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Determinants in 3Dpol Modulate the Rate of Growth of Hepatitis A Virus

机译:3Dpol中的决定因素调节甲型肝炎病毒的生长速度

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摘要

Hepatitis A virus (HAV), an atypical member of the Picornaviridae, grows poorly in cell culture. To define determinants of HAV growth, we introduced a blasticidin (Bsd) resistance gene into the virus genome and selected variants that grew at high concentrations of Bsd. The mutants grew fast and had increased rates of RNA replication and translation but did not produce significantly higher virus yields. Nucleotide sequence analysis and reverse genetic studies revealed that a T6069G change resulting in a F42L amino acid substitution in the viral polymerase (3Dpol) was required for growth at high Bsd concentrations whereas a silent C7027T mutation enhanced the growth rate. Here, we identified a novel determinant(s) in 3Dpol that controls the kinetics of HAV growth.
机译:甲型肝炎病毒(Picornaviridae)的非典型成员,甲型肝炎病毒(HAV)在细胞培养中生长不良。为了定义HAV增长的决定因素,我们将杀稻瘟菌素(Bsd)抗性基因引入病毒基因组,并选择了在高Bsd浓度下生长的变体。突变体生长迅速,RNA复制和翻译的速率提高,但病毒产量却不高。核苷酸序列分析和反向遗传研究表明,在高Bsd浓度下生长需要T6069G的变化,从而导致病毒聚合酶中的F42L氨基酸取代(3D pol ),而沉默的C7027T突变则促进了生长率。在这里,我们在3D pol 中确定了一个新的决定因素,该决定因素控制HAV生长的动力学。

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