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Electrophoretic and Other Properties of Bacteriophage Qβ: the Effect of a Variable Number of Read-Through Proteins

机译:噬菌体Qβ的电泳和其他特性:可变数量的直通蛋白的影响

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摘要

When subjected to electrophoresis in polyacrylamide gels, the virions of wild-type Qβ bacteriophage are found in a single, major, anomalously wide band. With Qβ mutant 27-2, this wide band is replaced by a set of narrow, well-defined bands. The most rapidly migrating band of the mutant, comprising less than 10% of the total, contains defective virions. These virions have sedimentation coefficients ranging from 70 to 100% of the bulk of the unfractionated mutant, they contain no read-through protein (protein IIb), and they are deficient in maturation protein and contain fragmented RNA. The second band, comprising less than 3% of the total virus, has not been well characterized. The virions in the remaining electrophoretic bands are infective. Their distribution into bands is believed due to differences in their effective volume resulting from differences in their content of protein IIb. The most rapidly migrating band of this series contains virions with a few molecules of IIb protein, whereas the more slowly migrating bands contain virions with a larger number of IIb molecules. The adjacent bands in the series contain virions which differ by approximately three IIb molecules. Wild-type Qβ virus is similar to the mutant in that the more slowly migrating virions contain more protein IIb than the more rapidly migrating virions. Their failure to resolve into distinct bands upon electrophoresis is believed due to a less restricted packing of protein IIb into their virions. Both wild-type Qβ and mutant 27-2 also have 1 to 5% of the virions in the form of dimers which migrate with approximately one-half the mobility of the respective monomer forms. When the average amount of IIb per virion is increased by growth of the virus in a UGA suppressor strain, the electrophoretic pattern is altered. In the case of wild-type Qβ, the single band is wider, whereas with Qβ mutant 27-2 there occurs an increased number of partially resolved narrow bands. We suggest that the structural feature responsible for the difference in electrophoretic pattern between mutant 27-2 and wild-type Qβ is the mode of IIb packing in the virions. In the mutant, the IIb proteins are found in the virions only in multiples of three, whereas wild-type virions may differ by only a single IIb protein.
机译:当在聚丙烯酰胺凝胶中进行电泳时,发现野生型Qβ噬菌体的病毒体在单一的主要异常宽带中。对于Qβ突变体27-2,此宽带被一组窄且定义明确的带所代替。突变体中迁移速度最快的条带(占总数的不到10%)包含有缺陷的病毒体。这些病毒体的沉降系数为未分级突变体体积的70%至100%,它们不包含通读蛋白(蛋白IIb),并且它们缺乏成熟蛋白并且包含片段化的RNA。占总病毒少于3%的第二条带尚未得到很好的鉴定。其余电泳带中的病毒体具有感染性。据信,由于其有效体积的差异是由于蛋白质IIb含量的差异而导致的,它们在条带中的分布。该系列中迁移最快的条带包含带有少量IIb分子的病毒体,而迁移速度较慢的条带包含带有大量IIb分子的病毒体。该系列中的相邻带包含病毒体,它们相差约三个IIb分子。野生型Qβ病毒与突变型病毒相似,在于迁移速度较慢的病毒粒子比迁移速度较快的病毒粒子包含更多的蛋白质IIb。据认为,由于蛋白质IIb进入其病毒体的限制较少,电泳时它们无法分辨成明显的条带。野生型Qβ和突变体27-2也都具有二聚体形式的病毒粒子的1-5%,其以相应单体形式的迁移率的大约一半迁移。当通过病毒在UGA抑制株中的生长而增加每个病毒体IIb的平均量时,电泳模式改变。在野生型Qβ的情况下,单条带较宽,而Qβ突变体27-2则出现了数量增加的部分分解窄带。我们认为负责突变体27-2和野生型Qβ之间电泳模式差异的结构特征是病毒体中IIb堆积的模式。在突变体中,仅在病毒粒子中发现IIb蛋白的比率是三个的倍数,而野生型病毒粒子的差异可能仅在于单个IIb蛋白。

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