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TRIM 蛋白的起源与进化:来自斑马鱼和河豚完整 TRIM 蛋白组的新见解。

Origin and evolution of TRIM proteins: new insights from the complete TRIM repertoire of zebrafish and pufferfish.

机构信息

Virologie et Immunologie Moléculaires, Institut National de la Recherche Agronomique, Jouy-en-Josas, France.

出版信息

PLoS One. 2011;6(7):e22022. doi: 10.1371/journal.pone.0022022. Epub 2011 Jul 15.

Abstract

Tripartite motif proteins (TRIM) constitute a large family of proteins containing a RING-Bbox-Coiled Coil motif followed by different C-terminal domains. Involved in ubiquitination, TRIM proteins participate in many cellular processes including antiviral immunity. The TRIM family is ancient and has been greatly diversified in vertebrates and especially in fish. We analyzed the complete sets of trim genes of the large zebrafish genome and of the compact pufferfish genome. Both contain three large multigene subsets--adding the hsl5/trim35-like genes (hltr) to the ftr and the btr that we previously described--all containing a B30.2 domain that evolved under positive selection. These subsets are conserved among teleosts. By contrast, most human trim genes of the other classes have only one or two orthologues in fish. Loss or gain of C-terminal exons generated proteins with different domain organizations; either by the deletion of the ancestral domain or, remarkably, by the acquisition of a new C-terminal domain. Our survey of fish trim genes in fish identifies subsets with different evolutionary dynamics. trims encoding RBCC-B30.2 proteins show the same evolutionary trends in fish and tetrapods: they evolve fast, often under positive selection, and they duplicate to create multigenic families. We could identify new combinations of domains, which epitomize how new trim classes appear by domain insertion or exon shuffling. Notably, we found that a cyclophilin-A domain replaces the B30.2 domain of a zebrafish fintrim gene, as reported in the macaque and owl monkey antiretroviral TRIM5α. Finally, trim genes encoding RBCC-B30.2 proteins are preferentially located in the vicinity of MHC or MHC gene paralogues, which suggests that such trim genes may have been part of the ancestral MHC.

摘要

三基序蛋白(TRIM)构成了一个包含 RING-Bbox-卷曲螺旋基序的大型蛋白家族,其后是不同的 C 末端结构域。TRIM 蛋白参与泛素化,参与包括抗病毒免疫在内的许多细胞过程。TRIM 家族是古老的,在脊椎动物中,特别是在鱼类中,已经有了很大的多样化。我们分析了大型斑马鱼基因组和紧凑型河豚基因组的整套 trim 基因。这两个基因组都包含三个大型多基因亚群--在我们之前描述的 ftr 和 btr 中添加了 hsl5/trim35 样基因(hltr)--所有这些基因都含有一个在正选择下进化的 B30.2 结构域。这些亚群在硬骨鱼类中是保守的。相比之下,其他几类人类 trim 基因在鱼类中只有一个或两个直系同源物。C 末端外显子的缺失或获得产生了具有不同结构域组织的蛋白质;或者通过删除祖先结构域,或者显著地,通过获得新的 C 末端结构域。我们对鱼类 trim 基因的调查确定了具有不同进化动态的亚群。编码 RBCC-B30.2 蛋白的 trims 在鱼类和四足动物中表现出相同的进化趋势:它们进化迅速,经常受到正选择的影响,并通过复制产生多基因家族。我们可以识别出不同的结构域组合,这些组合概括了新的 trim 类如何通过结构域插入或外显子改组出现。值得注意的是,我们发现一种亲环蛋白 A 结构域取代了斑马鱼 fintrim 基因的 B30.2 结构域,正如在猕猴和猫头鹰猴抗逆转录病毒 TRIM5α 中报道的那样。最后,编码 RBCC-B30.2 蛋白的 trim 基因优先位于 MHC 或 MHC 基因旁系同源物附近,这表明这些 trim 基因可能是祖先 MHC 的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41ce/3137616/dcabd3032cf4/pone.0022022.g001.jpg

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