Stonehouse T J, Fox K R
Department of Physiology and Pharmacology, University of Southampton, UK.
Biochim Biophys Acta. 1994 Aug 2;1218(3):322-30. doi: 10.1016/0167-4781(94)90184-8.
We have investigated the binding of short (10 base) acridine-linked triplex-forming oligonucleotides to the target sequence A6G6.C6T6 by DNase I footprinting. Specific binding is detected at low pH (< 6.0) for 5'-Acr-T5C5 and 5'-Acr-5BrU5(5Me)C5. The sequence T5C5, lacking the acridine modification, binds less strongly, though specific binding is still evident. 5'-Acr-T5C5 produces footprints at slightly lower concentrations than 5'-Acr-5BrU5(5Me)C5. All three oligonucleotides produce enhanced DNase I digestion at the 3'-end of the target purine strand, suggesting that there is a DNA structural change at the triplex-duplex boundary. Target sequences AnG4A and TAC3Tn, containing one and two triplex mismatches, show no interaction with the acridine-free oligonucleotide, but bind the acridine-linked oligonucleotides. In these secondary binding modes the third strand is positioned so that the mismatches are located at the 3'-end of the oligonucleotide. Mithramycin and distamycin, binding in the minor groove to GC- and AT-rich sequences respectively, abolish triple helix formation.
我们通过DNase I足迹法研究了短链(10个碱基)吖啶连接的三链形成寡核苷酸与靶序列A6G6.C6T6的结合情况。在低pH值(<6.0)下,检测到5'-Acr-T5C5和5'-Acr-5BrU5(5Me)C5与靶序列有特异性结合。缺乏吖啶修饰的序列T5C5结合较弱,不过特异性结合仍然明显。5'-Acr-T5C5产生足迹所需的浓度略低于5'-Acr-5BrU5(5Me)C5。所有三种寡核苷酸在靶嘌呤链的3'-端均产生增强的DNase I消化作用,这表明在三链-双链边界处存在DNA结构变化。含有一个和两个三链错配的靶序列AnG4A和TAC3Tn,与不含吖啶的寡核苷酸无相互作用,但能与吖啶连接的寡核苷酸结合。在这些二级结合模式中,第三条链的定位使得错配位于寡核苷酸的3'-端。光神霉素和偏端霉素分别在小沟中与富含GC和富含AT的序列结合,从而消除三链螺旋的形成。