Shared and unique patterns of autonomous human endogenous retrovirus loci transcriptomes in CD14 + monocytes from individuals with physical trauma or infection with COVID-19.

IF 2.7 3区 医学 Q3 VIROLOGY
Hyunmin Koo, Casey D Morrow
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引用次数: 0

Abstract

Since previous studies have suggested that the RNAs of human endogenous retrovirus (HERV) might be involved in regulating innate immunity, it is important to investigate the HERV transcriptome patterns in innate immune cell types such as CD14 + monocytes. Using single cell RNA-seq datasets from resting or stimulated PBMCs mapped to 3,220 known discrete autonomous proviral HERV loci, we found individual-specific variation in HERV transcriptomes between HERV loci in CD14 + monocytes. Analysis of paired datasets from the same individual that were cultured in vitro with LPS or without (i.e. control) revealed 36 HERV loci in CD14 + monocytes that were detected only after activation. To extend our analysis to in vivo activated CD14 + monocytes, we used two scRNA-seq datasets from studies that had demonstrated activation of circulating CD14 + monocytes in patients with physical trauma or patients hospitalized with COVID-19 infections. For direct comparison between the trauma and COVID-19 datasets, we first analyzed 1.625 billion sequence reads from a composite pangenome control of 21 normal individuals. Comparison of the sequence read depth of HERV loci in the trauma or COVID-19 samples to the pangenome control revealed that 39 loci in the COVID-19 and 11 HERV loci in the trauma samples were significantly different (Mann-Whitney U test), with 9 HERV loci shared between the COVID-19 and trauma datasets. The capacity to compare HERV loci transcriptome patterns in innate immune cells, like CD14 + monocytes, across different pathological conditions will lead to greater understanding of the physiological role of HERV expression in health and disease.

身体创伤或感染 COVID-19 的 CD14 + 单核细胞中自主人类内源性逆转录病毒基因座转录组的共享和独特模式。
由于之前的研究表明人类内源性逆转录病毒(HERV)的 RNA 可能参与调节先天性免疫,因此研究 CD14 + 单核细胞等先天性免疫细胞类型的 HERV 转录组模式非常重要。利用映射到 3220 个已知离散自主前病毒 HERV 位点的静息或受刺激 PBMC 单细胞 RNA-seq 数据集,我们发现了 CD14 + 单核细胞中不同 HERV 位点间 HERV 转录组的个体特异性差异。对同一个体体外培养 LPS 或不培养 LPS(即对照)的配对数据集进行分析,发现 CD14 + 单核细胞中有 36 个 HERV 位点仅在活化后才被检测到。为了将我们的分析扩展到体内活化的 CD14 + 单核细胞,我们使用了两个 scRNA-seq 数据集,这两个数据集来自于已证实身体创伤患者或 COVID-19 感染住院患者循环 CD14 + 单核细胞活化的研究。为了直接比较外伤数据集和 COVID-19 数据集,我们首先分析了来自 21 个正常人的综合泛基因组对照的 16.25 亿个序列读数。将创伤或 COVID-19 样本中 HERV 位点的序列读数深度与 pangenome 对照进行比较后发现,COVID-19 样本中有 39 个 HERV 位点与创伤样本中有 11 个 HERV 位点存在显著差异(Mann-Whitney U 检验),而 COVID-19 和创伤数据集中有 9 个 HERV 位点是共享的。比较不同病理条件下先天性免疫细胞(如 CD14 + 单核细胞)中 HERV 基因位点转录组模式的能力将有助于进一步了解 HERV 表达在健康和疾病中的生理作用。
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来源期刊
Retrovirology
Retrovirology 医学-病毒学
CiteScore
5.80
自引率
3.00%
发文量
24
审稿时长
>0 weeks
期刊介绍: Retrovirology is an open access, online journal that publishes stringently peer-reviewed, high-impact articles on host-pathogen interactions, fundamental mechanisms of replication, immune defenses, animal models, and clinical science relating to retroviruses. Retroviruses are pleiotropically found in animals. Well-described examples include avian, murine and primate retroviruses. Two human retroviruses are especially important pathogens. These are the human immunodeficiency virus, HIV, and the human T-cell leukemia virus, HTLV. HIV causes AIDS while HTLV-1 is the etiological agent for adult T-cell leukemia and HTLV-1-associated myelopathy/tropical spastic paraparesis. Retrovirology aims to cover comprehensively all aspects of human and animal retrovirus research.
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