Genetic diversity and worldwide distribution of the deltavirus genus: A study of 2,152 clinical strains

基因组 生物 系统发育树 遗传学 基因型 丁型肝炎病毒 基因 全基因组测序 核苷酸 核酸序列 克莱德 病毒学 乙型肝炎病毒 病毒 乙型肝炎表面抗原
作者
Frédéric Le Gal,Ségolène Brichler,Tudor Drugan,Chakib Alloui,Dominique Roulot,Jean–Michel Pawlotsky,Paul Dény,Emmanuel Gordien
出处
期刊:Hepatology [Wiley]
卷期号:66 (6): 1826-1841 被引量:99
标识
DOI:10.1002/hep.29574
摘要

Hepatitis delta virus (HDV) is responsible for the most severe form of acute and chronic viral hepatitis. We previously proposed that the Deltavirus genus is composed of eight major clades. However, few sequences were available to confirm this classification. Moreover, little is known about the structural and functional consequences of HDV variability. One practical consequence is the failure of most quantification assays to properly detect or quantify plasmatic HDV RNA. Between 2001 and 2014, 2,152 HDV strains were prospectively collected and genotyped in our reference laboratory by means of nucleotide sequencing and extensive phylogenetic analyses of a 400‐nucleotide region of the genome ( R0 ) from nucleotides 889 to 1289 encompassing the 3′ end of the delta protein–coding gene. In addition, the full‐length genome sequence was generated for 116 strains selected from the different clusters, allowing for in‐depth characterization of the HDV genotypes and subgenotypes. This study confirms that the HDV genus is composed of eight genotypes (HDV‐1 to HDV‐8) defined by an intergenotype similarity >85% or >80%, according to the partial or full‐length genome sequence, respectively. Furthermore, genotypes can be segregated into two to four subgenotypes, characterized by an intersubgenotype similarity >90% (>84% for HDV‐1) over the whole genome sequence. Systematic analysis of genome and protein sequences revealed highly conserved functional nucleotide and amino acid motifs and positions across all (sub)genotypes, indicating strong conservatory constraints on the structure and function of the genome and the protein. Conclusion: This study provides insight into the genetic diversity of HDV and a clear view of its geographical localization and allows speculation as to the worldwide spread of the virus, very likely from an initial African origin. (H epatology 2017;66:1826–1841)
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