viral quasispecies

病毒准种
  • 文章类型: Journal Article
    溶瘤病毒疗法是许多癌症的新兴治疗选择。目前正在临床试验中评估几个病毒家族。更具体地说,在几项早期临床试验中,疫苗株麻疹病毒已成为治疗不同肿瘤类型的有希望的候选者。复制病毒,尤其是没有校对聚合酶的RNA病毒,可以通过选择具有优势基因突变的准种来快速适应变化的环境。随后,这些基因改变可能会削弱病毒治疗的安全性.在这项研究中,我们证明,在生产者或癌细胞系中病毒复制的延长期之后,疫苗株来源的麻疹病毒的准种共有序列在整个非节段负链RNA基因组中产生的突变数量非常少.有趣的是,我们检测到基因组中遗传改变的非随机分布,从3'基因组开始到5'末端的突变频率总体下降。将连续传代的病毒与生产细胞上的亲本病毒进行比较,我们发现,获得性共有突变并没有显著改变病毒复制动力学或溶细胞效能.总的来说,我们的数据证实了溶瘤麻疹病毒的基因组稳定性和优异的安全性,从而支持其作为一种有前途的病毒免疫治疗的持续发展和临床翻译。
    Oncolytic virotherapy is an emerging treatment option for numerous cancers, with several virus families currently being evaluated in clinical trials. More specifically, vaccine-strain measles virus has arisen as a promising candidate for the treatment of different tumour types in several early clinical trials. Replicating viruses, and especially RNA viruses without proofreading polymerases, can rapidly adapt to varying environments by selecting quasispecies with advantageous genetic mutations. Subsequently, these genetic alterations could potentially weaken the safety profile of virotherapy. In this study, we demonstrate that, following an extended period of virus replication in producer or cancer cell lines, the quasispecies consensus sequence of vaccine strain-derived measles virus accrues a remarkably small number of mutations throughout the nonsegmented negative-stranded RNA genome. Interestingly, we detected a nonrandom distribution of genetic alterations within the genome, with an overall decreasing frequency of mutations from the 3\' genome start to its 5\' end. Comparing the serially passaged viruses to the parental virus on producer cells, we found that the acquired consensus mutations did not drastically change viral replication kinetics or cytolytic potency. Collectively, our data corroborate the genomic stability and excellent safety profile of oncolytic measles virus, thus supporting its continued development and clinical translation as a promising viro-immunotherapeutic.
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  • 文章类型: Journal Article
    病毒基因组的深度测序是研究RNA病毒复杂性的有力工具。然而,对于从未通过这种方法研究病毒准种的研究人员来说,下一代测序数据的分析可能具有挑战性.在这项工作中,我们提出了一个合适且负担得起的指南,以探索次共识变异性并从Illumina测序数据重建病毒准种。该指南包括完整的分析管道以及对软件和文件格式的用户友好描述。此外,我们通过分析一组不同变异程度的口蹄疫病毒(FMDV)评估了所提出工作流程的可行性.本指南介绍了通过这种方法分析FMDV和其他病毒的准种。
    Deep sequencing of viral genomes is a powerful tool to study RNA virus complexity. However, the analysis of next-generation sequencing data might be challenging for researchers who have never approached the study of viral quasispecies by this methodology. In this work we present a suitable and affordable guide to explore the sub-consensus variability and to reconstruct viral quasispecies from Illumina sequencing data. The guide includes a complete analysis pipeline along with user-friendly descriptions of software and file formats. In addition, we assessed the feasibility of the workflow proposed by analyzing a set of foot-and-mouth disease viruses (FMDV) with different degrees of variability. This guide introduces the analysis of quasispecies of FMDV and other viruses through this kind of approach.
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  • 文章类型: Journal Article
    在大多数真核生物中,小RNA(sRNA)分子,如miRNA,siRNA和piRNA调节基因表达并抑制转座子和病毒。AGO/PIWI家族蛋白根据大小对功能sRNA进行排序,5'-核苷酸和其他序列特征。在植物和一些动物中,病毒sRNAs极其多样,覆盖整个病毒基因组序列,通过病毒sRNA的深度测序和生物信息学分析,可以从头重建完整的病毒基因组。以前,我们已经开发了一个工具MISIS来查看和分析病毒和细胞基因组区域的sRNA图谱,产生多个sRNA。在这里,我们描述了MISIS的新版本,MISIS-2,它能够确定和可视化共有序列,并对任何选定大小和5'末端核苷酸身份的sRNA进行计数。此外,我们证明了MISIS-2用于鉴定参考序列每个位置的单核苷酸多态性(SNP)以及在进化的病毒准种中重建共有主基因组的实用性。MISIS-2是一个Java独立的程序。它与源代码一起在网站http://www上免费提供。fasteris.com/apps.
    In most eukaryotes, small RNA (sRNA) molecules such as miRNAs, siRNAs and piRNAs regulate gene expression and repress transposons and viruses. AGO/PIWI family proteins sort functional sRNAs based on size, 5\'-nucleotide and other sequence features. In plants and some animals, viral sRNAs are extremely diverse and cover the entire viral genome sequences, which allows for de novo reconstruction of a complete viral genome by deep sequencing and bioinformatics analysis of viral sRNAs. Previously, we have developed a tool MISIS to view and analyze sRNA maps of viruses and cellular genome regions which spawn multiple sRNAs. Here we describe a new release of MISIS, MISIS-2, which enables to determine and visualize a consensus sequence and count sRNAs of any chosen sizes and 5\'-terminal nucleotide identities. Furthermore we demonstrate the utility of MISIS-2 for identification of single nucleotide polymorphisms (SNPs) at each position of a reference sequence and reconstruction of a consensus master genome in evolving viral quasispecies. MISIS-2 is a Java standalone program. It is freely available along with the source code at the website http://www.fasteris.com/apps.
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