Barton J K, Basile L A, Danishefsky A, Alexandrescu A
Proc Natl Acad Sci U S A. 1984 Apr;81(7):1961-5. doi: 10.1073/pnas.81.7.1961.
The chiral complexes tris(4,7-diphenyl-1,10-phenanthroline)ruthenium(II) (RuDIP) are shown to be specific chemical probes with which to distinguish right- and left-handed DNA helices in solution. In spectrophotometric titrations of racemic RuDIP with both B-form calf thymus DNA and Z-form poly[d(G-C)], hypochromicity in the intense metal-to-ligand charge-transfer band is found and enhancement in luminescence is observed. The spectrophotometric assay of DNA binding to the well-resolved enantiomers of RuDIP provides a means to determine the helical conformation. Strong chiral specificity is seen in binding experiments with right-handed B-DNA and, on this basis, the absolute configurations are assigned. Although delta-RuDIP can bind by intercalation into the right-handed helix, steric constraints imposed by the helix asymmetry preclude completely binding by the lambda enantiomer. Both isomers, however, are found to bind equally to Z-DNA. Left-handed helices that are more similar structurally to B-DNA would be predicted to display a stereospecific preference for this lambda isomer.
手性配合物三(4,7-二苯基-1,10-菲咯啉)钌(II)(RuDIP)被证明是一种特定的化学探针,可用于区分溶液中右手和左手DNA螺旋。在用外消旋RuDIP对B型小牛胸腺DNA和Z型聚[d(G-C)]进行分光光度滴定中,发现强金属到配体电荷转移带出现减色现象,并观察到发光增强。对DNA与RuDIP已解析对映体结合的分光光度测定提供了一种确定螺旋构象的方法。在与右手B-DNA的结合实验中观察到很强的手性特异性,并据此确定了绝对构型。虽然δ-RuDIP可以通过插入右手螺旋进行结合,但螺旋不对称性所施加的空间位阻完全阻止了λ对映体的结合。然而,发现两种异构体与Z-DNA的结合能力相同。从结构上看,与B-DNA更相似的左手螺旋预计会对这种λ异构体表现出立体特异性偏好。