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Complete genome sequence analysis of candidate human rotavirus vaccine strains RV3 and 116E.

机译:候选人轮状病毒疫苗株RV3和116E的完整基因组序列分析。

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摘要

Rotaviruses (RVs) cause severe gastroenteritis in infants and young children; yet, several strains have been isolated from newborns showing no signs of clinical illness. Two of these neonatal strains, RV3 (G3P[6]) and 116E (G9P[11]), are currently being developed as live-attenuated vaccines. In this study, we sequenced the eleven-segmented double-stranded RNA genomes of cell culture-adapted RV3 and 116E and compared their genes and protein products to those of other RVs. Using amino acid alignments and structural predictions, we identified residues of RV3 or 116E that may contribute to attenuation or influence vaccine efficacy. We also discovered residues of the VP4 attachment protein that correlate with the capacity of some P[6] strains, including RV3, to infect newborns versus older infants. The results of this study enhance our understanding of the molecular determinants of RV3 and 116E attenuation and are expected to aid in the ongoing development of these vaccine candidates.
机译:轮状病毒(RVs)在婴儿和幼儿中引起严重的肠胃炎;然而,已经从新生儿中分离出了几株没有临床疾病迹象的菌株。目前正在开发其中两种新生菌株RV3(G3P [6])和116E(G9P [11])作为减毒活疫苗。在这项研究中,我们对适应细胞培养的RV3和116E的11段双链RNA基因组进行了测序,并将其基因和蛋白质产物与其他RV进行了比较。使用氨基酸比对和结构预测,我们鉴定了可能有助于减毒或影响疫苗功效的RV3或116E残基。我们还发现了VP4附着蛋白的残基与一些P [6]菌株(包括RV3)感染新生儿和较大婴儿的能力相关。这项研究的结果加深​​了我们对RV3和116E减毒分子决定因素的了解,并有望有助于这些候选疫苗的持续开发。

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