首页> 外文期刊>Nucleic acids research >Ethidium bromide-mediated renaturation of denatured closed circular DNAs. The nature of denaturation-resistant fractions of bacteriophage PM2 closed circular DNA
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Ethidium bromide-mediated renaturation of denatured closed circular DNAs. The nature of denaturation-resistant fractions of bacteriophage PM2 closed circular DNA

机译:溴乙锭介导的变性闭环DNA的复性。噬菌体PM2封闭环状DNA的抗变性组分的性质

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Addition of the intercalating dye ethidium bromide (EtdBr) to a solution of alkali-denatured double-stranded closed circular PM2, φX174, or λb2b5c phage DNAs, under conditions such that the solution remains strongly alkaline, can result in the renaturatlon of up to 100% of the DNA upon neutralization of the solution. For a fixed time of incubation of the alkaline dye-containing solution before neutralization, there exists a minimum concentration of the dye below which no EtdBr-mediated renaturatlon is observed for each species of closed circular DNA examined. These minimum concentrations increase, for a given DNA, with increasing ionic strength and temperature. The kinetics of accumulation of forms renaturing upon neutralization of alkaline solutions, at fixed concentrations of dye and DNA, are dependent upon the molecular weight and superhelix density of the starting DNA. After extended periods of incubation at a fixed ionic strength and temperature, however, the profiles of percentage of DNA renatured as a function of ethidium concentration become very similar for all the closed circular DNAs tested and display a transition from art absence of dye-mediated renaturation to virtually 100% renaturation upon neutralization over a small range of dye concentration. Circular DNA containing one or more strand scissions remains strand-separated under all the conditions used to effect the renaturation of closed circular DNA. These findings indicate that configurations of closed circular DNA, in which at least some of the complementary bases are apposed, can be selectively stabilized and accumulate in the presence of ethidium in solutions containing 0.19 N hydroxide ion. The closed circular DNA of bacteriophage PM2 has properties distinct from those of the other DNAs of this study in that it has been shown to contain fractions which exist in the base-paired duplex form after neutralization of strongly alkaline solutions of this DNA incubated at ambient temperature, while no duplex DNA is observed after exposure to alkali and neutralization of solutions of closed circular DNA from other sources.1, 2 The fraction of denaturation-resistant PM2 DNA is shown in the present work to depend upon the temperature and time of incubation in alkali, but not upon the superhelix density of the starting DNA. PM2 closed circular DNA also behaves anomalously with respect to its kinetics of accumulation of forms renaturing upon neutralization of alkaline, EtdBr-containing solutions. Evidence is presented that the translocation of one of the strands of a closed circular molecule relative to the other, which is required for the molecule to exist in the denatured form at neutral pH, is a process to which PM2 DNA is less labile than the other closed circular DNAs of this study.
机译:在室温下,将嵌入染料溴化乙锭(EtdBr)添加到碱性变性双链闭合环状PM2,φX174或λb 2 b 5 c噬菌体DNA溶液中使溶液保持强碱性的条件,在中和溶液时可导致高达100%的DNA变性。对于中和之前的含碱性染料溶液的固定孵育时间,存在染料的最小浓度,在该最小浓度下,对于所检查的每种封闭环状DNA物种,均未观察到EtdBr介导的肾富隆。对于给定的DNA,这些最小浓度随离子强度和温度的升高而增加。在碱性溶液中和染料和DNA的固定浓度下,中和碱性溶液后复性的形式积累的动力学取决于起始DNA的分子量和超螺旋密度。但是,在固定的离子强度和温度下延长孵育时间后,对于所有测试的封闭环状DNA,复性的DNA百分数随乙锭浓度的变化曲线变得非常相似,并显示出从现有的染料介导的复性转变在很小的染料浓度范围内被中和后几乎达到100%复性。包含一个或多个链断裂的环状DNA在用于实现封闭环状DNA复性的所有条件下均保持链分离状态。这些发现表明,在含有0.19N氢氧根离子的溶液中,在乙锭存在下,可以选择性地稳定并积累其中至少一些互补碱基并置的闭合环状DNA的构型。噬菌体PM2的封闭环状DNA具有不同于本研究其他DNA的特性,因为它已被证明含有中和在室温下孵育的强碱溶液后,以碱基对双链体形式存在的部分。 ,而在暴露于碱和其他来源的封闭环状DNA溶液中和后,未观察到双链体DNA。 1,2 本研究表明抗变性PM2 DNA的比例取决于在碱中孵育的温度和时间,但不取决于起始DNA的超螺旋密度。在中和含EtdBr的碱性溶液后,PM2闭合的环状DNA在其形式积累的动力学方面也表现出异常。有证据表明,封闭的环状分子的一条链相对于另一条链的移位是该分子在中性pH下以变性形式存在所必需的,这是PM2 DNA较另一条链不稳定的过程该研究的闭合环状DNA。

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