Matthes M, Denhardt D T
J Virol. 1982 Apr;42(1):12-9. doi: 10.1128/JVI.42.1.12-19.1982.
We reported earlier that dephosphorylated nascent phi X174 viral strand DNA molecules were less extensively degraded from the 5' end by spleen exonuclease than were non-nascent molecules. Experiments described here revealed that the insensitivity to the 5'-OH end-specific nuclease was more evident among the longer molecules in the population than among the shorter, all of the molecules being less than unit length in size. The smallest molecules in the population were about as sensitive to the enzyme as the control molecules and hence must possess unblocked 5'-terminal nucleotides. Degradation of the nascent DNA with the 3' end-specific snake venom phosphodiesterase revealed only a small enrichment for [3H]thymidine near the 3' end, seemingly insufficient to account completely for the apparent insensitivity of the longer molecules to spleen exonuclease. When the nascent molecules were isolated without the use of proteolytic enzymes, some pronase-sensitive material was found associated with the DNA, particularly the longer molecules. We suggest that the resistance of the longer nascent (pronase-treated) molecules to spleen exonuclease occurs because they have remnants of the viral gene A or A* protein covalently bound to the 5' end.
我们之前报道过,与非新生分子相比,去磷酸化的新生φX174病毒链DNA分子从5'端被脾外切核酸酶降解的程度较低。此处描述的实验表明,群体中较长的分子对5'-OH端特异性核酸酶的不敏感性比较短的分子更明显,所有分子的大小均小于单位长度。群体中最小的分子对该酶的敏感性与对照分子相当,因此其5'-末端核苷酸必定未被封闭。用3'端特异性蛇毒磷酸二酯酶降解新生DNA,结果显示在3'端附近仅少量富集了[3H]胸苷,这似乎不足以完全解释较长分子对脾外切核酸酶明显的不敏感性。当在不使用蛋白水解酶的情况下分离新生分子时发现,一些对链霉蛋白酶敏感的物质与DNA相关联,尤其是较长的分子。我们认为,较长的新生(经链霉蛋白酶处理的)分子对脾外切核酸酶具有抗性,是因为它们的5'端共价结合有病毒基因A或A*蛋白的残余部分。