Lee Young-Ae, Kim Jin-Ok, Cho Tae-Sub, Song Rita, Kim Seog K
Department of Chemistry, Yeungnam University, Dae-dong, Kyoungsan City, Kyoung-buk 712-749, Republic of Korea.
J Am Chem Soc. 2003 Jul 9;125(27):8106-7. doi: 10.1021/ja034499j.
Induced CD spectra of meso-tetrakis(N-methylpyridium-4-yl)porphyrin (TMPyP) complexed with d(A)12.d(T)12, d(G)12.d(C)12 duplex and d(A)12.[d(T)12]2, d(G)12.d(C)12.d(C)12+ triplex in the Soret band were compared in this study. When TMPyP is complexed with the duplex, a monomeric CD spectrum at a low [TMPyP]/[oligomer] ratio was apparent, while at a high mixing ratio, the excitonic CD was dominant. In contrast, when TMPyP was complexed with the triplex, the excitonic CD disappears at a relatively high mixing ratio, indicating the TMPyP exciton formation is inhibited by the third strand, which is located in the major groove. This observation indicates that the exciton is formed at the major groove of both AT- and GC-rich DNA, while the monomeric TMPyP binds at (or near) the minor groove of the AT site.
本研究比较了与d(A)12.d(T)12、d(G)12.d(C)12双链体以及d(A)12.[d(T)12]2、d(G)12.d(C)12.d(C)12+三链体复合的中位四(4-甲基吡啶基)卟啉(TMPyP)在Soret带的诱导圆二色光谱。当TMPyP与双链体复合时,在低[TMPyP]/[寡聚体]比例下出现单体圆二色光谱,而在高混合比例下,激子圆二色占主导。相反,当TMPyP与三链体复合时,激子圆二色在相对较高的混合比例下消失,表明位于大沟中的第三条链抑制了TMPyP激子的形成。这一观察结果表明,激子在富含AT和GC的DNA的大沟中形成,而单体TMPyP结合在AT位点的小沟(或其附近)。