Department of Biomedical Sciences and Pathobiology, Virginia Tech, Blacksburg, VA 24061-0913, USA.
J Virol. 2011 Oct;85(19):10031-40. doi: 10.1128/JVI.00763-11. Epub 2011 Jul 20.
The RNA genome of the hepatitis E virus (HEV) contains a hypervariable region (HVR) in ORF1 that tolerates small deletions with respect to infectivity. To further investigate the role of the HVR in HEV replication, we constructed a panel of mutants with overlapping deletions in the N-terminal, central, and C-terminal regions of the HVR by using a genotype 1 human HEV luciferase replicon and analyzed the effects of deletions on viral RNA replication in Huh7 cells. We found that the replication levels of the HVR deletion mutants were markedly reduced in Huh7 cells, suggesting a role of the HVR in viral replication efficiency. To further verify the results, we constructed HVR deletion mutants by using a genetically divergent, nonmammalian avian HEV, and similar effects on viral replication efficiency were observed when the avian HEV mutants were tested in LMH cells. Furthermore, the impact of complete HVR deletion on virus infectivity was tested in chickens, using an avian HEV mutant with a complete HVR deletion. Although the deletion mutant was still replication competent in LMH cells, the complete HVR deletion resulted in a loss of avian HEV infectivity in chickens. Since the HVR exhibits extensive variations in sequence and length among different HEV genotypes, we further examined the interchangeability of HVRs and demonstrated that HVR sequences are functionally exchangeable between HEV genotypes with regard to viral replication and infectivity in vitro, although genotype-specific HVR differences in replication efficiency were observed. The results showed that although the HVR tolerates small deletions with regard to infectivity, it may interact with viral and host factors to modulate the efficiency of HEV replication.
戊型肝炎病毒 (HEV) 的 RNA 基因组在 ORF1 中含有一个高度可变区 (HVR),该区域对感染性具有较小的耐受缺失。为了进一步研究 HVR 在 HEV 复制中的作用,我们使用基因型 1 人 HEV 荧光素酶复制子构建了一个包含 HVR 中 N 端、中央和 C 端区域重叠缺失的突变体面板,并分析了缺失对 Huh7 细胞中病毒 RNA 复制的影响。我们发现 HVR 缺失突变体在 Huh7 细胞中的复制水平明显降低,表明 HVR 在病毒复制效率中起作用。为了进一步验证结果,我们使用遗传上不同的非哺乳动物禽 HEV 构建了 HVR 缺失突变体,当在 LMH 细胞中测试禽 HEV 突变体时,观察到类似的对病毒复制效率的影响。此外,我们使用具有完整 HVR 缺失的禽 HEV 突变体在鸡中测试了完整 HVR 缺失对病毒感染力的影响。尽管缺失突变体在 LMH 细胞中仍然具有复制能力,但完整 HVR 的缺失导致禽 HEV 在鸡中的感染性丧失。由于 HVR 在不同 HEV 基因型之间在序列和长度上表现出广泛的变异,我们进一步检查了 HVR 之间的可互换性,并证明 HVR 序列在体外与病毒复制和感染方面在 HEV 基因型之间具有功能可互换性,尽管观察到复制效率的基因型特异性 HVR 差异。结果表明,尽管 HVR 在感染性方面对小缺失具有耐受性,但它可能与病毒和宿主因素相互作用,调节 HEV 复制的效率。