Amato Nicholas J, Mwai Christopher N, Mueser Timothy C, Bryant-Friedrich Amanda C
Department of Chemistry, College of Natural Sciences and Mathematics, The University of Toledo, Toledo, OH 43606-3390, USA.
J Nucleic Acids. 2013;2013:867957. doi: 10.1155/2013/867957. Epub 2013 Apr 28.
Damaged DNA, generated by the abstraction of one of five hydrogen atoms from the 2'-deoxyribose ring of the nucleic acid, can contain a variety of lesions, some of which compromise physiological processes. Recently, DNA damage, resulting from the formation of a C3'-thymidinyl radical in DNA oligomers, was found to be dependent on nucleic acid structure. Architectures relevant to DNA replication were observed to generate larger amounts of strand-break and 1-(2'-deoxy- β -D-threo-pentofuranosyl)thymidine formation than that observed for duplex DNA. To understand how this damage can affect the integrity of DNA, the impact of C3'-thymidinyl radical derived lesions on DNA stability and structure was characterized using biophysical methods. DNA architectures evaluated include duplex DNA (dsDNA), single 3' or 5'-overhangs (OvHgs), and forks. Thermal melting analysis and differential scanning calorimetry measurements indicate that an individual 3'-OvHg is more destabilizing than a 5'-OvHg. The presence of a terminal 3' or 5' phosphate decreases the ΔG 25 to the same extent, while the effect of the phosphate at the ss-dsDNA junction of OvHgs is dependent on sequence. Additionally, the effect of 1-(2'-deoxy- β -D-threo-pentofuranosyl)thymidine is found to depend on DNA architecture and proximity to the 3' end of the damaged strand.
核酸2'-脱氧核糖环上五个氢原子之一被夺取而产生的受损DNA,可能包含多种损伤,其中一些会损害生理过程。最近发现,DNA寡聚物中C3'-胸苷基自由基的形成导致的DNA损伤取决于核酸结构。与DNA复制相关的结构产生的链断裂和1-(2'-脱氧-β-D-赤式-戊呋喃糖基)胸苷的量,比双链DNA中观察到的要多。为了了解这种损伤如何影响DNA的完整性,使用生物物理方法表征了C3'-胸苷基自由基衍生损伤对DNA稳定性和结构的影响。评估的DNA结构包括双链DNA(dsDNA)、单个3'或5'-突出端(OvHgs)和叉状结构。热变性分析和差示扫描量热法测量表明,单个3'-OvHg比5'-OvHg更不稳定。末端3'或5'磷酸的存在会使ΔG 25降低相同程度,而OvHgs的单链-双链DNA连接处的磷酸的影响则取决于序列。此外,发现1-(2'-脱氧-β-D-赤式-戊呋喃糖基)胸苷的影响取决于DNA结构以及与受损链3'端的接近程度。