Swasey Steven M, Leal Leonardo Espinosa, Lopez-Acevedo Olga, Pavlovich James, Gwinn Elisabeth G
Department of Chemistry and Biochemistry, UCSB.
Department of Applied Physics, Aalto University, 00076 Aalto, Finland.
Sci Rep. 2015 May 14;5:10163. doi: 10.1038/srep10163.
Metal ion interactions with DNA have far-reaching implications in biochemistry and DNA nanotechnology. Ag(+) is uniquely interesting because it binds exclusively to the bases rather than the backbone of DNA, without the toxicity of Hg(2+). In contrast to prior studies of Ag(+) incorporation into double-stranded DNA, we remove the constraints of Watson-Crick pairing by focusing on homo-base DNA oligomers of the canonical bases. High resolution electro-spray ionization mass spectrometry reveals an unanticipated Ag(+)-mediated pairing of guanine homo-base strands, with higher stability than canonical guanine-cytosine pairing. By exploring unrestricted binding geometries, quantum chemical calculations find that Ag(+) bridges between non-canonical sites on guanine bases. Circular dichroism spectroscopy shows that the Ag(+)-mediated structuring of guanine homobase strands persists to at least 90 °C under conditions for which canonical guanine-cytosine duplexes melt below 20 °C. These findings are promising for DNA nanotechnology and metal-ion based biomedical science.
金属离子与DNA的相互作用在生物化学和DNA纳米技术中具有深远影响。Ag(+) 特别引人关注,因为它仅与DNA的碱基而非骨架结合,且没有Hg(2+) 的毒性。与之前将Ag(+) 掺入双链DNA的研究不同,我们通过关注标准碱基的同碱基DNA寡聚物,消除了沃森-克里克碱基配对的限制。高分辨率电喷雾电离质谱揭示了鸟嘌呤同碱基链之间意想不到的Ag(+) 介导配对,其稳定性高于标准的鸟嘌呤-胞嘧啶配对。通过探索无限制的结合几何结构,量子化学计算发现Ag(+) 在鸟嘌呤碱基的非标准位点之间形成桥连。圆二色光谱表明,在标准鸟嘌呤-胞嘧啶双链在低于20 °C时就会熔化的条件下,Ag(+) 介导的鸟嘌呤同碱基链结构至少能持续到90 °C。这些发现对DNA纳米技术和基于金属离子的生物医学科学很有前景。