Hertzberg R P, Dervan P B
Biochemistry. 1984 Aug 14;23(17):3934-45. doi: 10.1021/bi00312a022.
The synthesis of methidiumpropyl-EDTA (MPE) is described. The binding affinities of MPE, MPE.Ni(II), and MPE.Mg(II) to calf thymus DNA are 2.4 X 10(4) M-1, 1.5 X 10(5) M-1, and 1.2 X 10(5) M-1, respectively, in 50 mM NaCl, pH 7.4. The binding site size is two base pairs. MPE.Mg(II) unwinds PM2 DNA 11 +/- 3 degrees per bound molecule. MPE.Fe(II) in the presence of O2 efficiently cleaves DNA and with low sequence specificity. Reducing agents significantly enhance the efficiency of the cleavage reaction in the order sodium ascorbate greater than dithiothreitol greater than NADPH. At concentrations of 0.1-0.01 microM in MPE.Fe(II) and 10 microM in DNA base pairs, optimum ascorbate and dithiothreitol concentrations for DNA cleavage are 1-5 mM. Efficient cleavage of DNA (10 microM in base pairs) with MPE.Fe(II) (0.1-0.01 microM) occurs over a pH range of 7-10 with the optimum at 7.4 (Tris-HCl buffer). The optimum cleavage time is 3.5 h (22 degrees C). DNA cleavage is efficient in a Na+ ion concentration range of 5 mM to 1 M, with the optimum at 5 mM NaCl. The number of single-strand scissions on supercoiled DNA per MPE.Fe(II) under optimum conditions is 1.4. Metals such as Co(II), Mg(II), Ni(II), and Zn(II) inhibit strand scission by MPE. The released products from DNA cleavage by MPE.Fe(II) are the four nucleotide bases. The DNA termini at the cleavage site are 5'-phosphate and roughly equal proportions of 3'-phosphate and 3'-(phosphoglycolic acid). The products are consistent with the oxidative degradation of the deoxyribose ring of the DNA backbone, most likely by hydroxy radical.
描述了甲鎓丙基 - 乙二胺四乙酸(MPE)的合成。在50 mM NaCl、pH 7.4条件下,MPE、MPE·Ni(II)和MPE·Mg(II)与小牛胸腺DNA的结合亲和力分别为2.4×10⁴ M⁻¹、1.5×10⁵ M⁻¹和1.2×10⁵ M⁻¹。结合位点大小为两个碱基对。每个结合的MPE·Mg(II)分子使PM2 DNA解旋11±3度。在有O₂存在的情况下,MPE·Fe(II)能有效切割DNA,且序列特异性较低。还原剂按抗坏血酸钠>二硫苏糖醇>NADPH的顺序显著提高切割反应效率。在MPE·Fe(II)浓度为0.1 - 0.01 μM且DNA碱基对浓度为10 μM时,DNA切割的最佳抗坏血酸和二硫苏糖醇浓度为1 - 5 mM。用MPE·Fe(II)(0.1 - 0.01 μM)对DNA(碱基对浓度为10 μM)进行有效切割的pH范围是7 - 10,最佳pH为7.4(Tris - HCl缓冲液)。最佳切割时间为3.5小时(22℃)。在5 mM至1 M的Na⁺离子浓度范围内DNA切割有效,最佳浓度为5 mM NaCl。在最佳条件下,每个MPE·Fe(II)对超螺旋DNA的单链切割数为1.4。Co(II)、Mg(II)、Ni(II)和Zn(II)等金属会抑制MPE的链切割。MPE·Fe(II)切割DNA释放的产物是四种核苷酸碱基。切割位点处的DNA末端是5'-磷酸,3'-磷酸和3'-(磷酸乙醇酸)的比例大致相等。这些产物与DNA主链脱氧核糖环的氧化降解一致,最有可能是由羟基自由基引起的。