Chen T C, Ray D S
J Virol. 1978 Dec;28(3):679-85. doi: 10.1128/JVI.28.3.679-685.1978.
Previous studies have shown that M13 single-strand synthesis is inhibited at nonpermissive temperature in Escherichia coli polAexl, a temperature-sensitive mutant defective in the 5' leads to 3' exonuclease activity of polymerase I (T.-C. Chen and D. S. Ray, J. Mol. Biol. 106:589-604, 1976). Under these conditions the formation of covalently closed replicative form (RF) molecules is greatly reduced, and miniature forms of RF accumulate. We show here that the accumulation of mini-RFs is the consequence of a differential inhibition of the replication of unit-length phage and preexisting miniphage rather than a de novo production of miniphage. Mini-RFs do not accumulate even after as many as nine cycles of growth in the mutant host infected only with unit-length phage. Mixed infections of the mutant host with plaque-purified unit-length phage and a single cloned miniphage show that discontinuities in the mini-RFs are joined with higher efficiency than are those contained in unit-length RFs. After a shift to nonpermissive temperature during single-strand synthesis in cells infected with plaque-purified phage alone, M13 RFs are found largely as RFII molecules (RF form having one or more single-strand discontinuities) containing only a single discontinuity in the viral strand. The inability of the accumulated unit-length RFII molecules to actively replicate may reflect the presence of either a bound protein or RNA primer on the 5' terminus of the viral strand and provides further support for the existence of distinct initiation and termination events in the synthesis of the viral strand.
先前的研究表明,在大肠杆菌polAexl(一种温度敏感型突变体,其DNA聚合酶I的5'→3'核酸外切酶活性存在缺陷)中,非允许温度下M13单链合成受到抑制(陈天赐和D.S.雷,《分子生物学杂志》106:589 - 604,1976年)。在这些条件下,共价闭合复制型(RF)分子的形成大幅减少,而RF的微型形式会积累。我们在此表明,微型RF的积累是单位长度噬菌体和预先存在的微型噬菌体复制受到差异抑制的结果,而非微型噬菌体的从头产生。即使在仅感染单位长度噬菌体的突变宿主中进行多达九个生长周期后,微型RF也不会积累。突变宿主与噬菌斑纯化的单位长度噬菌体和单个克隆的微型噬菌体进行混合感染,结果显示微型RF中的间断连接效率高于单位长度RF中的间断。在用噬菌斑纯化的噬菌体单独感染的细胞中,单链合成过程中转移到非允许温度后,发现M13 RF主要是RFII分子(具有一个或多个单链间断的RF形式),其病毒链中仅含有一个间断。积累的单位长度RFII分子无法活跃复制,这可能反映了病毒链5'末端存在结合蛋白或RNA引物,并进一步支持了病毒链合成中存在不同起始和终止事件的观点。