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Molecular Weight of Two Oncornavirus Genomes: Derivation from Particle Molecular Weights and RNA Content

机译:两个癌基因病毒基因组的分子量:源自粒子分子量和RNA含量

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摘要

Sedimentation analysis and intensity fluctuation spectroscopy have been used in conjunction with the Svedberg equation to determine the particle molecular weights of Rous sarcoma virus (Prague strain) and avian myeloblastosis virus (BAI strain). The molecular weights of these two viruses are (294 ± 20) × 106 and (256 ± 18) × 106, respectively. Values for the molecular weight of the RNA contained in each particle have been calculated as (5.58 ± 0.5) × 106 and (5.88 ± 0.5) × 106. Since the proportion of the viral RNA represented by 4 to 7S low-molecular-weight material is known, the molecular weight of the 60 to 70S genomes may be calculated to lie in the range (3.8 ± 0.3 to 4.8 ± 0.4) × 106 for both particles. These estimates for the molecular weight of the 60 to 70S genome are much lower than previous estimates and fall within the range of current estimates of the size of a single 35S subunit. The implications of this finding are discussed in terms of current theories for the structure of the genome of RNA tumor viruses.
机译:沉积分析和强度波动光谱已与Svedberg方程结合使用,确定了劳斯肉瘤病毒(布拉格病毒)和禽成纤维细胞病病毒(BAI病毒)的颗粒分子量。这两种病毒的分子量分别为(294±20)×10 6 和(256±18)×10 6 。计算出每个颗粒中包含的RNA的分子量值是(5.58±0.5)×10 6 和(5.88±0.5)×10 6 。由于已知4-7S低分子量物质代表的病毒RNA的比例,因此60-70S基因组的分子量可以计算为(3.8±0.3至4.8±0.4)×10 <两个粒子的sup> 6 。这些对60至70S基因组分子量的估计远低于以前的估计,并且落在当前对单个35S亚基大小的估计范围内。根据有关RNA肿瘤病毒基因组结构的当前理论讨论了这一发现的含义。

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