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鸭跖草黄斑驳病毒的开放阅读框I和II蛋白与病毒粒子相关。

The ORF I and II proteins of Commelina yellow mottle virus are virion-associated.

作者信息

Cheng C P, Lockhart B E, Olszewski N E

机构信息

Department of Plant Biology, University of Minnesota, St. Paul 55108, USA.

出版信息

Virology. 1996 Sep 15;223(2):263-71. doi: 10.1006/viro.1996.0478.

Abstract

Antibodies were prepared against bacterially expressed Commelina yellow mottle badnavirus (CoYMV) proteins. Antiserum against purified virions and antiserum against the C-terminus of the putative coat protein-encoding region of ORF III detected the same virus-specific proteins, indicating that the CoYMV coat protein is encoded in ORF III. In addition to the two major forms of the coat protein (37 and 39 kDa), several high molecular weight virus-specific proteins were detected when virions were isolated without chloroform treatment. These proteins are possible ORF III polyprotein processing intermediates and might be associated with "immature" virions which are eliminated by chloroform treatment. As predicted by the genomic sequence, a 20-kDa virus-specific protein was detected by an antiserum raised against the C-terminus of the putative ORF I protein. Results of filtration experiments suggest that the ORF I protein is equally associated with virions and with plant component(s). The association between the ORF I protein and the virions was further confirmed using immunosorbent electron microscopy and immunogold labeling. The ORF I protein was not detected in virus preparations treated with chloroform, and colocalized with virions containing immature coat protein on sucrose-cesium sulfate density gradients, suggesting that it is associated with immature virions. An antiserum raised against the putative ORF II gene product detected a 15-kDa virus-specific protein whose association with the virions was unaffected by chloroform treatment. The ORF II protein was found to be sensitive to some protease(s) that copurified with the virions, and protease inhibitors preventing this degradation have been identified.

摘要

制备了针对细菌表达的鸭跖草黄斑驳杆状DNA病毒(CoYMV)蛋白的抗体。针对纯化病毒粒子的抗血清和针对开放阅读框III推定衣壳蛋白编码区C端的抗血清检测到相同的病毒特异性蛋白,表明CoYMV衣壳蛋白由开放阅读框III编码。除了两种主要形式的衣壳蛋白(37 kDa和39 kDa)外,在未用氯仿处理分离病毒粒子时,还检测到几种高分子量的病毒特异性蛋白。这些蛋白可能是开放阅读框III多聚蛋白加工中间体,可能与被氯仿处理去除的“未成熟”病毒粒子有关。正如基因组序列所预测的,针对推定的开放阅读框I蛋白C端产生的抗血清检测到一种20 kDa的病毒特异性蛋白。过滤实验结果表明,开放阅读框I蛋白与病毒粒子以及植物成分的结合程度相同。使用免疫吸附电子显微镜和免疫金标记进一步证实了开放阅读框I蛋白与病毒粒子之间的关联。在用氯仿处理的病毒制剂中未检测到开放阅读框I蛋白,并且在蔗糖-硫酸铯密度梯度上,它与含有未成熟衣壳蛋白的病毒粒子共定位,表明它与未成熟病毒粒子有关。针对推定的开放阅读框II基因产物产生的抗血清检测到一种15 kDa的病毒特异性蛋白,其与病毒粒子的结合不受氯仿处理的影响。发现开放阅读框II蛋白对一些与病毒粒子共纯化的蛋白酶敏感,并且已经鉴定出防止这种降解的蛋白酶抑制剂。

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