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Evolution and function of chemokine receptors in the immune system of lower vertebrates

机译:趋化因子受体的进化和功能较低的脊椎动物的免疫系统

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摘要

Chemokine receptors and their counterpart ligands are one of the evolutionary innovations of vertebrates. They play a guiding role in the coordination of cell trafficking in many biological processes. Comparative syntenic and phylogenetic analyses provide insight into the evolution of chemokine receptors and suggest that the repertoire of chemokine receptors varies in each species, regardless of the evolutionary position of the species. Despite the rapid evolution of chemokine receptors, the expression and function of orthologous chemokine receptors in lower and higher vertebrates are very similar. This is also true for the chemokine ligands that have been examined so far, such as CXCL8, CXCL12, and CCL25. As examples, this review will discuss how the evolution of the chemokine receptor CXCR4 is coincident with the emergence of lymphocytes in jawless vertebrates (lamprey); and that, in jawed vertebrates, CXCR4 and CCR9 are involved in thymus colonization. In myeloid cells, the function of CXCR1 in neutrophils and the expression of CXCR3 in macrophages and DCs are evolutionarily conserved between fish and mammals. In this context, medaka and zebrafish are outstanding models for studying the function of chemokines and their receptors.
机译:趋化因子受体及其配体的一个进化创新吗脊椎动物。协调细胞贩卖许多生物过程。系统发育分析提供洞察趋化因子受体的进化和建议趋化因子受体不同的曲目每一个物种,无论进化物种的位置。趋化因子受体的进化,表达式和功能的同源趋化因子受体在较低和较高的脊椎动物非常相似。这也是真正的趋化因子配体已经检查了到目前为止,如CXCL8 CXCL12,和CCL25。趋化因子受体CXCR4的发展如何和淋巴细胞的出现是一致的吗在无颌脊椎动物(七鳃鳗);喋喋不休的脊椎动物,趋化因子受体CXCR4和CCR9参与胸腺殖民。在中性粒细胞CXCR1和的函数表达CXCR3的巨噬细胞和DCs鱼和之间的进化哺乳动物。优秀的模型为研究是函数吗趋化因子及其受体。

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