Edvardsson B, Ustacelebi S, Williams J, Philipson L
J Virol. 1978 Feb;25(2):641-51. doi: 10.1128/JVI.25.2.641-651.1978.
Temperature-sensitive mutants from three different complementation groups, ts5, ts19, and 6s58, have been shown to accumulate assembly intermediates at the restrictive temperature. The polypeptide composition of these intermediates is similar to that of the wild type, including the precursor polypeptides pVI, pVII, and pVIII. ts5 and ts19 also contained cleaved precursors, indicating assembly into defective virions. The increase of infectious virus after temperature shift-down of ts19 and ts58 was rapid when compared with that of ts24, which does not accumulate intermediates, suggesting that intermediates formed at nonpermissive temperature may be processed to mature virus. However, shift-down experiments reveal that only a fraction of the intermediates are utilized for virus assembly and that degradation of intermediates occurs at the restrictive temperature.
来自三个不同互补组的温度敏感突变体ts5、ts19和6s58,已被证明在限制温度下会积累装配中间体。这些中间体的多肽组成与野生型相似,包括前体多肽pVI、pVII和pVIII。ts5和ts19还含有裂解的前体,表明它们装配成了有缺陷的病毒粒子。与不积累中间体的ts24相比,ts19和ts58温度下调后感染性病毒的增加速度很快,这表明在非允许温度下形成的中间体可能会被加工成成熟病毒。然而,温度下调实验表明,只有一部分中间体被用于病毒装配,并且中间体在限制温度下会发生降解。