Murphy C J, Arkin M R, Jenkins Y, Ghatlia N D, Bossmann S H, Turro N J, Barton J K
Beckman Institute, California Institute of Technology, Pasadena 91125.
Science. 1993 Nov 12;262(5136):1025-9. doi: 10.1126/science.7802858.
Rapid photoinduced electron transfer is demonstrated over a distance of greater than 40 angstroms between metallointercalators that are tethered to the 5' termini of a 15-base pair DNA duplex. An oligomeric assembly was synthesized in which the donor is Ru(phen)2dppz2+ (phen, phenanthroline, and dppz, dipyridophenazine) and the acceptor is Rh(phi)2phen3+ (phi, phenanthrenequinone diimine). These metal complexes are intercalated either one or two base steps in from the helix termini. Although the ruthenium-modified oligonucleotide hybridized to an unmodified complement luminesces intensely, the ruthenium-modified oligomer hybridized to the rhodium-modified oligomer shows no detectable luminescence. Time-resolved studies point to a lower limit of 10(9) per second for the quenching rate. No quenching was observed upon metallation of two complementary octamers by Ru(phen)3(2+) and Rh(phen)3(3+) under conditions where the phen complexes do not intercalate. The stacked aromatic heterocycles of the DNA duplex therefore serve as an efficient medium for coupling electron donors and acceptors over very long distances.
在一条15个碱基对的DNA双链体5'末端连接的金属嵌入剂之间,证明了超过40埃距离的快速光诱导电子转移。合成了一种寡聚组装体,其中供体是Ru(phen)2dppz2+(phen,菲咯啉;dppz,二吡啶并菲嗪),受体是Rh(phi)2phen3+(phi,菲醌二亚胺)。这些金属配合物从螺旋末端插入一个或两个碱基步长。尽管与未修饰互补链杂交的钌修饰寡核苷酸强烈发光,但与铑修饰寡聚物杂交的钌修饰寡聚物未显示出可检测到的发光。时间分辨研究表明猝灭速率的下限为每秒10^9。在邻菲咯啉配合物不插入的条件下,用Ru(phen)3(2+)和Rh(phen)3(3+)对两个互补八聚体进行金属化时未观察到猝灭。因此,DNA双链体堆叠的芳香杂环作为一种有效的介质,可在非常长的距离上耦合电子供体和受体。