Mikheikin A L, Zhuze A L, Zasedatelev A S
Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Moscow.
J Biomol Struct Dyn. 2000 Aug;18(1):59-72. doi: 10.1080/07391102.2000.10506647.
Optical methods, such as fluorescence, circular dichroism and linear flow dichroism, were used to study the binding to DNA of four symmetrical cyanine dyes, each consisting of two identical quinoline, benzthiazole, indole, or benzoxazole fragments connected by a trimethine bridge. The ligands were shown to form a monomer type complex into the DNA minor groove. The complex of quinoline-containing ligand with calf thymus DNA appeared to be the most resistant to ionic strength, and it did not dissociate completely even in 1 M NaCl. Binding of cyanine dyes to DNA could also be characterized by possibility to form ligand dimers into the DNA minor groove, by slight preference of binding to AT pairs, as well as by possible intercalation between base pairs of poly(dG)-poly(dC). The correlation found between the binding constants to DNA and the extent of cyanine dyes hydrophobicity estimated as the n-octanol/water partition coefficient is indicative of a significant role of hydrophobic interactions for the ligand binding into the DNA minor groove.
采用荧光、圆二色性和线性流动二色性等光学方法,研究了四种对称花菁染料与DNA的结合情况,每种染料均由通过三甲川桥连接的两个相同的喹啉、苯并噻唑、吲哚或苯并恶唑片段组成。结果表明,这些配体在DNA小沟中形成单体型复合物。含喹啉配体与小牛胸腺DNA形成的复合物似乎对离子强度最具抗性,即使在1 M NaCl中也不会完全解离。花菁染料与DNA的结合还可通过在DNA小沟中形成配体二聚体的可能性、对AT碱基对的轻微结合偏好以及在聚(dG)-聚(dC)碱基对之间可能的嵌入来表征。所发现的与DNA的结合常数和以正辛醇/水分配系数估算的花菁染料疏水性程度之间的相关性表明,疏水相互作用在配体结合到DNA小沟中起着重要作用。