Hayward G S, Frenkel N, Roizman B
Proc Natl Acad Sci U S A. 1975 May;72(5):1768-72. doi: 10.1073/pnas.72.5.1768.
Digestion of herpes simplex virus DNA by the HinIII or Eco RI restriction endonucleases yielded 11 to 15 fragments with molecular weights between 1 x 10(6) and 28 x10(6). The electrophoretic profiles obtained in 0.3% agarose gels with DNA fragments from none different strains of herpes simplex virus type 1 could be readily differentiated from the patterns exhibited by the corresponding fragments from four separate strains of type 2 virus; however, with each serotype, the laboratory strains differed significantly among themselves and also from isolates passaged a minimum number of times outside the human host. Digestion of all DNAs of herpes simples virus with either enzyme reproducibly generated two classes of fragments (major and minor) which differed in molar ocncentration. Moreover, although the molecular weight of an intact herpes simplex 1(F1) DNA molecule is approximately 98 x 10(6), the summed molecular weights of all major and minor HinIII fragments totalled 160 x 10(6), and the seven major fragments alone accounted for only 60 x 10(6). These unusual features indicate the existence of limited heterogeneity in the positions of cleavage sitet along individual molecules. We have eliminated the possibility that minor fragments arose from contamination with the defective DNA of high byoyant density which appears on serial undiluted passage of the virus. In fact, this latter type of DNA was resistant to cleavage by HinIII and gave large amounts of only two species of EcoRI fragments; suggesting that the defective molecules consist of many tandem repeats of a small segment of viral DNA. The heterogeneity in the viral DNA of normal density appears to be related to the structural organization of the molecules and does not necessarily imply differences in genetic content.
用HinIII或Eco RI限制性内切酶消化单纯疱疹病毒DNA,产生了11至15个片段,其分子量在1×10⁶至28×10⁶之间。在0.3%琼脂糖凝胶中获得的1型单纯疱疹病毒不同菌株DNA片段的电泳图谱,很容易与2型病毒四个不同菌株相应片段所呈现的图谱区分开来;然而,对于每种血清型,实验室菌株之间以及与在人类宿主外最少传代次数的分离株之间都存在显著差异。用这两种酶消化所有单纯疱疹病毒DNA,可重复性地产生两类片段(主要和次要),它们的摩尔浓度不同。此外,尽管完整的1型单纯疱疹病毒(F1)DNA分子的分子量约为98×10⁶,但所有主要和次要HinIII片段的分子量总和为160×10⁶,仅七个主要片段就仅占60×10⁶。这些不寻常的特征表明,沿着单个分子的切割位点位置存在有限的异质性。我们已经排除了小片段是由高浮力密度的缺陷DNA污染产生的可能性,这种缺陷DNA在病毒连续未稀释传代时出现。事实上,后一种类型的DNA对HinIII切割具有抗性,并且仅产生大量的两种EcoRI片段;这表明缺陷分子由病毒DNA一小段的许多串联重复组成。正常密度病毒DNA中的异质性似乎与分子的结构组织有关,并不一定意味着遗传内容存在差异。