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Vaccinia Virus Replication I. Requirement for the Host-Cell Nucleus

机译:痘苗病毒复制I.宿主细胞核的要求

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Using cytochalasin B-induced enucleation techniques, we examined the ability of vaccinia virus to replicate in the absence of the host-cell nucleus in several mammalian cell lines. It was found that virus-infected enucleated cells (cytoplasts) prepared from BSC-40, CVC, and L cells were incapable of producing infectious progeny virus. The nature of this apparent nuclear involvement was studied in detail in BSC-40 cells. Modulations designed to maximize cytoplast integrity and longevity, such as reduction of the growth temperature and initial multiplicity of infection, did not improve virus growth in cytoplasts. Sodium dodecyl sulfate-polyacrylamide gel analysis of the [35S]methionine pulse-labeled proteins synthesized in vaccinia virus-infected cytoplasts demonstrated that both early and late viral gene products were being expressed at high levels and with the proper temporal sequence. Vaccinia virus cytoplasmic DNA synthesis, as measured by [3H]thymidine incorporation, peaked at 3 h postinfection and was 70 to 90% of control levels in cytoplasts. However, in the cytoplasts this DNA was not converted to a DNase-resistant form late in infection, which was consistent with the failure to isolate physical particles from infected cytoplasts. Treatment of vaccinia virus-infected cells with 100 μg of rifampin/ml from 0 to 8 h to increase the pools of viral precursors, followed by subsequent removal of the drug, resulted in a threefold increase virus yield. This treatment had no effect on virus-infected cytoplasts. Finally, vaccinia virus morphogenesis was studied under an electron microscope in thin sections of virus-infected cells and cytoplasts which had been prepared at various times during a single-step growth cycle. It was apparent that, although early virus morphogenetic forms appeared, there was no subsequent DNA condensation or particle maturation in the cytoplasts. These results suggest that vaccinia virus requires some factor or function from the host-cell nucleus in order to mature properly and produce infectious progeny virus.
机译:使用细胞胞链蛋白B诱导的enucleation技术,我们研究了痘苗病毒在几种哺乳动物细胞系中缺乏宿主细胞核中复制的能力。发现由BSC-40,CVC和L细胞制备的病毒感染的enucleated细胞(细胞质)不能产生传染性后代病毒。在BSC-40细胞中详细研究了这种明显核患者的性质。设计为最大化细胞质完整性和寿命的调节,例如降低生长温度和初始感染的初始多重性,并未改善细胞质中的病毒生长。在痘苗病病毒感染的细胞质中合成的[ 35 s]蛋氨酸脉冲标记蛋白的十二烷基硫酸钠 - 聚丙烯酰胺凝胶分析表明,早期和晚期病毒基因产物在高水平和含量中表达适当的时间序列。通过[ 3 h]胸苷掺入测量的疫苗病毒细胞质DNA合成,在3小时内达到3小时,含有70%至90%的细胞质中的对照水平。然而,在细胞质中,该DNA未转化为可感染后期的DNA键抗性,这与未脱离来自感染的细胞质的物理粒子的失败一致。用100μg利福平/ ml的疫苗病毒感染细胞从0〜8小时处理,以增加病毒前体的池,然后随后除去药物,导致三倍增加病毒产量。这种治疗对病毒感染的胞质胞质没有影响。最后,在电子显微镜下研究了病毒感染细胞的薄片和在单步生长循环期间在不同时间制备的薄膜的电子显微镜下进行了疫苗病毒形态发生。很明显,尽管出现了早期病毒形态发生形式,但在细胞质中没有随后的DNA缩合或颗粒成熟。这些结果表明,痘苗病毒需要从宿主细胞核中的一些因子或功能,以便适当地成熟并产生传染性后代病毒。

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