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辛德毕斯病毒编码的负链RNA合成的特定功能。

Specific Sindbis virus-coded function for minus-strand RNA synthesis.

作者信息

Sawicki D L, Sawicki S G, Keränen S, Kääriäinen L

出版信息

J Virol. 1981 Aug;39(2):348-58. doi: 10.1128/JVI.39.2.348-358.1981.

Abstract

The synthesis of minus-strand RNA was studied in cell cultures infected with the heat-resistant strain of Sindbis virus and with temperature-sensitive (ts) belonging to complementation groups A, B, F, and G, all of which exhibited an RNA-negative (RNA-) phenotype when infection was initiated and maintained at 39 degrees C, the nonpermissive temperature. When infected cultures were shifted from 28 degrees C (the permissive temperature) to 39 degrees C at 3 h postinfection, the synthesis of viral minus-strand RNA ceased in cultures infected with ts mutants of complementation groups B and F, but continued in cultures infected with the parental virus and mutans of complementation groups A and G. In cultures infected with ts11 of complementation group B, the synthesis of viral minus-strand RNA ceased, whereas the synthesis of 42S and 26S plus-strand RNAs continued for at least 5 h after the shift to 39 degrees C. However, when ts11-infected cultures were returned to 28 degrees C 1 h after the shift to 39 degrees C, the synthesis of viral minus-strand RNA resumed, and the rate of viral RNA synthesis increased. The recovery of minus-strand synthesis translation of new proteins. We conclude that at least one viral function is required for alphavirus minus-strand synthesis that is not required for plus-strand synthesis. In cultures infected with ts6 of complementation group F, the syntheses of both viral plus-strand and minus-strand RNAs were drastically reduced after the shift to 39 degrees C. Since ts6 failed to synthesize both plus-strand and minus-strand RNAs after the shift to 39 degrees C, at least one common viral component appears to be required for the synthesis of both minus-strand and plus-strand RNAs.

摘要

在感染辛德毕斯病毒耐热株以及属于互补组A、B、F和G的温度敏感(ts)株的细胞培养物中研究了负链RNA的合成。当感染在39℃(非允许温度)起始并维持时,所有这些毒株在感染起始时均表现出RNA阴性(RNA-)表型。当感染的培养物在感染后3小时从28℃(允许温度)转移至39℃时,互补组B和F的ts突变体感染的培养物中病毒负链RNA的合成停止,但亲本病毒以及互补组A和G的突变体感染的培养物中该合成仍继续。在互补组B的ts11感染的培养物中,病毒负链RNA的合成停止,而42S和26S正链RNA的合成在转移至39℃后至少持续了5小时。然而,当ts11感染的培养物在转移至39℃1小时后再回到28℃时,病毒负链RNA的合成恢复,且病毒RNA合成速率增加。负链合成的恢复伴随着新蛋白质的翻译。我们得出结论,甲病毒负链合成至少需要一种病毒功能,而正链合成不需要该功能。在互补组F的ts6感染的培养物中,转移至39℃后病毒正链和负链RNA的合成均大幅减少。由于ts6在转移至39℃后无法合成正链和负链RNA,因此负链和正链RNA的合成似乎至少需要一种共同的病毒成分。

相似文献

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Synthesis of alphavirus-specified RNA.甲病毒特异性RNA的合成
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