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Viral MicroRNAs Encoded by Nucleocapsid Gene of SARS-CoV-2 Are Detected during Infection and Targeting Metabolic Pathways in Host Cells

机译:在感染期间检测由SARS-COV-2的核衣壳基因编码的病毒微小RNA并靶向宿主细胞中的代谢途径

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摘要

MicroRNAs (miRNAs) are critical regulators of gene expression that may be used to identify the pathological pathways influenced by disease and cellular interactions. Viral miRNAs (v-miRNAs) encoded by both DNA and RNA viruses induce immune dysregulation, virus production, and disease pathogenesis. Given the absence of effective treatment and the prevalence of highly infective SARS-CoV-2 strains, improved understanding of viral-associated miRNAs could provide novel mechanistic insights into the pathogenesis of COVID-19. In this study, SARS-CoV-2 v-miRNAs were identified by deep sequencing in infected Calu-3 and Vero E6 cell lines. Among the ~0.1% small RNA sequences mapped to the SARS-CoV-2 genome, the top ten SARS-CoV-2 v-miRNAs (including three encoded by the N gene; v-miRNA-N) were selected. After initial screening of conserved v-miRNA-N-28612, which was identified in both SARS-CoV and SARS-CoV-2, its expression was shown to be positively associated with viral load in COVID-19 patients. Further in silico analysis and synthetic-mimic transfection of validated SARS-CoV-2 v-miRNAs revealed novel functional targets and associations with mechanisms of cellular metabolism and biosynthesis. Our findings support the development of v-miRNA-based biomarkers and therapeutic strategies based on improved understanding of the pathophysiology of COVID-19.
机译:MicroRNA(miRNA)是基因表达的关键调节因子,可用于鉴定受疾病和细胞相互作用影响的病理途径。由DNA和RNA病毒编码的病毒miRNA(V-miRNA)诱导免疫失调,病毒生产和疾病发病机制。鉴于缺乏有效的治疗和高感染性SARS-COV-2菌株的患病率,改善了对病毒相关的miRNA的理解可以为Covid-19的发病机制提供新的机制见解。在该研究中,通过在感染的Calu-3和Vero E6细胞系中进行深度测序来鉴定SARS-COV-2 V-miRNA。在映射到SARS-COV-2基因组的〜0.1%的小RNA序列中,选择了前十个SARS-COV-2 V-miRNA(包括由N基因编码的三种; V-MiRNA-N)。在初始筛选保守的V-miRNA-28612之后,在SARS-COV和SARS-COV-2中鉴定,其表达显示出与Covid-19患者中的病毒载量正相关。此外,在硅分析和验证的SARS-COV-2 V-miRNA的合成模拟转染揭示了具有细胞代谢和生物合成机制的新型功能靶标和关联。我们的调查结果支持基于对Covid-19病理生理学的改进了解的基于V-MiRNA的生物标志物和治疗策略的发展。

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