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Evolution of CC chemokines in teleost fish: a case study in gene duplication and implications for immune diversity.

机译:硬骨鱼类中CC趋化因子的进化:基因复制及其对免疫多样性的影响的案例研究。

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摘要

Chemokines are a superfamily of cytokines responsible for regulating cell migration under both inflammatory and physiological conditions. CC chemokines are the largest subfamily of chemokines, with 28 members in humans. A subject of intense study in mammalian species, the known functional roles of CC chemokines ligands in both developmental and disease conditions continue to expand. They are also an important family for the study of gene copy number variation and tandem duplication in mammalian species. However, little is known regarding the evolutionary origin and status of these ligands in primitive vertebrates such as teleost fish. In this paper, we review the evolution of the teleost fish CC chemokine gene family, noting evidence of widespread tandem gene duplications and examining the implications of this phenomenon on immune diversity. Through extensive phylogenetic analysis of the CC chemokine sets of four teleost species, zebrafish, catfish, rainbow trout, and Atlantic salmon, we identified seven large groups of CC chemokines. It appeared that several major groups of CC chemokines are highly related including the CCL19/21/25 group, the CCL20 group, CCL27/28 group, and the fish-specific group. In the three remaining groups that contained the largest number of members, the CCL17/22 group, the MIP group, and the MCP group, similarities among species members were obscured by rapid, tandem duplications that may contribute to immune diversity.
机译:趋化因子是负责在炎症和生理条件下调节细胞迁移的细胞因子超家族。 CC趋化因子是趋化因子的最大亚家族,在人类中有28个成员。作为对哺乳动物物种的深入研究的课题,CC趋化因子配体在发育和疾病条件下的已知功能作用不断扩大。它们也是研究哺乳动物物种中基因拷贝数变异和串联复制的重要家族。但是,关于这些配体在原始脊椎动物如硬骨鱼中的进化起源和地位了解甚少。在本文中,我们回顾了硬骨鱼CC趋化因子基因家族的进化,注意到广泛的串联基因重复的证据,并研究了这种现象对免疫多样性的影响。通过对四种硬骨鱼类,斑马鱼,cat鱼,虹鳟鱼和大西洋鲑鱼的CC趋化因子集进行广泛的系统发育分析,我们确定了7个大型CC趋化因子组。似乎有几个主要的CC趋化因子组高度相关,包括CCL19 / 21/25组,CCL20组,CCL27 / 28组和鱼类特异性组。在剩下的成员数量最多的三个组(CCL17 / 22组,MIP组和MCP组)中,物种成员之间的相似性被快速串联复制(可能有助于免疫多样性)所掩盖。

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