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Interleukins and Interleukin Receptors Evolutionary History and Origin in Relation to CD4+ T Cell Evolution

机译:白细胞介素和白细胞介素受体进化史与CD4 + T细胞演化相关

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摘要

Understanding the evolution of interleukins and interleukin receptors is essential to control the function of CD4+ T cells in various pathologies. Numerous aspects of CD4+ T cells’ presence are controlled by interleukins including differentiation, proliferation, and plasticity. CD4+ T cells have emerged during the divergence of jawed vertebrates. However, little is known about the evolution of interleukins and their origin. We traced the evolution of interleukins and their receptors from Placozoa to primates. We performed phylogenetic analysis, ancestral reconstruction, HH search, and positive selection analysis. Our results indicated that various interleukins’ emergence predated CD4+ T cells divergence. IL14 was the most ancient interleukin with homologs in fungi. Invertebrates also expressed various interleukins such as IL41 and IL16. Several interleukin receptors also appeared before CD4+ T cells divergence. Interestingly IL17RA and IL17RD, which are known to play a fundamental role in Th17 CD4+ T cells first appeared in mollusks. Furthermore, our investigations showed that there is not any single gene family that could be the parent group of interleukins. We postulate that several groups have diverged from older existing cytokines such as IL4 from TGFβ, IL10 from IFN, and IL28 from BCAM. Interleukin receptors were less divergent than interleukins. We found that IL1R, IL7R might have diverged from a common invertebrate protein that contained TIR domains, conversely, IL2R, IL4R and IL6R might have emerged from a common invertebrate ancestor that possessed a fibronectin domain. IL8R seems to be a GPCR that belongs to the rhodopsin-like family and it has diverged from the Somatostatin group. Interestingly, several interleukins that are known to perform a critical function for CD4+ T cells such as IL6, IL17, and IL1B have gained new functions and evolved under positive selection. Overall evolution of interleukin receptors was not under significant positive selection. Interestingly, eight interleukin families appeared in lampreys, however, only two of them (IL17B, IL17E) evolved under positive selection. This observation indicates that although lampreys have a unique adaptive immune system that lacks CD4+ T cells, they could be utilizing interleukins in homologous mode to that of the vertebrates’ immune system. Overall our study highlights the evolutionary heterogeneity within the interleukins and their receptor superfamilies and thus does not support the theory that interleukins evolved solely in jawed vertebrates to support T cell function. Conversely, some of the members are likely to play conserved functions in the innate immune system.
机译:了解白细胞介素和白细胞介素受体的演变对于控制各种病理学中CD4 + T细胞的功能至关重要。 CD4 + T细胞存在的许多方面由白细胞介介素控制,包括分化,增殖和可塑性。在下颚脊椎动物的分歧期间出现了CD4 + T细胞。然而,关于白细胞介素的演变和它们的起源很少。我们追溯了白细胞介素及其受体从菠萝唑到灵长类动物的演变。我们进行了系统发育分析,祖先重建,HH搜索和阳性选择分析。我们的结果表明,各种白细胞介素的出苗捕食了CD4 + T细胞分歧。 IL14是真菌中最古老的白细胞介素。无脊椎动物还表达了各种白细胞介素,例如IL41和IL16。在CD4 + T细胞分歧之前,几种白细胞介素受体也出现。有趣的是,已知在Th17 CD4 + T细胞中发挥基本作用的IL17RA和IL17RD首先出现在软体动物中。此外,我们的研究表明,没有任何单一基因家族,可以是白细胞介素的母体组。我们假设几组从来自IFN的TGFβ,IL10的较旧的现有细胞因子分歧,来自IFN的IL4,以及来自BCAM的IL28。白细胞介素受体比白细胞介素的发散较少。我们发现IL1R,IL7R可能已经从含有TIR结构域的常见无脊椎动物蛋白分散,相反,IL2R,IL4R和IL6R可能已经从具有纤连蛋白域的常见的无脊椎动物祖先出现。 IL8R似乎是属于罗地素的家族的GPCR,它已从生长抑制菌素组分歧。有趣的是,几种已知对CD4 + T细胞进行关键函数的几种白细胞介素,例如IL6,IL17和IL1B已经获得了新的功能并在阳性选择下进化。白细胞介素受体的总体演变不是在显着的阳性选择下。有趣的是,八个白细胞介素家族出现在Lampreys中,但是,其中只有两个(IL17B,IL17E)在阳性选择下进化。该观察结果表明,虽然Lampreys具有独特的自适应免疫系统,但缺乏CD4 + T细胞,它们可以利用同源模式中的白细胞介素对脊椎动物的免疫系统。总体而言,我们的研究突出了白细胞介素内的进化异质性及其受体超级绒毛,因此不支持白细胞介素的理论,即间白细胞介素完全在下颚脊椎动物中进化以支持T细胞功能。相反,一些成员可能会在先天免疫系统中发挥保守功能。

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