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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Capillary electrophoresis as a probe of enantiospecific interactions between photoactive transition metal complexes and DNA.
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Capillary electrophoresis as a probe of enantiospecific interactions between photoactive transition metal complexes and DNA.

机译:毛细管电泳作为光敏过渡金属络合物和DNA之间对映体特异性相互作用的探针。

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Recently, we have demonstrated the capacity to separate chiral transition metal (TM) complexes of the type [M(diimine)(3)](n+) using CE buffers containing chiral tartrate salts. In separate work, several chromium(III)-tris-diimine complexes in particular have been shown to bind enantioselectively with calf-thymus (CT) DNA, and a qualitative assessment of the relative strength and enantiospecificity of this interaction is of significant interest in the characterization of these complexes as potential DNA photocleavage agents. Here, we describe two convenient approaches to investigate such binding behavior using chiral CE. For complexes with lower DNA affinities exhibiting primarily surface binding, DNA itself is used as the chiral resolving agent in the electrophoretic buffer. In this approach, resolution of the TM complexes into their Lambda and Delta isomers is achieved with the isomer eluting later exhibiting superior binding affinity toward DNA. For more strongly bound TM complexes containing ligands known to intercalate with DNA, the [Cr(diimine)(3)](3+) complexes are preincubated with oligonucleotide and subsequently enantiomerically resolved in a dibenzoyl-L-tartrate buffer system that facilitates analysis of the unbound TM species only. Differences in isomer binding affinity are distinguished by the relative peak areas of the Lambda- and Delta-isomers, and relative binding strengths of different complexes can be inferred from comparison of the total amount of unbound complex at equivalent DNA/TM ratios.
机译:最近,我们证明了使用含有手性酒石酸盐的CE缓冲液可以分离[M(diimine)(3)](n +)类型的手性过渡金属(TM)配合物。在单独的工作中,特别显示了几种铬(III)-三-二亚胺络合物与小牛胸腺(CT)DNA对映体选择性结合,并且这种相互作用的相对强度和对映体特异性的定性评估对这些复合物作为潜在的DNA光裂解剂的特征。在这里,我们描述了两种方便的方法来研究使用手性CE这种绑定行为。对于具有较低DNA亲和力的复合物,主要表现为表面结合,DNA本身可用作电泳缓冲液中的手性拆分剂。在这种方法中,TM络合物拆分为其Lambda和Delta异构体的过程得以实现,随后洗脱出的异构体表现出对DNA的优越结合亲和力。对于含有已知可插入DNA的配体的更牢固结合的TM复合物,将[Cr(diimine)(3)](3+)复合物与寡核苷酸预先孵育,然后在对苯二甲酰-L-酒石酸缓冲液系统中进行对映体拆分,以利于分析仅未绑定的TM物种。异构体结合亲和力的差异通过Lambda和Delta异构体的相对峰面积来区分,并且可以通过比较当量DNA / TM比下未结合的复合物总量来推断不同复合物的相对结合强度。

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