Miolo G, Dall'Acqua F, Moustacchi E, Sage E
Photochem Photobiol. 1989 Jul;50(1):75-84. doi: 10.1111/j.1751-1097.1989.tb04131.x.
The sequence specificity in the photoreaction (365 nm) of 6,4,4'-trimethylangelicin (TMA) with DNA fragments of the lac I gene of Escherichia coli was studied by using DNA sequencing methodology. In order to map the sites of TMA photoaddition, we took advantage of the (3'-5') exonuclease activity associated with T4 DNA polymerase, which is blocked by bulky adducts, such as furocoumarin photoadducts. A quantitative analysis of the sites of photoaddition is reported. TMA was demonstrated to photoreact with thymine and, to a lower extent, to cytosine. AT-rich sequences and TTT sites in a GC context are the most reactive sites towards TMA whereas TA, AT, CA, AC sites are weaker sites with similar reactivity. Cytosines in alternated CG sequences are also targets of TMA photobinding. We observed a less pronounced sequence specificity of TMA than that of other psoralen derivatives already studied (Sage and Moustacchi, 1987; Boyer et al., 1988). A comparison with other furocoumarins 4,4'-dimethylangelicin (4,4'-DMA), 4'-methylangelicin (4'-MA), angelicin, 4,5',8-trimethylpsoralen (TMP) and 8-methoxypsoralen (8-MOP) is also reported. The role of flanking sequence and consequently of the local conformation at the various sites of photoaddition is discussed. A preferential orientation of the TMA molecule during the intercalation in the dark is suggested. Hot alkali treatment of TMA-modified DNA did not reveal any DNA strand breakage due to photooxidized bases.
采用DNA测序方法研究了6,4,4'-三甲基白芷素(TMA)与大肠杆菌lac I基因DNA片段在光反应(365nm)中的序列特异性。为了绘制TMA光加成位点,我们利用了与T4 DNA聚合酶相关的(3'-5')核酸外切酶活性,该活性会被诸如呋喃香豆素光加合物等大体积加合物阻断。本文报道了对光加成位点的定量分析。结果表明,TMA与胸腺嘧啶发生光反应,与胞嘧啶的反应程度较低。富含AT的序列以及GC环境中的TTT位点是对TMA反应性最强的位点,而TA、AT、CA、AC位点的反应性较弱且相似。交替CG序列中的胞嘧啶也是TMA光结合的靶点。我们观察到,与已研究的其他补骨脂素衍生物相比,TMA的序列特异性不太明显(Sage和Moustacchi,1987;Boyer等人,1988)。本文还报道了与其他呋喃香豆素4,4'-二甲基白芷素(4,4'-DMA)、4'-甲基白芷素(4'-MA)、白芷素、4,5',8-三甲基补骨脂素(TMP)和8-甲氧基补骨脂素(8-MOP)的比较。讨论了侧翼序列以及光加成各个位点处局部构象的作用。提出了TMA分子在黑暗中嵌入时的优先取向。对TMA修饰的DNA进行热碱处理未发现由于光氧化碱基导致的任何DNA链断裂。