRF5 and IRF6 genes in cartilaginous fish, including sharks. As cartilaginous fish represent one of the oldest surviving jawed vertebrate lineages, the presence of these genes suggests the genes have ancient origins potentially dating back hundreds of millions of years to early jawed vertebrates. Furthermore, our analysis shows that IRF5 has conserved nuclear export sequences and phosphorylation sites for activation throughout evolution from cartilaginous fish to humans, indicating these regulatory elements evolved early and have been maintained across jawed vertebrates. Additionally, the shift in subcellular localization of IRF5 from nucleus to cytosol, and of other interferon related IRFs, aligns with functional enhancements of IRFs in innate immunity and the emergence of IFNs across jawed vertebrates. This analysis implies that the evolution of jaws may have driven the emergence of new IRF members, the expansion of their functions, and the development of a unique inflammation and innate immune system.

immunology↗

The Primate-Specific Presence of Interferon Regulatory Factor-5 Pseudogene 1

Interferon regulatory factor 5 (IRF5) is a critical transcription factor, regulating the production of inflammatory cytokines and interferons. Dysregulation of IRF5 has been linked to various autoimmune and inflammatory diseases. Pseudogenes may exhibit gene regulatory functions in various mechanisms. In this study, we find the human IRF5 pseudogene 1 (IRF5P1) is a chimeric processed pseudogene containing sequences derived from multiple sources. Remarkably, IRF5P1 is specific to higher primates such as apes and humans. We propose that IRF5P1 may have originated through the ancient integration of a retroviral sequence containing IRF5 mRNA from other animals. Interestingly, IRF5P1 overlaps with another gene, triple QxxK/R motif containing (TRIQK), and the antisense strand of IRF5P1 is predominantly expressed, likely as part of the TRIQK pre-mRNA. The antisense IRF5P1 RNA may regulate IRF5 expression through complementary binding to the IRF5 mRNA, and variants in the IRF5 gene may modulate this interaction. Our analysis suggests that IRF5P1 likely had positive effects on primate evolution, making IRF5P1 a favored component to maintain in the primate lineage, and rendering the pseudogene primate specific. Further studies are essential to elucidate the potential for IRF5P1 to participate in regulatory networks governing IRF5 activity and inflammation and innate immunity.

immunology↗