Potter B V, Eckstein F
J Biol Chem. 1984 Nov 25;259(22):14243-8.
M13 RF DNA was synthesized in vitro in the presence of various single deoxynucleoside 5'-O-(1-thiotriphosphate) phosphorothioate analogues, and the three other appropriate deoxynucleoside triphosphates using a M13 (+)-single-stranded template, Escherichia coli DNA polymerase I and T4 DNA ligase. The resulting DNAs contained various restriction endonuclease recognition sequences which had been modified at their cleavage points in the (-)-strand by phosphorothioate substitution. The behavior of the restriction enzymes AvaI, BamHI, EcoRI, HindIII, and SalI towards these substituted DNAs was investigated. EcoRI, BamHI, and HindIII were found to cleave appropriate phosphorothioate-substituted DNA at a reduced rate compared to normal M13 RF DNA, and by a two-step process in which all of the DNA is converted to an isolable intermediate nicked molecule containing a specific discontinuity at the respective recognition site presumably in the (+)-strand. By contrast, SalI cleaved substituted DNA effectively without the intermediacy of a nicked form. AvaI, however, is only capable of cleaving the unsubstituted (+)-strand in appropriately modified DNA.
在各种单脱氧核苷5'-O-(1-硫代三磷酸)硫代磷酸酯类似物以及其他三种合适的脱氧核苷三磷酸存在的情况下,使用M13(+)单链模板、大肠杆菌DNA聚合酶I和T4 DNA连接酶在体外合成M13 RF DNA。所得的DNA含有各种限制性内切酶识别序列,这些序列在其(-)链的切割点处通过硫代磷酸酯取代进行了修饰。研究了限制性内切酶AvaI、BamHI、EcoRI、HindIII和SalI对这些取代DNA的作用。与正常的M13 RF DNA相比,发现EcoRI、BamHI和HindIII以较低的速率切割合适的硫代磷酸酯取代的DNA,并且通过两步过程,其中所有DNA都转化为可分离的中间带切口分子,该分子在各自的识别位点处可能在(+)链中含有特定的间断。相比之下,SalI有效地切割取代的DNA而无需带切口形式的中间体。然而,AvaI仅能够切割经过适当修饰的DNA中的未取代(+)链。