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偶蹄目动物中一个古老逆转录病毒基因的进化保守性。

Evolutionary conservation of an ancient retroviral gene in Artiodactyla.

作者信息

Simpson J'Zaria, Kozak Christine A, Boso Guney

机构信息

Laboratory of Molecular Microbiology, National Institute of Allergy and Infectious Diseases , Bethesda, Maryland, USA.

出版信息

J Virol. 2023 Sep 28;97(9):e0053523. doi: 10.1128/jvi.00535-23. Epub 2023 Sep 5.

Abstract

The genomes of mammals contain fingerprints of past infections by ancient retroviruses that invaded the germline of their ancestors. Most of these endogenous retroviruses (ERVs) contain only remnants of the original retrovirus; however, on rare occasions, ERV genes can be co-opted for a beneficial host function. While most studies of co-opted ERVs have focused on envelope genes, including the syncytins that function in placentation, there are examples of co-opted genes including one we recently discovered in simian primates. Here, we searched for other intact genes in non-primate mammalian lineages. We began by examining the genomes of extant camel species, which represent a basal lineage in the order Artiodactyla. This identified a gene with a large open reading frame (ORF) (>3,500 bp) in the same orthologous location in Artiodactyla species but that is absent in other mammals. Thus, this ERV was fixed in the common ancestor of all Artiodactyla at least 64 million years ago. The amino acid sequence of this gene, termed , contains recognizable matrix, capsid, nucleocapsid, and reverse transcriptase domains in ruminants, with an RNase H domain in camels and pigs. Phylogenetic analysis and structural prediction of its reverse transcriptase and RNase H domains groups with gammaretroviruses. Transcriptomic analysis shows expression in multiple tissues suggestive of a co-opted host function. These findings identify the oldest and largest ERV-derived gene with an intact ORF in mammals, an intriguing milestone in the co-evolution of mammals and retroviruses. IMPORTANCE Retroviruses are unique among viruses that infect animals as they integrate their reverse-transcribed double-stranded DNA into host chromosomes. When this happens in a germline cell, such as sperm, egg, or their precursors, the integrated retroviral copies can be passed on to the next generation as endogenous retroviruses (ERVs). On rare occasions, the genes of these ERVs can be domesticated by the host. In this study we used computational similarity searches to identify an ancient ERV with an intact viral gene in the genomes of camels that is also found in the same genomic location in other even-toed ungulates suggesting that it is at least 64 million years old. Broad tissue expression and predicted preservation of the reverse transcriptase fold of this protein suggest that it may be domesticated for a host function. This is the oldest known intact gene of an ancient retrovirus in mammals.

摘要

哺乳动物的基因组中含有古代逆转录病毒过去感染的印记,这些病毒曾侵入其祖先的种系。大多数这些内源性逆转录病毒(ERV)仅包含原始逆转录病毒的残余部分;然而,在极少数情况下,ERV基因可被宿主用于有益的功能。虽然大多数关于被征用的ERV的研究都集中在包膜基因上,包括在胎盘形成中起作用的合胞素,但也有被征用基因的例子,包括我们最近在猿猴灵长类动物中发现的一个。在这里,我们在非灵长类哺乳动物谱系中寻找其他完整的基因。我们首先检查了现存骆驼物种的基因组,骆驼代表偶蹄目动物中的一个基础谱系。这在偶蹄目动物物种的相同直系同源位置鉴定出一个具有大开放阅读框(ORF)(>3500 bp)的基因,但在其他哺乳动物中不存在。因此,这种ERV至少在6400万年前就固定在所有偶蹄目动物的共同祖先中。这个被称为 的基因的氨基酸序列在反刍动物中包含可识别的基质、衣壳、核衣壳和逆转录酶结构域,在骆驼和猪中有一个核糖核酸酶H结构域。对其逆转录酶和核糖核酸酶H结构域的系统发育分析和结构预测将 与γ逆转录病毒归为一组。转录组分析显示 在多个组织中表达,提示其具有被宿主征用的功能。这些发现确定了哺乳动物中最古老、最大的具有完整ORF的ERV衍生的 基因,这是哺乳动物和逆转录病毒共同进化中一个有趣的里程碑。重要性逆转录病毒在感染动物的病毒中是独特的,因为它们将逆转录的双链DNA整合到宿主染色体中。当这种情况发生在生殖细胞中,如精子、卵子或它们的前体时,整合的逆转录病毒拷贝可以作为内源性逆转录病毒(ERV)传递给下一代。在极少数情况下,这些ERV的基因可以被宿主驯化。在这项研究中,我们使用计算相似性搜索在骆驼基因组中鉴定出一个具有完整病毒 基因的古老ERV,在其他偶蹄目动物的相同基因组位置也发现了该基因,这表明它至少有6400万年的历史。该蛋白广泛的组织表达和预测的逆转录酶折叠结构的保留表明它可能被驯化为宿主功能。这是哺乳动物中已知最古老的完整的古代逆转录病毒 基因。

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