Barton J K
Department of Chemistry, Columbia University, New York, New York 10027.
J Biomol Struct Dyn. 1983 Dec;1(3):621-32. doi: 10.1080/07391102.1983.10507469.
The intercalative binding of chiral tris(phenanthroline) metal complexes to DNA is stereo-selective. The enantiomeric selectivity is based upon the differential steric interactions between the two non-intercalating phenanthroline ligands of each isomer with the DNA phosphate backbone. Gel electrophoretic assays of helical unwinding, optical enrichment studies by equilibrium dialysis and luminescence titrations with separated enantiomers of (phen)3Ru2+ all indicate that the delta isomer binds preferentially to the right-handed duplex. The chiral discrimination is governed by the DNA helical asymmetry. Complete stereospecifity is seen with isomers of the bulkier RuDIP (tris-4,7-diphenylphenanthrolineruthenium(II]. While both isomers bind to Z-DNA, a poor template for discrimination, binding of lambda-RuDIP to B-DNA is precluded. These chiral complexes therefore serve as a chemical probe to distinguish left and right-handed DNA helices in solution.
手性三(菲咯啉)金属配合物与DNA的插入结合具有立体选择性。对映体选择性基于每种异构体的两个非插入菲咯啉配体与DNA磷酸主链之间不同的空间相互作用。螺旋解旋的凝胶电泳分析、平衡透析的光学富集研究以及用(菲咯啉)3Ru2+的分离对映体进行的发光滴定均表明,δ异构体优先与右手双链体结合。手性识别受DNA螺旋不对称性的控制。对于体积更大的RuDIP(三-4,7-二苯基菲咯啉钌(II))的异构体,可以看到完全的立体专一性。虽然两种异构体都与Z-DNA结合,这是一种不利于区分的模板,但λ-RuDIP与B-DNA的结合被阻止。因此,这些手性配合物可作为一种化学探针,用于区分溶液中的左手和右手DNA螺旋。