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Porcine Interferon Complex and Co-Evolution with Increasing Viral Pressure after Domestication

机译:猪干扰素复合物与驯化后病毒进化共同进化

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摘要

Consisting of nearly 60 functional genes, porcine interferon (IFN)-complex represents an evolutionary surge of IFN evolution in domestic ungulate species. To compare with humans and mice, each of these species contains about 20 IFN functional genes, which are better characterized using the conventional IFN-α/β subtypes as examples. Porcine IFN-complex thus represents an optimal model for studying IFN evolution that resulted from increasing viral pressure during domestication and industrialization. We hypothesize and justify that porcine IFN-complex may extend its functionality in antiviral and immunomodulatory activity due to its superior molecular diversity. Furthermore, these unconventional IFNs could even confer some functional and signaling novelty beyond that of the well-studied IFN-α/β subtypes. Investigations into porcine IFN-complex will further our understanding of IFN biology and promote IFN-based therapeutic designs to confront swine viral diseases.
机译:猪干扰素(IFN)复合物由近60个功能基因组成,代表了有蹄类动物中IFN进化的进化高峰。为了与人类和小鼠进行比较,这些物种中的每一个都包含约20个IFN功能基因,使用常规IFN-α/β亚型作为实例可以更好地表征它们。因此,猪的IFN复合物代表了研究驯化和工业化过程中病毒压力升高导致的IFN进化的最佳模型。我们假设并证明猪IFN复合物可能由于其优越的分子多样性而扩展了其在抗病毒和免疫调节活性中的功能。此外,这些非常规的IFN甚至可以赋予功能和信号新颖性,而已被广泛研究的IFN-α/β亚型除外。对猪IFN复合物的研究将进一步加深我们对IFN生物学的理解,并促进基于IFN的治疗设计来应对猪病毒性疾病。

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