Bordi Licia, Caglioti Claudia, Garbuglia Anna Rosa, Lapa Daniele, Castilletti Concetta, Taibi Chiara, Capobianchi Maria Rosaria, Lalle Eleonora
Laboratory of Virology, National Institute for Infectious Diseases "L. Spallanzani," Rome, Italy.
Clinical Department, National Institute for Infectious Diseases "L. Spallanzani," Rome, Italy.
PLoS One. 2015 Feb 12;10(2):e0117397. doi: 10.1371/journal.pone.0117397. eCollection 2015.
Single-nucleotide polymorphism in IFNL3 gene (rs12979860) predicts spontaneous and therapy-induced HCV clearance. In a previous study from our group PBMC from patients with favourable rs12979860 genotype showed higher levels of IFNAR-1 mRNA. Recently, a dinucleotide polymorphism, ss469415590 (TT or ΔG), has been discovered in the region upstream IFNL3 gene, which is in high linkage disequilibrium with rs12979860. ss469415590[ΔG] is a frameshift variant that creates a novel gene, designed IFNL4, encoding the interferon-lambda 4 protein (IFNL4). The aim of the present study was to extend the analysis of IFNAR-1 mRNA levels to the ss469415590 variants. Our results highlight that the difference of IFNAR-1 mRNA levels between favourable and unfavourable genotype combinations, at both rs12979860 and ss469415590 loci, is stronger than that observed for single polymorphisms at each locus. These findings suggest may represent the biological basis for the observed association between IFNL3 CC and IFNL4 TT/TT genotypes and favourable outcome of either natural HCV infection (clearance vs chronic evolution) or IFN-based therapy.
IFNL3基因(rs12979860)中的单核苷酸多态性可预测丙型肝炎病毒(HCV)的自发清除和治疗诱导清除。在我们小组之前的一项研究中,rs12979860基因型良好的患者外周血单核细胞(PBMC)显示出较高水平的IFNAR-1 mRNA。最近,在IFNL3基因上游区域发现了一种二核苷酸多态性,即ss469415590(TT或ΔG),它与rs12979860处于高度连锁不平衡状态。ss469415590[ΔG]是一种移码变异,可产生一个新基因,命名为IFNL4,编码干扰素λ4蛋白(IFNL4)。本研究的目的是将对IFNAR-1 mRNA水平的分析扩展到ss469415590变异体。我们的结果突出表明,在rs12979860和ss469415590位点,有利和不利基因型组合之间的IFNAR-1 mRNA水平差异,比在每个位点观察到的单核苷酸多态性差异更强。这些发现表明,这可能代表了观察到的IFNL3 CC和IFNL4 TT/TT基因型与自然HCV感染(清除与慢性进展)或基于干扰素治疗的良好结果之间关联的生物学基础。