Department of Biomedical Sciences for Health, University of Milan, via Carlo Pascal, 36, 20133 Milan, Italy.
Department of Biology, Memorial University of Newfoundland, 232 Elizabeth Ave., St. John's, NL A1B 3X9, Canada.
Infect Genet Evol. 2019 Nov;75:103943. doi: 10.1016/j.meegid.2019.103943. Epub 2019 Jun 28.
Sequencing the whole measles virus hemagglutinin (H) gene, in conjunction with a 450-nucleotide region of the nucleoprotein gene (N-450), is helpful for the identification of new genotypes and as an auxiliary in outbreak characterization. In addition, it is essential to be able to predict the antigenic changes of the H protein to gain a better monitoring of the response to the vaccine. In this study, we obtained the full-length H gene sequences from 19 measles virus (MV) strains belonging to two B3 genotype variants circulating in Lombardy (Northern Italy) between July 2015 and February 2016 and evaluated the variability of the whole MV-H gene. Furthermore, we compared the obtained H amino acid sequences to all MV sequences available in the GenBank database (n = 1152 in total) and analyzed the amino acid substitutions in the H protein within clades where the Italian strains were included. We identified a higher variability in the H gene compared to the N-450 region and our results support previous studies, highlighting that the H gene is more informative for characterizing the MV B3 genotype than the N-450 sequence. Some of the amino acid substitutions were fixed in the viral population and, remarkably, some of the amino acid substitutions were typically present only in the Italian sequences. Accumulating further molecular information about MV-H gene will be necessary to enable in-depth analyses of the variability of this gene in the vaccinated population.
对麻疹病毒血凝素(H)基因全长进行测序,并结合核蛋白基因(N-450)的 450 个核苷酸区域,有助于识别新的基因型,并辅助暴发特征描述。此外,预测 H 蛋白的抗原变化对于更好地监测疫苗反应至关重要。在本研究中,我们从 2015 年 7 月至 2016 年 2 月在意大利北部伦巴第地区流行的两种 B3 基因型变异体的 19 株麻疹病毒(MV)株中获得了全长 H 基因序列,并评估了整个 MV-H 基因的变异性。此外,我们将获得的 H 氨基酸序列与 GenBank 数据库中所有 MV 序列(总共 1152 个)进行了比较,并分析了意大利株所在分支内 H 蛋白中的氨基酸取代。与 N-450 区域相比,我们发现 H 基因的变异性更高,研究结果支持了先前的研究,突出表明 H 基因比 N-450 序列更能提供有关 B3 基因型 MV 的信息。一些氨基酸取代在病毒群体中固定下来,值得注意的是,一些氨基酸取代通常仅存在于意大利序列中。为了能够深入分析该基因在接种人群中的变异性,需要积累更多关于 MV-H 基因的分子信息。