Akimenko N M, Tkhruni F N, Rusinov A V, Chernik T P, Kriviskiĭ A S
Mol Biol (Mosk). 1976 Sep-Oct;10(5):1035-41.
Data on transforming activity of DNA in water-salt (0.3 M NaCl) solutions containing polyethylene glycol (PEG) are presented. Bacillus subtilis deficient mutant lys 42 and prototrophic strain SHgw were used as recipient and donor, respectively, for transformation experiments. It has been shown that when PEG concentrations were increased the relative experiments. It has been shown that when PEG concentrations were increased the relative transforming activity (RTA) at first (at PEG concentrations approximately 30-40 mg/ml) increased to the value of 200-250%, then began to decrease. At PEG concentrations approximately 100-125 mg/ml, when DNA molecules form compact particles, the RTA does not exceed 10%. The observed changes in RTA are interpreted as a result of conformational changes of double-stranded DNA molecules. The increase in the RTA at low PEG concentrations may be explained as an increase in transforming activity of the precompact form of DNA, while the decrease in RTA at PEG concentrations exceeding 60-70 mg/ml was believed to be connected with the fact that compact particles of DNA could not penetrate through the walls of bacterial cells.
本文展示了在含有聚乙二醇(PEG)的水盐(0.3M NaCl)溶液中DNA转化活性的数据。在转化实验中,枯草芽孢杆菌缺陷型突变体lys 42和原养型菌株SHgw分别用作受体和供体。结果表明,当PEG浓度增加时,相对转化活性(RTA)起初(在PEG浓度约为30 - 40mg/ml时)增加到200 - 250%的值,然后开始下降。在PEG浓度约为100 - 125mg/ml时,当DNA分子形成紧密颗粒时,RTA不超过10%。观察到的RTA变化被解释为双链DNA分子构象变化的结果。低PEG浓度下RTA的增加可能是由于DNA预紧密形式的转化活性增加,而PEG浓度超过60 - 70mg/ml时RTA的下降被认为与DNA紧密颗粒无法穿透细菌细胞壁这一事实有关。