Hopper J E, Bostian K A, Rowe L B, Tipper D J
J Biol Chem. 1977 Dec 25;252(24):9010-7.
Virus-like particles containing the L (P1)-species of double-stranded RNA (dsRNA) were isolated from Saccharomyces cerevisiae, and the translational activity of the virus-like particle-derived dsRNA was analyzed in the wheat germ cell-free system. Denaturation of the dsRNA immediately prior to in vitro translation resulted in the synthesis of one major and at least three minor polypeptides, whereas undenatured dsRNA, as expected, did not stimulate [35S]methionine incorporation into polypeptides, but actually slightly inhibited endogenous activity. The major in vitro translation product of the denatured L-dsRNA was shown to be identical with the major L-dsRNA containing virus-like particle capsid polypeptide on the basis of three criteria: co-electrophoresis on sodium dodecyl sulfate polyacrylamide gels, immunoprecipitation, and tryptic peptide analysis. We have therefore established that the L-dsRNA genome encodes the major virus-like particle capsid polypeptide. This result adds considerable support to the hypothesis that the L-dsRNA genome acts as a helper genome to the smaller (1.6 x 10(6) dalton) M-dsRNA genome in killer strains of yeast by providing the M-dsRNA containing virus-like particles with their major coat protein.
从酿酒酵母中分离出含有双链RNA(dsRNA)L(P1)种的病毒样颗粒,并在小麦胚芽无细胞体系中分析了病毒样颗粒衍生的dsRNA的翻译活性。在体外翻译前立即使dsRNA变性,会导致合成一种主要多肽和至少三种次要多肽,而未变性的dsRNA,正如预期的那样,不会刺激[35S]甲硫氨酸掺入多肽中,反而实际上会轻微抑制内源性活性。基于三个标准,变性的L-dsRNA的主要体外翻译产物被证明与含有病毒样颗粒衣壳多肽的主要L-dsRNA相同:在十二烷基硫酸钠聚丙烯酰胺凝胶上共电泳、免疫沉淀和胰蛋白酶肽分析。因此,我们确定L-dsRNA基因组编码主要的病毒样颗粒衣壳多肽。这一结果为以下假说提供了相当大的支持,即L-dsRNA基因组通过为含有M-dsRNA的病毒样颗粒提供主要外壳蛋白,在酵母杀伤菌株中作为较小(1.6 x 10(6)道尔顿)的M-dsRNA基因组的辅助基因组。