全基因组测序揭示了对戊型肝炎病毒基因组多样性和慢性戊型肝炎中病毒区隔的深入了解。

IF 4 3区 医学 Q2 VIROLOGY Journal of Clinical Virology Pub Date : 2023-09-12 DOI:10.1016/j.jcv.2023.105583
Julia Melchert , Helena Radbruch , Leif G. Hanitsch , Sally A. Baylis , Jörn Beheim-Schwarzbach , Tobias Bleicker , Jörg Hofmann , Terry C. Jones , Christian Drosten , Victor M. Corman
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引用次数: 0

摘要

背景:戊型肝炎病毒(HEV)是急性肝炎的主要病因,可引起免疫功能低下患者的慢性感染。尽管HEV感染可以用利巴韦林治疗,但抗病毒效果受到耐药性突变的阻碍,通常通过病毒测序检测。目的:高通量测序(HTS)可以实现具有成本效益的完整病毒基因组测序。这使得能够发现和描绘新的亚型,并修正了对准物种和推定抗性突变的识别。然而,HTS受到包括低病毒载量、样品降解、高宿主背景和高病毒多样性在内的因素的挑战。研究设计:我们应用HEV的全基因组测序策略,包括靶向富集方法。这些方法用于研究HEV RNA阳性动物和人类样本的序列多样性以及慢性感染患者的宿主内多样性。结果:在这里,我们描述了献血(基因型3)和古代牲畜样本(基因型7)中潜在新亚型的鉴定。在一名慢性感染患者中,我们成功地研究了宿主内病毒的多样性,包括利巴韦林耐药性突变的存在。此外,我们在该患者身上发现了包括中枢神经系统在内的HEV分区的令人信服的证据。结论:靶向富集病毒序列能够从各种困难的样本材料中产生完整的基因组序列。此外,它能够生成更大的序列覆盖范围,从而进行更高级的分析。这是更好地了解病毒多样性的关键。在少数群体或分区的背景下,对现有利巴韦林耐药性的调查可能对HEV患者的治疗策略至关重要。
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Whole genome sequencing reveals insights into hepatitis E virus genome diversity, and virus compartmentalization in chronic hepatitis E

Background

Hepatitis E virus (HEV) is a leading cause of acute hepatitis and can cause chronic infections in immunocompromised patients. Although HEV infections can be treated with ribavirin, antiviral efficacy is hampered by resistance mutations, normally detected by virus sequencing.

Objectives

High-throughput sequencing (HTS) allows for cost-effective complete viral genome sequencing. This enables the discovery and delineation of new subtypes, and revised the recognition of quasispecies and putative resistance mutations. However, HTS is challenged by factors including low viral load, sample degradation, high host background, and high viral diversity.

Study design

We apply complete genome sequencing strategies for HEV, including a targeted enrichment approach. These approaches were used to investigate sequence diversity in HEV RNA-positive animal and human samples and intra-host diversity in a chronically infected patient.

Results

Here, we describe the identification of potential novel subtypes in a blood donation (genotype 3) and in an ancient livestock sample (genotype 7). In a chronically infected patient, we successfully investigated intra-host virus diversity, including the presence of ribavirin resistance mutations. Furthermore, we found convincing evidence for HEV compartmentalization, including the central nervous system, in this patient.

Conclusions

Targeted enrichment of viral sequences enables the generation of complete genome sequences from a variety of difficult sample materials. Moreover, it enables the generation of greater sequence coverage allowing more advanced analyses. This is key for a better understanding of virus diversity. Investigation of existing ribavirin resistance, in the context of minorities or compartmentalization, may be critical in treatment strategies of HEV patients.

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来源期刊
Journal of Clinical Virology
Journal of Clinical Virology 医学-病毒学
CiteScore
22.70
自引率
1.10%
发文量
149
审稿时长
24 days
期刊介绍: The Journal of Clinical Virology, an esteemed international publication, serves as the official journal for both the Pan American Society for Clinical Virology and The European Society for Clinical Virology. Dedicated to advancing the understanding of human virology in clinical settings, the Journal of Clinical Virology focuses on disseminating research papers and reviews pertaining to the clinical aspects of virology. Its scope encompasses articles discussing diagnostic methodologies and virus-induced clinical conditions, with an emphasis on practicality and relevance to clinical practice. The journal publishes on topics that include: • new diagnostic technologies • nucleic acid amplification and serologic testing • targeted and metagenomic next-generation sequencing • emerging pandemic viral threats • respiratory viruses • transplant viruses • chronic viral infections • cancer-associated viruses • gastrointestinal viruses • central nervous system viruses • one health (excludes animal health)
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