Sandström Karin, Wärmländer Sebastian, Bergman Jan, Engqvist Robert, Leijon Mikael, Gräslund Astrid
Department of Biochemistry and Biophysics, Arrhenius Laboratory, Stockholm University, S-106 91 Stockholm, Sweden.
J Mol Recognit. 2004 Jul-Aug;17(4):277-85. doi: 10.1002/jmr.665.
The triplex form of DNA is of interest because of a possible biological role as well as the potential therapeutic use of this structure. In this paper the stabilizing effects of two intercalating drugs, ethidium and the quinoxaline derivative 9-OH-B220, on DNA triplexes have been studied by thermal denaturation measurements. The corresponding duplex structures of the DNA triplex systems investigated are either A-tract or normal B-DNA. The largest increases in the triplex melting temperatures caused by the intercalators were found for sequences having A-tract duplex structures. Inserting a single base pair with an N2-amino group in the minor groove, e.g. a G-C pair, breaks up the A-tract duplex structure and also reduces the stabilizing effect of the drugs on the triplex melting temperatures. The large drug-induced increase in triplex melting temperature for complexes having an original duplex A-tract structure is correlated with a low initial melting point of the triplex, not with the triplex being unusually stable in the presence of the drug. Hence, we conclude that the large thermal stabilizing effect exhibited by ethidium and 9-OH-B220 on dTn.dAn-dTn triplexes is partly caused by the intercalators breaking up the intrinsic A-tract structure of the underlying duplex.
DNA三链体形式因其可能的生物学作用以及该结构潜在的治疗用途而备受关注。在本文中,通过热变性测量研究了两种嵌入药物(溴化乙锭和喹喔啉衍生物9-OH-B220)对DNA三链体的稳定作用。所研究的DNA三链体系统的相应双链结构为A-序列或正常B-DNA。对于具有A-序列双链结构的序列,发现嵌入剂引起的三链体解链温度升高幅度最大。在小沟中插入一个带有N2-氨基的单碱基对,例如一个G-C对,会破坏A-序列双链结构,也会降低药物对三链体解链温度的稳定作用。对于具有原始双链A-序列结构的复合物,药物引起的三链体解链温度大幅升高与三链体的低初始解链点相关,而不是与药物存在时三链体异常稳定相关。因此,我们得出结论,溴化乙锭和9-OH-B220对dTn.dAn-dTn三链体表现出的巨大热稳定作用部分是由于嵌入剂破坏了底层双链的固有A-序列结构。