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Cross-Kingdom Analysis of Diversity Evolutionary History and Site Selection within the Eukaryotic Macrophage Migration Inhibitory Factor Superfamily

机译:真核巨噬细胞迁移抑制因子超家族内的多样性进化史和位点选择的跨王国分析

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摘要

Macrophage migration inhibitory factors (MIF) are multifunctional proteins regulating major processes in mammals, including activation of innate immune responses. MIF proteins also play a role in innate immunity of invertebrate organisms or serve as virulence factors in parasitic organisms, raising the question of their evolutionary history. We performed a broad survey of MIF presence or absence and evolutionary relationships across 803 species of plants, fungi, protists, and animals, and explored a potential relation with the taxonomic status, the ecology, and the lifestyle of individual species. We show that MIF evolutionary history in eukaryotes is complex, involving probable ancestral duplications, multiple gene losses and recent clade-specific re-duplications. Intriguingly, MIFs seem to be essential and highly conserved with many sites under purifying selection in some kingdoms (e.g., plants), while in other kingdoms they appear more dispensable (e.g., in fungi) or present in several diverged variants (e.g., insects, nematodes), suggesting potential neofunctionalizations within the protein superfamily.
机译:巨噬细胞迁移抑制因子(MIF)是调节哺乳动物主要过程(包括激活先天免疫应答)的多功能蛋白。 MIF蛋白还在无脊椎动物的先天免疫中发挥作用,或在寄生生物中用作毒力因子,这引发了其进化史的问题。我们对803种植物,真菌,原生生物和动物之间是否存在MIF以及进化关系进行了广泛的调查,并探讨了其与生物分类状况,生态学和单个物种的生活方式之间的潜在关系。我们显示真核生物中的MIF进化历史是复杂的,涉及可能的祖先重复,多个基因丢失和最近进化枝特定的重复。有趣的是,MIF在某些国家(例如植物)的纯化选择中似乎必不可少且高度保守,而在其他国家(地区),MIF似乎更可有可无(例如在真菌中)或存在多种变异(例如昆虫,线虫),提示该蛋白超家族中可能存在新功能。

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