Wang L H, Beckson M, Anderson S M, Hanafusa H
J Virol. 1984 Mar;49(3):881-91. doi: 10.1128/JVI.49.3.881-891.1984.
The ability of transformation-defective deletion mutants of Schmidt-Ruppin Rous sarcoma virus to induce tumors and generate recovered sarcoma viruses (rASVs) was correlated with the partial src sequences retained in the transformation-defective viral genomes. Since all the transformation-defective viruses that were capable of generating rASVs retained a portion of the 3' src sequence, regardless of the extent of the 5' src deletion, and those lacking the 3' src were unable to generate rASVs, it appears that the 3', but most likely not the 5', src sequence retained in the transformation-defective viral genome is essential for rASV formation. However, rASVs derived from a particular mutant, td109, which retained a portion of the 3' src sequence, but lacked most (if not all) of the 5' src sequence, were all found to be defective in replication. Analyses of the genomic sequences of 13 isolates of td109-derived rASVs revealed that they contained various deletions in viral envelope (env), polymerase (pol), and structural protein (gag) genes. Ten isolates of rASVs contained env deletions. One isolate (rASV3812) contained a deletion of env and the 3' half of pol, and one isolate (rASV398) contained a deletion of env and pol. The one with the most extensive deletion (rASV374) had a deletion from the p12-coding sequence through pol and env. In addition, the 5' src region of td109-derived rASVs were heterogeneous. Among the 7 isolates analyzed in detail, one isolate of rASV had a small deletion of the 5' src sequence, whereas three other isolates contained extra new sequences upstream from src. Both env- and env- pol- rASVs were capable of directing the synthesis of precursor and mature gag proteins in the infected nonproducer cells. We attribute the deletions in the replication-defective rASVs to the possibility that the 5' recombination site between the td109 and c-src sequence, involved regions of only partial homology due to lack of sufficient 5' src sequence in the td109 genome for homologous recombination. A model of recombination between the viral genome and the c-src sequence is proposed to account for the requirement of the 3' src sequence and the basis for the generation of deletions in td109-derived rASVs.
施密特 - 鲁平劳氏肉瘤病毒的转化缺陷型缺失突变体诱导肿瘤并产生恢复性肉瘤病毒(rASV)的能力,与转化缺陷型病毒基因组中保留的部分src序列相关。由于所有能够产生rASV的转化缺陷型病毒,无论其5' src缺失的程度如何,都保留了3' src序列的一部分,而那些缺乏3' src的病毒则无法产生rASV,因此似乎转化缺陷型病毒基因组中保留的3' src序列(但很可能不是5' src序列)对于rASV的形成至关重要。然而,从特定突变体td109衍生而来的rASV,虽然保留了3' src序列的一部分,但缺乏大部分(如果不是全部)5' src序列,结果发现它们在复制方面存在缺陷。对13株源自td109的rASV分离株的基因组序列分析表明,它们在病毒包膜(env)、聚合酶(pol)和结构蛋白(gag)基因中存在各种缺失。10株rASV分离株存在env缺失。一株分离株(rASV3812)存在env和pol 3' 半部分的缺失,一株分离株(rASV398)存在env和pol的缺失。缺失最广泛的一株(rASV374)从p12编码序列到pol和env都有缺失。此外,源自td109的rASV的5' src区域是异质的。在详细分析的7株分离株中,一株rASV分离株的5' src序列有小的缺失,而其他三株分离株在src上游含有额外的新序列。env缺失型和env - pol缺失型rASV都能够在受感染的非生产性细胞中指导前体和成熟gag蛋白的合成。我们将复制缺陷型rASV中的缺失归因于td109和c - src序列之间的5' 重组位点,由于td109基因组中缺乏足够的5' src序列用于同源重组,涉及的区域仅具有部分同源性。提出了一个病毒基因组与c - src序列之间的重组模型,以解释3' src序列的需求以及源自td109的rASV中缺失产生的基础。