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干扰素作用机制:克隆的人γ干扰素对人羊膜U细胞中水泡性口炎病毒复制的抑制作用。I. 对病毒增殖周期早期和晚期的影响

Mechanism of interferon action: inhibition of vesicular stomatitis virus replication in human amnion U cells by cloned human gamma-interferon. I. Effect on early and late stages of the viral multiplication cycle.

作者信息

Ulker N, Samuel C E

出版信息

J Biol Chem. 1985 Apr 10;260(7):4319-23.

PMID:2984201
Abstract

The molecular basis of the inhibition of vesicular stomatitis virus (VSV) replication by pure recombinant gamma-interferon (IFN-gamma) in human amnion U cells was examined. A saturating concentration of IFN-gamma induced, at maximum, about a two log10 reduction in infectious VSV yield. The kinetics of induction of the antiviral activity by IFN-gamma were first order over the period of about 6-18 h, following a lag of about 3 h, after treatment with a saturating concentration of IFN-gamma. The relationship of the inhibition in VSV infectivity to the early and late events of the VSV multiplication cycle was investigated. IFN-gamma treatment had no detectable effect on the adsorption and penetration of VSV virions or on their uncoating to yield viral nucleocapsids. The polypeptides of adsorbed or uncoated VSV particles were neither preferentially degraded nor detectably altered in IFN-gamma-treated U cells, as compared to untreated U cells. Progeny virions isolated from IFN-gamma-treated U cells, although greatly reduced in number, were found to be equally as infectious as those isolated from untreated U cells. Progeny virions from IFN-gamma-treated cells also possessed the same composition of viral proteins as was observed for virions from untreated cells. These results suggest that conditions of IFN-gamma treatment sufficient to reduce the yield of infectious VSV progeny 100-fold do not detectably affect either the early or the late stages of the VSV multiplication cycle.

摘要

研究了纯重组γ干扰素(IFN-γ)对人羊膜U细胞中水泡性口炎病毒(VSV)复制的抑制作用的分子基础。饱和浓度的IFN-γ最多可使感染性VSV产量降低约两个对数10。在用饱和浓度的IFN-γ处理后,经过约3小时的延迟,IFN-γ诱导抗病毒活性的动力学在约6 - 18小时内呈一级反应。研究了VSV感染性抑制与VSV增殖周期早期和晚期事件之间的关系。IFN-γ处理对VSV病毒粒子的吸附和穿透或其脱壳产生病毒核衣壳均无明显影响。与未处理的U细胞相比,在IFN-γ处理的U细胞中,吸附或脱壳的VSV颗粒的多肽既没有被优先降解,也没有明显改变。从IFN-γ处理的U细胞中分离出的子代病毒粒子,尽管数量大大减少,但发现其感染性与从未处理的U细胞中分离出的子代病毒粒子相同。来自IFN-γ处理细胞的子代病毒粒子也具有与未处理细胞的病毒粒子相同的病毒蛋白组成。这些结果表明,足以使感染性VSV子代产量降低100倍的IFN-γ处理条件,对VSV增殖周期的早期或晚期均无明显影响。

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