Yoshikawa Yuko, Hizume Kohji, Oda Yoshiko, Takeyasu Kunio, Araki Sumiko, Yoshikawa Kenichi
Department of Food and Nutrition, Nagoya Bunri College, Nagoya 451-0077, Japan.
Biophys J. 2006 Feb 1;90(3):993-9. doi: 10.1529/biophysj.105.069963. Epub 2005 Nov 11.
Direct attack to genomic DNA by reactive oxygen species causes various types of lesions, including base modifications and strand breaks. The most significant lesion is considered to be an unrepaired double-strand break that can lead to fatal cell damage. We directly observed double-strand breaks of DNA in reconstituted chromatin stained by a fluorescent cyanine dye, YOYO (quinolinium, 1,1'-[1,3- propanediylbis[(dimethyliminio)-3,1- propanediyl]]bis[4-[(3-methyl-2(3H)-benzoxazolylidene)methyl]]-, tetraiodide), in solution, where YOYO is known to have the ability to photo-cleave DNAs by generating reactive oxygen species. Reconstituted chromatin was assembled from large circular DNA (106 kbp) with core histone proteins. We also investigated the effect of vitamin C (ascorbic acid) on preventing photo-induced double-strand breaks in a quantitative manner. We found that DNA is protected against double-strand breaks by the addition of ascorbic acid, and this protective effect is dose dependent. The effective kinetic constant of the breakage reaction in the presence of 5 mM ascorbic acid is 20 times lower than that in the absence of ascorbic acid. This protective effect of ascorbic acid in reconstituted chromatin is discussed in relation to the highly compacted polynucleosomal structure. The results highlight the fact that single-molecule observation is a useful tool for studying double-strand breaks in giant DNA and chromatin.
活性氧对基因组DNA的直接攻击会导致各种类型的损伤,包括碱基修饰和链断裂。最严重的损伤被认为是未修复的双链断裂,这可能导致致命的细胞损伤。我们直接观察了由荧光花青染料YOYO(喹啉鎓,1,1'-[1,3-丙二基双[(二甲基亚氨基)-3,1-丙二基]]双[4-[(3-甲基-2(3H)-苯并恶唑基亚基)甲基]]-,四碘化物)染色的重构染色质中DNA的双链断裂,在溶液中,已知YOYO能够通过产生活性氧来光切割DNA。重构染色质由带有核心组蛋白的大环状DNA(106 kbp)组装而成。我们还定量研究了维生素C(抗坏血酸)对防止光诱导双链断裂的作用。我们发现,添加抗坏血酸可保护DNA免受双链断裂的影响,且这种保护作用具有剂量依赖性。在存在5 mM抗坏血酸的情况下,断裂反应的有效动力学常数比不存在抗坏血酸时低20倍。本文结合高度压缩的多核小体结构讨论了抗坏血酸在重构染色质中的这种保护作用。结果突出了单分子观察是研究巨型DNA和染色质中双链断裂的有用工具这一事实。