Costello E, Sahli R, Hirt B, Beard P
Swiss Institute for Experimental Cancer Research, Epalinges, Switzerland.
J Virol. 1995 Dec;69(12):7489-96. doi: 10.1128/JVI.69.12.7489-7496.1995.
The 5'-terminal sequence in the DNA of the parvovirus minute virus of mice (MVM) is a palindrome. It can form a hairpin, the stem of which is entirely base-paired except for three consecutive unpaired nucleotides which form a bubble. Since this structure is well conserved among different parvoviruses, we examined its importance for viral replication by generating MVM mutants with alterations in this region. A clone of MVMp DNA which contained the entire 3' end and more than half of the 5' palindrome was made. Although it lacked the sequence information to form a wild-type bubble, this DNA was infectious. On transfection into A9 fibroblasts, it gave rise to a virus (MVMs) which had a bubble in its 5' palindrome. The bubble consisted of four mismatched nucleotides in the same location as the unpaired nucleotides of the wild-type palindrome. Apparently, neighboring plasmid sequences were incorporated into the viral DNA, enabling formation of the mismatch. This observation suggested that a bubble is critical for growth of MVM but that its sequence is not. To find out whether MVM lacking a bubble in the 5' palindrome is viable, we made a second clone in which the plasmid sequences incorporated in MVMs were removed. Transfection of this DNA gave rise to a virus (MVMx) in which the nucleotides unpaired in the wild-type hairpin are now fully base-paired. Although MVMx can be propagated, it is defective in comparison with wild-type MVMp; it exhibited about a 50-fold-lower ratio of plaque-forming units to DNA content. In mixed infections, MVMp consistently outgrew the bubbleless MVMx. The rate of accumulation of DNA replication intermediates was lower for MVMx than for the wild-type virus. Quantitative analysis of the 5' termini of replicative form DNA suggested that the ability of MVMx to convert hairpin 5' termini to extended termini is impaired. In contrast, the virus with the altered bubble, MVMs, behaved like the wild-type MVMp in all the assays. We conclude that MVM lacking a bubble in its 5'-terminal DNA hairpin is less infectious than and has a selective disadvantage compared with wild-type MVM. The nucleotide sequence of the bubble is not critical. We provide evidence that the presence of a bubble is necessary for efficient viral DNA replication.
小鼠细小病毒(MVM)DNA的5'末端序列是一个回文序列。它可以形成一个发夹结构,其茎部除了三个连续的未配对核苷酸形成一个泡状结构外,其余部分完全碱基配对。由于这种结构在不同的细小病毒中高度保守,我们通过构建该区域发生改变的MVM突变体来研究其对病毒复制的重要性。构建了一个包含整个3'末端和超过一半5'回文序列的MVMp DNA克隆。尽管它缺乏形成野生型泡状结构的序列信息,但该DNA具有感染性。转染到A9成纤维细胞后,它产生了一种病毒(MVMs),其5'回文序列中有一个泡状结构。这个泡状结构由四个错配核苷酸组成,位置与野生型回文序列中的未配对核苷酸相同。显然,相邻的质粒序列被整合到病毒DNA中,从而形成了错配。这一观察结果表明,泡状结构对MVM的生长至关重要,但其序列并不重要。为了确定5'回文序列中缺乏泡状结构的MVM是否可行,我们构建了第二个克隆,去除了MVMs中整合的质粒序列。转染该DNA产生了一种病毒(MVMx),其中野生型发夹结构中未配对的核苷酸现在完全碱基配对。尽管MVMx可以增殖,但与野生型MVMp相比存在缺陷;它的噬斑形成单位与DNA含量的比值低约50倍。在混合感染中,MVMp始终比无泡状结构的MVMx生长得快。MVMx的DNA复制中间体积累速率低于野生型病毒。对复制型DNA 5'末端的定量分析表明,MVMx将发夹状5'末端转化为延伸末端的能力受损。相比之下,具有改变泡状结构的病毒MVMs在所有检测中表现得与野生型MVMp一样。我们得出结论,5'末端DNA发夹结构中缺乏泡状结构的MVM比野生型MVM感染性更低,且具有选择性劣势。泡状结构的核苷酸序列并不关键。我们提供的证据表明,泡状结构的存在对于有效的病毒DNA复制是必要的。