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与在放线菌素D处理的细胞中组装的病毒粒子相关的鼠白血病病毒蛋白的合成:病毒信使核糖核酸持续性的证据

Synthesis of murine leukemia virus proteins associated with virions assembled in actinomycin D-treated cells: evidence for persistence of viral messenger RNA.

作者信息

Levin J G, Rosenak M J

出版信息

Proc Natl Acad Sci U S A. 1976 Apr;73(4):1154-8. doi: 10.1073/pnas.73.4.1154.

Abstract

Murine leukemia virus particles assembled in actinomycin D-treated cells were detected by determination of reverse transcriptase [RNA-dependent DNA polymerase (nucleotidyltransferase)] activity and by radioimmunoassay of the major virion protein, p30. The levels of enzyme activity and p30 protein were both 30-40% relative to the control over an 8 hr period, whereas after 3 or 4 hr infectivity was reduced by 95%. Thus, virions produced in the absence of RNA synthesis represent a fairly homogeneous population of defective particles. Although RNA synthesis is not necessary for virus assembly, protein synthesis is required. Treatment of cells with 10 mug/ml of cycloheximide reduced virus production by 80-85% within 2 hr, and by greater than 95% at later times. As might be expected from this finding, viral protein synthesis accompanies virus assembly in actinomycin D-treated cells. Newly synthesized proteins associated with the defective particles were identical with those found in standard virions and were present in the correct proportions. The results demonstrate that viral mRNA persists in cells in which RNA synthesis is blocked and continues to direct viral protein synthesis with a functional half-life of approximately 6-8 hr. Since viral mRNA is not packaged in virions even when viral RNA synthesis is shut off [Levin et al. (1974) J. Virol. 14, 152-161], we propose that murine leukemia virus-infected cells contain two nonequilibrating pools of intracellular viral RNA molecules, one associated with polyribosomes and one which is encapsidated into extracellular particles.

摘要

通过测定逆转录酶[RNA依赖性DNA聚合酶(核苷酸转移酶)]活性以及对主要病毒粒子蛋白p30进行放射免疫测定,检测在放线菌素D处理的细胞中组装的鼠白血病病毒颗粒。在8小时内,酶活性水平和p30蛋白水平相对于对照均为30%-40%,而在3或4小时后,感染性降低了95%。因此,在没有RNA合成的情况下产生的病毒粒子代表了相当均匀的缺陷颗粒群体。虽然RNA合成对于病毒组装不是必需的,但蛋白质合成是必需的。用10μg/ml环己酰亚胺处理细胞在2小时内使病毒产生减少80%-85%,在后期减少超过95%。从这一发现可以预期,病毒蛋白合成伴随着放线菌素D处理的细胞中的病毒组装。与缺陷颗粒相关的新合成蛋白质与标准病毒粒子中的蛋白质相同,并且以正确的比例存在。结果表明,病毒mRNA在RNA合成被阻断的细胞中持续存在,并继续指导病毒蛋白合成,其功能半衰期约为6-8小时。由于即使病毒RNA合成被关闭,病毒mRNA也不会包装在病毒粒子中[Levin等人(1974年)《病毒学杂志》14,152-161],我们提出,感染鼠白血病病毒的细胞含有两个不平衡的细胞内病毒RNA分子池,一个与多核糖体相关,另一个被包裹在细胞外颗粒中。

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